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Global Oil Drum Heater Market 2017 By Industry Analysis, Size, Share, Growth, Trends and Forecast 2022- Global QYResearch

Geographically, this report is segmented into several key Regions, with production, consumption, revenue (million USD), market share and growth rate of Oil Drum Heater in these regions, from 2012 to 2022 (forecast), covering

North America
Europe
China
Japan
Southeast Asia
India
Global Oil Drum Heater Market 2017 competition by top manufacturers, with production, price, revenue (value) and market share for each manufacturer; the top players including
Will & Hahnenstein GmbH
Benko
BRISKHEAT CORPORATION
DENIOS
Fisnar Inc
Hillesheim GmbH
Holroyd Components
LEWCO
ROTFIL
Vulcanic
Winkler

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On the basis of product, this report displays the production, revenue, price, market share and growth rate of each type, primarily split into
Heating Band Type Heater
Heating Jacket Type Heater
On the basis on the end users/applications, this report focuses on the status and outlook for major applications/end users, consumption (sales), market share and growth rate of Oil Drum Heater for each application, including
Paint Heating
Grease Heating
Paraffin Heating
Resinous Materials Heating

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Table of Contents

Global Oil Drum Heater Market Research Report 2017
1 Oil Drum Heater Market Overview
1.1 Product Overview and Scope of Oil Drum Heater
1.2 Oil Drum Heater Segment by Type (Product Category)
1.2.1 Global Oil Drum Heater Production and CAGR (%) Comparison by Type (Product Category) (2012-2022)
1.2.2 Global Oil Drum Heater Production Market Share by Type (Product Category) in 2016
1.2.3 Heating Band Type Heater
1.2.4 Heating Jacket Type Heater
1.3 Global Oil Drum Heater Segment by Application
1.3.1 Oil Drum Heater Consumption (Sales) Comparison by Application (2012-2022)
1.3.2 Paint Heating
1.3.3 Grease Heating
1.3.4 Paraffin Heating
1.3.5 Resinous Materials Heating
1.4 Global Oil Drum Heater Market by Region (2012-2022)
1.4.1 Global Oil Drum Heater Market Size (Value) and CAGR (%) Comparison by Region (2012-2022)
1.4.2 North America Status and Prospect (2012-2022)
1.4.3 Europe Status and Prospect (2012-2022)
1.4.4 China Status and Prospect (2012-2022)
1.4.5 Japan Status and Prospect (2012-2022)
1.4.6 Southeast Asia Status and Prospect (2012-2022)
1.4.7 India Status and Prospect (2012-2022)
1.5 Global Market Size (Value) of Oil Drum Heater (2012-2022)
1.5.1 Global Oil Drum Heater Revenue Status and Outlook (2012-2022)
1.5.2 Global Oil Drum Heater Capacity, Production Status and Outlook (2012-2022)

2 Global Oil Drum Heater Market Competition by Manufacturers
2.1 Global Oil Drum Heater Capacity, Production and Share by Manufacturers (2012-2017)
2.1.1 Global Oil Drum Heater Capacity and Share by Manufacturers (2012-2017)
2.1.2 Global Oil Drum Heater Production and Share by Manufacturers (2012-2017)
2.2 Global Oil Drum Heater Revenue and Share by Manufacturers (2012-2017)
2.3 Global Oil Drum Heater Average Price by Manufacturers (2012-2017)
2.4 Manufacturers Oil Drum Heater Manufacturing Base Distribution, Sales Area and Product Type
2.5 Oil Drum Heater Market Competitive Situation and Trends
2.5.1 Oil Drum Heater Market Concentration Rate
2.5.2 Oil Drum Heater Market Share of Top 3 and Top 5 Manufacturers
2.5.3 Mergers & Acquisitions, Expansion

3 Global Oil Drum Heater Capacity, Production, Revenue (Value) by Region (2012-2017)
3.1 Global Oil Drum Heater Capacity and Market Share by Region (2012-2017)
3.2 Global Oil Drum Heater Production and Market Share by Region (2012-2017)
3.3 Global Oil Drum Heater Revenue (Value) and Market Share by Region (2012-2017)
3.4 Global Oil Drum Heater Capacity, Production, Revenue, Price and Gross Margin (2012-2017)
3.5 North America Oil Drum Heater Capacity, Production, Revenue, Price and Gross Margin (2012-2017)
3.6 Europe Oil Drum Heater Capacity, Production, Revenue, Price and Gross Margin (2012-2017)
3.7 China Oil Drum Heater Capacity, Production, Revenue, Price and Gross Margin (2012-2017)
3.8 Japan Oil Drum Heater Capacity, Production, Revenue, Price and Gross Margin (2012-2017)
3.9 Southeast Asia Oil Drum Heater Capacity, Production, Revenue, Price and Gross Margin (2012-2017)
3.10 India Oil Drum Heater Capacity, Production, Revenue, Price and Gross Margin (2012-2017)

4 Global Oil Drum Heater Supply (Production), Consumption, Export, Import by Region (2012-2017)
4.1 Global Oil Drum Heater Consumption by Region (2012-2017)
4.2 North America Oil Drum Heater Production, Consumption, Export, Import (2012-2017)
4.3 Europe Oil Drum Heater Production, Consumption, Export, Import (2012-2017)
4.4 China Oil Drum Heater Production, Consumption, Export, Import (2012-2017)
4.5 Japan Oil Drum Heater Production, Consumption, Export, Import (2012-2017)
4.6 Southeast Asia Oil Drum Heater Production, Consumption, Export, Import (2012-2017)
4.7 India Oil Drum Heater Production, Consumption, Export, Import (2012-2017)

5 Global Oil Drum Heater Production, Revenue (Value), Price Trend by Type
5.1 Global Oil Drum Heater Production and Market Share by Type (2012-2017)
5.2 Global Oil Drum Heater Revenue and Market Share by Type (2012-2017)
5.3 Global Oil Drum Heater Price by Type (2012-2017)
5.4 Global Oil Drum Heater Production Growth by Type (2012-2017)

6 Global Oil Drum Heater Market Analysis by Application
6.1 Global Oil Drum Heater Consumption and Market Share by Application (2012-2017)
6.2 Global Oil Drum Heater Consumption Growth Rate by Application (2012-2017)
6.3 Market Drivers and Opportunities
6.3.1 Potential Applications
6.3.2 Emerging Markets/Countries

7 Global Oil Drum Heater Manufacturers Profiles/Analysis
7.1 Will & Hahnenstein GmbH
7.1.1 Company Basic Information, Manufacturing Base, Sales Area and Its Competitors
7.1.2 Oil Drum Heater Product Category, Application and Specification
7.1.2.1 Product A
7.1.2.2 Product B
7.1.3 Will & Hahnenstein GmbH Oil Drum Heater Capacity, Production, Revenue, Price and Gross Margin (2012-2017)
7.1.4 Main Business/Business Overview
7.2 Benko
7.2.1 Company Basic Information, Manufacturing Base, Sales Area and Its Competitors
7.2.2 Oil Drum Heater Product Category, Application and Specification
7.2.2.1 Product A
7.2.2.2 Product B
7.2.3 Benko Oil Drum Heater Capacity, Production, Revenue, Price and Gross Margin (2012-2017)
7.2.4 Main Business/Business Overview
7.3 BRISKHEAT CORPORATION
7.3.1 Company Basic Information, Manufacturing Base, Sales Area and Its Competitors
7.3.2 Oil Drum Heater Product Category, Application and Specification
7.3.2.1 Product A
7.3.2.2 Product B
7.3.3 BRISKHEAT CORPORATION Oil Drum Heater Capacity, Production, Revenue, Price and Gross Margin (2012-2017)
7.3.4 Main Business/Business Overview
7.4 DENIOS
7.4.1 Company Basic Information, Manufacturing Base, Sales Area and Its Competitors
7.4.2 Oil Drum Heater Product Category, Application and Specification
7.4.2.1 Product A
7.4.2.2 Product B
7.4.3 DENIOS Oil Drum Heater Capacity, Production, Revenue, Price and Gross Margin (2012-2017)
7.4.4 Main Business/Business Overview
7.5 Fisnar Inc
7.5.1 Company Basic Information, Manufacturing Base, Sales Area and Its Competitors
7.5.2 Oil Drum Heater Product Category, Application and Specification
7.5.2.1 Product A
7.5.2.2 Product B
7.5.3 Fisnar Inc Oil Drum Heater Capacity, Production, Revenue, Price and Gross Margin (2012-2017)
7.5.4 Main Business/Business Overview
7.6 Hillesheim GmbH
7.6.1 Company Basic Information, Manufacturing Base, Sales Area and Its Competitors
7.6.2 Oil Drum Heater Product Category, Application and Specification
7.6.2.1 Product A
7.6.2.2 Product B
7.6.3 Hillesheim GmbH Oil Drum Heater Capacity, Production, Revenue, Price and Gross Margin (2012-2017)
7.6.4 Main Business/Business Overview
7.7 Holroyd Components
7.7.1 Company Basic Information, Manufacturing Base, Sales Area and Its Competitors
7.7.2 Oil Drum Heater Product Category, Application and Specification
7.7.2.1 Product A
7.7.2.2 Product B
7.7.3 Holroyd Components Oil Drum Heater Capacity, Production, Revenue, Price and Gross Margin (2012-2017)
7.7.4 Main Business/Business Overview
7.8 LEWCO
7.8.1 Company Basic Information, Manufacturing Base, Sales Area and Its Competitors
7.8.2 Oil Drum Heater Product Category, Application and Specification
7.8.2.1 Product A
7.8.2.2 Product B
7.8.3 LEWCO Oil Drum Heater Capacity, Production, Revenue, Price and Gross Margin (2012-2017)
7.8.4 Main Business/Business Overview
7.9 ROTFIL
7.9.1 Company Basic Information, Manufacturing Base, Sales Area and Its Competitors
7.9.2 Oil Drum Heater Product Category, Application and Specification
7.9.2.1 Product A
7.9.2.2 Product B
7.9.3 ROTFIL Oil Drum Heater Capacity, Production, Revenue, Price and Gross Margin (2012-2017)
7.9.4 Main Business/Business Overview
7.10 Vulcanic
7.10.1 Company Basic Information, Manufacturing Base, Sales Area and Its Competitors
7.10.2 Oil Drum Heater Product Category, Application and Specification
7.10.2.1 Product A
7.10.2.2 Product B
7.10.3 Vulcanic Oil Drum Heater Capacity, Production, Revenue, Price and Gross Margin (2012-2017)
7.10.4 Main Business/Business Overview
7.11 Winkler

8 Oil Drum Heater Manufacturing Cost Analysis
8.1 Oil Drum Heater Key Raw Materials Analysis
8.1.1 Key Raw Materials
8.1.2 Price Trend of Key Raw Materials
8.1.3 Key Suppliers of Raw Materials
8.1.4 Market Concentration Rate of Raw Materials
8.2 Proportion of Manufacturing Cost Structure
8.2.1 Raw Materials
8.2.2 Labor Cost
8.2.3 Manufacturing Expenses
8.3 Manufacturing Process Analysis of Oil Drum Heater

9 Industrial Chain, Sourcing Strategy and Downstream Buyers
9.1 Oil Drum Heater Industrial Chain Analysis
9.2 Upstream Raw Materials Sourcing
9.3 Raw Materials Sources of Oil Drum Heater Major Manufacturers in 2015
9.4 Downstream Buyers

10 Marketing Strategy Analysis, Distributors/Traders
10.1 Marketing Channel
10.1.1 Direct Marketing
10.1.2 Indirect Marketing
10.1.3 Marketing Channel Development Trend
10.2 Market Positioning
10.2.1 Pricing Strategy
10.2.2 Brand Strategy
10.2.3 Target Client
10.3 Distributors/Traders List

11 Market Effect Factors Analysis
11.1 Technology Progress/Risk
11.1.1 Substitutes Threat
11.1.2 Technology Progress in Related Industry
11.2 Consumer Needs/Customer Preference Change
11.3 Economic/Political Environmental Change

12 Global Oil Drum Heater Market Forecast (2017-2022)
12.1 Global Oil Drum Heater Capacity, Production, Revenue Forecast (2017-2022)
12.1.1 Global Oil Drum Heater Capacity, Production and Growth Rate Forecast (2017-2022)
12.1.2 Global Oil Drum Heater Revenue and Growth Rate Forecast (2017-2022)
12.1.3 Global Oil Drum Heater Price and Trend Forecast (2017-2022)
12.2 Global Oil Drum Heater Production, Consumption , Import and Export Forecast by Region (2017-2022)
12.2.1 North America Oil Drum Heater Production, Revenue, Consumption, Export and Import Forecast (2017-2022)
12.2.2 Europe Oil Drum Heater Production, Revenue, Consumption, Export and Import Forecast (2017-2022)
12.2.3 China Oil Drum Heater Production, Revenue, Consumption, Export and Import Forecast (2017-2022)
12.2.4 Japan Oil Drum Heater Production, Revenue, Consumption, Export and Import Forecast (2017-2022)
12.2.5 Southeast Asia Oil Drum Heater Production, Revenue, Consumption, Export and Import Forecast (2017-2022)
12.2.6 India Oil Drum Heater Production, Revenue, Consumption, Export and Import Forecast (2017-2022)
12.3 Global Oil Drum Heater Production, Revenue and Price Forecast by Type (2017-2022)
12.4 Global Oil Drum Heater Consumption Forecast by Application (2017-2022)

13 Research Findings and Conclusion

14 Appendix
14.1 Methodology/Research Approach
14.1.1 Research Programs/Design
14.1.2 Market Size Estimation
14.1.3 Market Breakdown and Data Triangulation
14.2 Data Source
14.2.1 Secondary Sources
14.2.2 Primary Sources
14.3 Disclaimer

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Law Enforcement and Firefighting Protective Clothing Fabrics Market: Greater Defense Budget Allocations make Military Top Spender, TMR

The global law enforcement and firefighting protective clothing fabrics market in 2015 experienced the leadership of players such as TenCate, Milliken & Company, W.L. Gore and Associates, and National Safety Apparel. Their total share of around 35% of the global market shows a great deal of prominent for these players despite being a part of a highly fragmented market.

According to a research report released by Transparency Market Research, the degree of competition within the global law enforcement and firefighting protective clothing fabrics market is expected to be high and remain high over the coming years. A large number of globally prominent players dominate multiple regions in the market, especially Europe and North America. Quality standards are extremely high in this market and all players are locked in competition to provide superior products. At the same time, large portions of the revenue from the otherwise fragmented market are taken up by the prominent players through brand popularity and the formation and maintenance of long-term contracts.

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The global law enforcement and firefighting protective clothing fabrics market is expected to expand at a CAGR of 6.5% within a forecast period from 2016 to 2024, in terms of value. In 2015, this market had checked in at US$954.6 mn and by the end of 2024, it is expected to reach US$1.67 bn.


Military Bodies Up their Demand for Law Enforcement and Firefighting Protective Clothing Fabrics

“Defense and military have always been the greater users of law enforcement and firefighting protective clothing fabrics over the years. It is, after all, military personnel who are consistently exposed to harmful environments and battle threats. To combat these situations, the military is always in need of the latest equipment, protective gear and clothing, and weapons to defend themselves and to succeed in their operations. The clothing therefore being a heavy influencer of how military personnel can act or react, governments have made significant investments towards utilizing advanced materials and production tech to optimize their defense sector,” states a TMR analyst. The growing military sectors in several key countries is therefore, a primary driver of the global law enforcement and firefighting protective clothing fabrics market.

Cost Plays Heavy Hand against Global Law Enforcement and Firefighting Protective Clothing Fabrics Market

One of the key factors restraining the global law enforcement and firefighting protective clothing fabrics market is the very high costs associated with these fabrics. In comparison to traditional material, these fabrics undergo a much more complicated and intense series of weaving, chemical additions, and regulation-mandated testing. Moreover, the leading technologies and software used in the global law enforcement and firefighting protective clothing fabrics market are all proprietary and very expensive, thus adding to an already high capital required to set up in this market, thus deterring new entrants from it.

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The global law enforcement and firefighting protective clothing fabrics market is also being stifled by the overall lack of support and enforcement of norms and regulations by the governments of emerging economies. Despite the presence of several standards and laws, many reasons make it difficult for these mandates to be efficiently enforced across nations. This scenario is expected to change over the coming years.

“In fact, it is the very emerging economies that are expected to become the leading providers of high-end opportunities in the global law enforcement and firefighting protective clothing fabrics market. Over the coming years, their expanding industrial infrastructure and defense sectors are bound to give rise to a solid set of growth opportunities for several players within this market,” adds the analyst.

Key segments of the Global Law Enforcement and Firefighting Protective Clothing Fabrics Market

Law Enforcement and Firefighting Protective Clothing Fabrics Market: Application Analysis

  • Police
  • Fire Service
    • Turnout Gear
    • Wildlands Gear
    • Station Wear
  • Ambulance/EMT
  • Military
  • Others

 

The information presented in this review is based on a Transparency Market Research report, titled, “Law Enforcement and Firefighting Protective Clothing Fabrics Market – Global Industry Analysis, Size, Share, Growth, Trends, and Forecast 2016 – 2024.”

Lepidolite as Healing Crystal for Heat Insulator in Industrial Sector, Industry Segments By 2026

Lepidolite is a hard mica mineral composed of lithium, potassium, and aluminum silicates. It is usually violet colored mineral; however, it can be yellow or grey depending upon the quantity of lithium and other trace elements. Lepidolite is an ore of lithium; thus, it is a precursor for lithium production. The mineral has pearly texture, and is significantly used in jewelry due to its vibrant colors and appearance. Lepidolite is also known as a healing crystal; it is believed to reduce stress and bring prosperity. Therefore, demand for this mineral is high. Lepidolite is also employed as heat insulator in the industrial sector. The mineral is largely found in Brazil, the U.S., Russia, and several countries in Africa.

Lepidolite is significantly used in the production of lithium metal. Lithium is the lightest metal, which is employed in the manufacture of ultra-lightweight lithium ion and lithium polymer batteries for hybrid cars, mobile phones, laptops, and other portable devices. Rise in disposable income coupled with expansion of the middle class is expected to propel the demand for consumer goods. This, in turn, is anticipated to drive the lepidolite market during the forecast period. Increase in demand for high efficiency and lightweight storage batteries in several applications such as electronics, automotive, and aerospace is estimated to fuel the demand for lepidolite.

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Lepidolite is largely used in the industrial sector due to its beneficial thermal insulation properties. The stone also has substantial use for mineralogy and geological research. Thus, development in geological research is estimated to propel the lepidolite market during the forecast period. However, the composition of lepidolite varies significantly from one region to another. An ore with low amount of lithium is not feasible for lithium extraction. This is projected to hamper the lepidolite market in the near future.

Based on end-use, the lepidolite market can be segmented into manufacturing, jewelry, and research. Manufacturing is the key end-use segment of the lepidolite market due to the high demand for lithium in automotive, electronics, and aerospace battery applications. The jewelry segment also holds substantial share of the lepidolite market, as the mineral is attractive, lustrous, and vibrantly colored. Based on application, the lepidolite market can be divided into specimen, thermal & electric insulator, ornamental use, lithium production, and others. Lithium production is the prominent application segment of the mineral, due to significant importance of lithium metal in batteries. Specimen is also a major application segment of the lepidolite market.

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In terms of geography, the market for lepidolite can be segregated into Asia Pacific, Europe, North America, Latin America, and Middle East & Africa. Developed regions such as North America and Europe are the key consumers of lepidolite due to the large disposable income of consumers and strong growth in industries. Asia Pacific is also a sizeable market for lepidolite, led by the rapid industrialization, urbanization, increase in population, and presence of fast-growing economies. High demand for lithium ion and lithium polymer batteries in Asia Pacific, North America, and Europe is projected to offer immense opportunities for the lepidolite market in these regions. High demand for jewelry and ornaments in GCC is also a major factor likely to boost the lepidolite market in Middle East & Africa during the forecast period.

Key players operating in the global lepidolite market are Lithium Australia NL, Hallgarten & Company, Hangzhou J&H Chemical Co. Ltd, SVS Chemical Corporation, Cristian Grup Srl, Mc Chemical Co., Ltd, and Univar.

Global Ultra-low Alpha Metal Market: Directives Banning Usage of Hazardous Metals Spike Demand, notes TMR

Transparency Market Research states that the global ultra-low alpha (ULA) metal market is facing moderate competition. The leading players operating in the global market are Honeywell International Inc., Indium Corporation, Pure Technologies, and DUKSAN Hi-Metal Co., Ltd. Wide product portfolio of these companies has helped them gain an edge over the others in the coming years. The booming aviation and automotive industries are expected to offer players in the global market ample opportunities to grow in the coming years. Thus, several players are steering the development of their products to suit the requirements of these industries.

According to the research report, the global ultra-low alpha metal market is expected to be worth US$4.72 mn by the end of 2024 from US$2.53 in 2015. Between the forecast years of 2016 and 2024, the global market is expected to surge at a CAGR of 7.30%.

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Asia Pacific Leads the Pack with Flourishing Electrical and Electronics Industry

In terms of geography, the global ultra-low alpha metal market is segmented into North America, Latin America, Europe, Asia Pacific, and the Middle East and Africa. Of all these regions, Asia Pacific is expected to lead the global market as it is poised to acquire a share of 63.81% by 2024. The phenomenal contribution of Asia Pacific to the soaring revenue of the global ultra-low alpha metal market will be due to its flourishing electrical and electronics industry. The usage of lead-free alloys is expected to drive the demand for ultra-low alpha tin in Asia Pacific throughout the forecast period.

The products available in the global market are ULA tin, ULA tin alloys, ULA lead alloys, and ULA lead-free alloys. The report indicates that ULA lead-free alloys segment held a dominant share in the global market in 2015 due to its widening applications. By the end of 2024, this segment is expected to acquire a share of 41.8% in the overall market, which will be larger than the rest. The demand for ULA lead-free alloys is expected to grow against the backdrop of restrictions pertaining to the usage of heavy meals in electronic products.

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Preference for Safer Alloys Augments Demand for ULA Metals

The stern rules such as Restriction on Hazardous Substances (RoHS) Directive that are dissuading the usage of hazardous substances in several electric and electronic equipment has augmented the demand for the ultra-low alpha metal in recent years. The European Union was the first region to accept this directive in 2003, while the world followed suit with a few changes in a few countries. Such directives have coaxed electronic equipment manufacturers to reduce the usage of hazardous materials and replace it with ultra-low alpha metals. Subsequently, it has augmented the demand for alternate alloys that contain lead for the purpose of soldering. Several alloys with silver are also being preferred for soldering despite their expensive pricing as they offer improved process results.

Fluctuating Prices of Raw Materials to Hamper Sales

The fluctuating prices of raw materials that eventually impact the cost of alloys is expected to hamper the growth of the market. Furthermore, the volatile situation of supply and demand is also expected to restrain the market from achieving its true potential. The demand for the ultra-low alpha metal is determined by exceptionally specific demands of consumers. Therefore, the changing patterns of consumer demands are expected to have a direct impact on the global market.

The global ultra-low alpha metal market has been segmented as follows:

Ultra-low Alpha Metal Market – Product Analysis

  • ULA Tin
  • ULA Tin Alloys
  • ULA Lead Alloys
  • ULA Lead-free Alloys

Ultra-low Alpha Metal Market – End-user Industry Analysis

  • Aviation
  • Automotive
  • Electronics
  • Medical
  • Telecommunication
  • Others

This review is based on Transparency Market Research’s report, titled “Ultra-low Alpha Metals Market – Global Industry Analysis, Size, Share, Growth, Trends, and Forecast 2016 – 2024.”

Global Submarine Power Cable Market 2017 (Types- Single Core Cable, Multi Core Cable; Applications- Offshore Wind Power Generation, Inter-country and Island Connection, Offshore Oil Rigs) Industry Size, Share, Growth and Forecast 2022

This report studies Global Submarine Power Cable Market 2017, especially in North America, China, Europe, Southeast Asia, Japan and India, with production, revenue, consumption, import and export in these regions, from 2011 to 2015, and forecast to 2021.

This report focuses on top manufacturers in global market, with production, price, revenue and market share for each manufacturer, covering
ABB
General Cable
Nexans
Nkt Cables
Prysmian
Sumitomo

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By types, the market can be split into
Single Core Cable
Multi Core Cable

By Application, the market can be split into
Offshore Wind Power Generation
Inter-country and Island Connection
Offshore Oil Rigs

By Regions, this report covers (we can add the regions/countries as you want)
North America
China
Europe
Southeast Asia
Japan
India

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Table of Contents

Global Submarine Power Cable Market Professional Survey Report 2017
1 Industry Overview of Submarine Power Cable
1.1 Definition and Specifications of Submarine Power Cable
1.1.1 Definition of Submarine Power Cable
1.1.2 Specifications of Submarine Power Cable
1.2 Classification of Submarine Power Cable
1.2.1 Single Core Cable
1.2.2 Multi Core Cable
1.3 Applications of Submarine Power Cable
1.3.1 Offshore Wind Power Generation
1.3.2 Inter-country and Island Connection
1.3.3 Offshore Oil Rigs
1.4 Market Segment by Regions
1.4.1 North America
1.4.2 China
1.4.3 Europe
1.4.4 Southeast Asia
1.4.5 Japan
1.4.6 India

2 Manufacturing Cost Structure Analysis of Submarine Power Cable
2.1 Raw Material and Suppliers
2.2 Manufacturing Cost Structure Analysis of Submarine Power Cable
2.3 Manufacturing Process Analysis of Submarine Power Cable
2.4 Industry Chain Structure of Submarine Power Cable

3 Technical Data and Manufacturing Plants Analysis of Submarine Power Cable
3.1 Capacity and Commercial Production Date of Global Submarine Power Cable Major Manufacturers in 2015
3.2 Manufacturing Plants Distribution of Global Submarine Power Cable Major Manufacturers in 2015
3.3 R&D Status and Technology Source of Global Submarine Power Cable Major Manufacturers in 2015
3.4 Raw Materials Sources Analysis of Global Submarine Power Cable Major Manufacturers in 2015

4 Global Submarine Power Cable Overall Market Overview
4.1 2011-2016 Overall Market Analysis
4.2 Capacity Analysis
4.2.1 2011-2016 Global Submarine Power Cable Capacity and Growth Rate Analysis
4.2.2 2015 Submarine Power Cable Capacity Analysis (Company Segment)
4.3 Sales Analysis
4.3.1 2011-2016 Global Submarine Power Cable Sales and Growth Rate Analysis
4.3.2 2015 Submarine Power Cable Sales Analysis (Company Segment)
4.4 Sales Price Analysis
4.4.1 2011-2016 Global Submarine Power Cable Sales Price
4.4.2 2015 Submarine Power Cable Sales Price Analysis (Company Segment)

5 Submarine Power Cable Regional Market Analysis
5.1 North America Submarine Power Cable Market Analysis
5.1.1 North America Submarine Power Cable Market Overview
5.1.2 North America 2011-2016 Submarine Power Cable Local Supply, Import, Export, Local Consumption Analysis
5.1.3 North America 2011-2016 Submarine Power Cable Sales Price Analysis
5.1.4 North America 2015 Submarine Power Cable Market Share Analysis
5.2 China Submarine Power Cable Market Analysis
5.2.1 China Submarine Power Cable Market Overview
5.2.2 China 2011-2016 Submarine Power Cable Local Supply, Import, Export, Local Consumption Analysis
5.2.3 China 2011-2016 Submarine Power Cable Sales Price Analysis
5.2.4 China 2015 Submarine Power Cable Market Share Analysis
5.3 Europe Submarine Power Cable Market Analysis
5.3.1 Europe Submarine Power Cable Market Overview
5.3.2 Europe 2011-2016 Submarine Power Cable Local Supply, Import, Export, Local Consumption Analysis
5.3.3 Europe 2011-2016 Submarine Power Cable Sales Price Analysis
5.3.4 Europe 2015 Submarine Power Cable Market Share Analysis
5.4 Southeast Asia Submarine Power Cable Market Analysis
5.4.1 Southeast Asia Submarine Power Cable Market Overview
5.4.2 Southeast Asia 2011-2016 Submarine Power Cable Local Supply, Import, Export, Local Consumption Analysis
5.4.3 Southeast Asia 2011-2016 Submarine Power Cable Sales Price Analysis
5.4.4 Southeast Asia 2015 Submarine Power Cable Market Share Analysis
5.5 Japan Submarine Power Cable Market Analysis
5.5.1 Japan Submarine Power Cable Market Overview
5.5.2 Japan 2011-2016 Submarine Power Cable Local Supply, Import, Export, Local Consumption Analysis
5.5.3 Japan 2011-2016 Submarine Power Cable Sales Price Analysis
5.5.4 Japan 2015 Submarine Power Cable Market Share Analysis
5.6 India Submarine Power Cable Market Analysis
5.6.1 India Submarine Power Cable Market Overview
5.6.2 India 2011-2016 Submarine Power Cable Local Supply, Import, Export, Local Consumption Analysis
5.6.3 India 2011-2016 Submarine Power Cable Sales Price Analysis
5.6.4 India 2015 Submarine Power Cable Market Share Analysis

6 Global 2011-2016 Submarine Power Cable Segment Market Analysis (by Type)
6.1 Global 2011-2016 Submarine Power Cable Sales by Type
6.2 Different Types of Submarine Power Cable Product Interview Price Analysis
6.3 Different Types of Submarine Power Cable Product Driving Factors Analysis
6.3.1 Single Core Cable of Submarine Power Cable Growth Driving Factor Analysis
6.3.2 Multi Core Cable of Submarine Power Cable Growth Driving Factor Analysis

7 Global 2011-2016 Submarine Power Cable Segment Market Analysis (by Application)
7.1 Global 2011-2016 Submarine Power Cable Consumption by Application
7.2 Different Application of Submarine Power Cable Product Interview Price Analysis
7.3 Different Application of Submarine Power Cable Product Driving Factors Analysis
7.3.1 Offshore Wind Power Generation of Submarine Power Cable Growth Driving Factor Analysis
7.3.2 Inter-country and Island Connection of Submarine Power Cable Growth Driving Factor Analysis
7.3.3 Offshore Oil Rigs of Submarine Power Cable Growth Driving Factor Analysis

8 Major Manufacturers Analysis of Submarine Power Cable
8.1 ABB
8.1.1 Company Profile
8.1.2 Product Picture and Specifications
8.1.2.1 Single Core Cable
8.1.2.2 Multi Core Cable
8.1.3 ABB 2015 Submarine Power Cable Sales, Ex-factory Price, Revenue, Gross Margin Analysis
8.1.4 ABB 2015 Submarine Power Cable Business Region Distribution Analysis
8.2 General Cable
8.2.1 Company Profile
8.2.2 Product Picture and Specifications
8.2.2.1 Single Core Cable
8.2.2.2 Multi Core Cable
8.2.3 General Cable 2015 Submarine Power Cable Sales, Ex-factory Price, Revenue, Gross Margin Analysis
8.2.4 General Cable 2015 Submarine Power Cable Business Region Distribution Analysis
8.3 Nexans
8.3.1 Company Profile
8.3.2 Product Picture and Specifications
8.3.2.1 Single Core Cable
8.3.2.2 Multi Core Cable
8.3.3 Nexans 2015 Submarine Power Cable Sales, Ex-factory Price, Revenue, Gross Margin Analysis
8.3.4 Nexans 2015 Submarine Power Cable Business Region Distribution Analysis
8.4 Nkt Cables
8.4.1 Company Profile
8.4.2 Product Picture and Specifications
8.4.2.1 Single Core Cable
8.4.2.2 Multi Core Cable
8.4.3 Nkt Cables 2015 Submarine Power Cable Sales, Ex-factory Price, Revenue, Gross Margin Analysis
8.4.4 Nkt Cables 2015 Submarine Power Cable Business Region Distribution Analysis
8.5 Prysmian
8.5.1 Company Profile
8.5.2 Product Picture and Specifications
8.5.2.1 Single Core Cable
8.5.2.2 Multi Core Cable
8.5.3 Prysmian 2015 Submarine Power Cable Sales, Ex-factory Price, Revenue, Gross Margin Analysis
8.5.4 Prysmian 2015 Submarine Power Cable Business Region Distribution Analysis
8.6 Sumitomo
8.6.1 Company Profile
8.6.2 Product Picture and Specifications
8.6.2.1 Single Core Cable
8.6.2.2 Multi Core Cable
8.6.3 Sumitomo 2015 Submarine Power Cable Sales, Ex-factory Price, Revenue, Gross Margin Analysis
8.6.4 Sumitomo 2015 Submarine Power Cable Business Region Distribution Analysis

9 Development Trend of Analysis of Submarine Power Cable Market
9.1 Global Submarine Power Cable Market Trend Analysis
9.1.1 Global 2016-2021 Submarine Power Cable Market Size (Volume and Value) Forecast
9.1.2 Global 2016-2021 Submarine Power Cable Sales Price Forecast
9.2 Submarine Power Cable Regional Market Trend
9.2.1 North America 2016-2021 Submarine Power Cable Consumption Forecast
9.2.2 China 2016-2021 Submarine Power Cable Consumption Forecast
9.2.3 Europe 2016-2021 Submarine Power Cable Consumption Forecast
9.2.4 Southeast Asia 2016-2021 Submarine Power Cable Consumption Forecast
9.2.5 Japan 2016-2021 Submarine Power Cable Consumption Forecast
9.2.6 India 2016-2021 Submarine Power Cable Consumption Forecast
9.3 Submarine Power Cable Market Trend (Product Type)
9.4 Submarine Power Cable Market Trend (Application)

10 Submarine Power Cable Marketing Type Analysis
10.1 Submarine Power Cable Regional Marketing Type Analysis
10.2 Submarine Power Cable International Trade Type Analysis
10.3 Traders or Distributors with Contact Information of Submarine Power Cable by Regions
10.4 Submarine Power Cable Supply Chain Analysis

11 Consumers Analysis of Submarine Power Cable
11.1 Consumer 1 Analysis
11.2 Consumer 2 Analysis
11.3 Consumer 3 Analysis
11.4 Consumer 4 Analysis

12 Conclusion of the Global Submarine Power Cable Market Professional Survey Report 2017

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Global QYResearch: Aviation Alternative Fuels Sales Market 2016 by Application, Production, Sales, Market Share, Consumption, Trends and Forecast 2021

This report studies sales (consumption) of Global Aviation Alternative Fuels Market 2016, especially in United States, China, Europe, Japan, focuses on top players in these regions/countries, with sales, price, revenue and market share for each player in these regions, covering
GE Aviation
Rolls-Royce
SkyNRG
Swedish Biofuels
UOP
Amyris
AltAir Fuels
Byogy Renewables
Fulcrum BioEnergy
Gevo

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Market Segment by Regions, this report splits Global into several key Regions, with sales (consumption), revenue, market share and growth rate of Aviation Alternative Fuels in these regions, from 2011 to 2021 (forecast), like
United States
China
Europe
Japan
Split by product Types, with sales, revenue, price and gross margin, market share and growth rate of each type, can be divided into
Type I
Type II
Type III
Split by applications, this report focuses on sales, market share and growth rate of Aviation Alternative Fuels in each application, can be divided into
Application 1
Application 2
Application 3

View full report at http://globalqyresearch.com/global-aviation-alternative-fuels-sales-market-report-2016

Table of Contents

Global Aviation Alternative Fuels Sales Market Report 2016
1 Aviation Alternative Fuels Overview
1.1 Product Overview and Scope of Aviation Alternative Fuels
1.2 Classification of Aviation Alternative Fuels
1.2.1 Type I
1.2.2 Type II
1.2.3 Type III
1.3 Application of Aviation Alternative Fuels
1.3.1 Application 1
1.3.2 Application 2
1.3.3 Application 3
1.4 Aviation Alternative Fuels Market by Regions
1.4.1 United States Status and Prospect (2011-2021)
1.4.2 China Status and Prospect (2011-2021)
1.4.3 Europe Status and Prospect (2011-2021)
1.4.4 Japan Status and Prospect (2011-2021)
1.5 Global Market Size (Value and Volume) of Aviation Alternative Fuels (2011-2021)
1.5.1 Global Aviation Alternative Fuels Sales and Growth Rate (2011-2021)
1.5.2 Global Aviation Alternative Fuels Revenue and Growth Rate (2011-2021)

2 Global Aviation Alternative Fuels Competition by Manufacturers, Type and Application
2.1 Global Aviation Alternative Fuels Market Competition by Manufacturers
2.1.1 Global Aviation Alternative Fuels Sales and Market Share of Key Manufacturers (2011-2016)
2.1.2 Global Aviation Alternative Fuels Revenue and Share by Manufacturers (2011-2016)
2.2 Global Aviation Alternative Fuels (Volume and Value) by Type
2.2.1 Global Aviation Alternative Fuels Sales and Market Share by Type (2011-2016)
2.2.2 Global Aviation Alternative Fuels Revenue and Market Share by Type (2011-2016)
2.3 Global Aviation Alternative Fuels (Volume and Value) by Regions
2.3.1 Global Aviation Alternative Fuels Sales and Market Share by Regions (2011-2016)
2.3.2 Global Aviation Alternative Fuels Revenue and Market Share by Regions (2011-2016)
2.4 Global Aviation Alternative Fuels (Volume) by Application

3 United States Aviation Alternative Fuels (Volume, Value and Sales Price)
3.1 United States Aviation Alternative Fuels Sales and Value (2011-2016)
3.1.1 United States Aviation Alternative Fuels Sales and Growth Rate (2011-2016)
3.1.2 United States Aviation Alternative Fuels Revenue and Growth Rate (2011-2016)
3.1.3 United States Aviation Alternative Fuels Sales Price Trend (2011-2016)
3.2 United States Aviation Alternative Fuels Sales and Market Share by Manufacturers
3.3 United States Aviation Alternative Fuels Sales and Market Share by Type
3.4 United States Aviation Alternative Fuels Sales and Market Share by Application

4 China Aviation Alternative Fuels (Volume, Value and Sales Price)
4.1 China Aviation Alternative Fuels Sales and Value (2011-2016)
4.1.1 China Aviation Alternative Fuels Sales and Growth Rate (2011-2016)
4.1.2 China Aviation Alternative Fuels Revenue and Growth Rate (2011-2016)
4.1.3 China Aviation Alternative Fuels Sales Price Trend (2011-2016)
4.2 China Aviation Alternative Fuels Sales and Market Share by Manufacturers
4.3 China Aviation Alternative Fuels Sales and Market Share by Type
4.4 China Aviation Alternative Fuels Sales and Market Share by Application

5 Europe Aviation Alternative Fuels (Volume, Value and Sales Price)
5.1 Europe Aviation Alternative Fuels Sales and Value (2011-2016)
5.1.1 Europe Aviation Alternative Fuels Sales and Growth Rate (2011-2016)
5.1.2 Europe Aviation Alternative Fuels Revenue and Growth Rate (2011-2016)
5.1.3 Europe Aviation Alternative Fuels Sales Price Trend (2011-2016)
5.2 Europe Aviation Alternative Fuels Sales and Market Share by Manufacturers
5.3 Europe Aviation Alternative Fuels Sales and Market Share by Type
5.4 Europe Aviation Alternative Fuels Sales and Market Share by Application

6 Japan Aviation Alternative Fuels (Volume, Value and Sales Price)
6.1 Japan Aviation Alternative Fuels Sales and Value (2011-2016)
6.1.1 Japan Aviation Alternative Fuels Sales and Growth Rate (2011-2016)
6.1.2 Japan Aviation Alternative Fuels Revenue and Growth Rate (2011-2016)
6.1.3 Japan Aviation Alternative Fuels Sales Price Trend (2011-2016)
6.2 Japan Aviation Alternative Fuels Sales and Market Share by Manufacturers
6.3 Japan Aviation Alternative Fuels Sales and Market Share by Type
6.4 Japan Aviation Alternative Fuels Sales and Market Share by Application

7 Global Aviation Alternative Fuels Manufacturers Analysis
7.1 GE Aviation
7.1.1 Company Basic Information, Manufacturing Base and Competitors
7.1.2 Aviation Alternative Fuels Product Type, Application and Specification
7.1.2.1 Type I
7.1.2.2 Type II
7.1.3 GE Aviation Aviation Alternative Fuels Sales, Revenue, Price and Gross Margin (2011-2016)
7.1.4 Main Business/Business Overview
7.2 Rolls-Royce
7.2.1 Company Basic Information, Manufacturing Base and Competitors
7.2.2 105 Product Type, Application and Specification
7.2.2.1 Type I
7.2.2.2 Type II
7.2.3 Rolls-Royce Aviation Alternative Fuels Sales, Revenue, Price and Gross Margin (2011-2016)
7.2.4 Main Business/Business Overview
7.3 SkyNRG
7.3.1 Company Basic Information, Manufacturing Base and Competitors
7.3.2 124 Product Type, Application and Specification
7.3.2.1 Type I
7.3.2.2 Type II
7.3.3 SkyNRG Aviation Alternative Fuels Sales, Revenue, Price and Gross Margin (2011-2016)
7.3.4 Main Business/Business Overview
7.4 Swedish Biofuels
7.4.1 Company Basic Information, Manufacturing Base and Competitors
7.4.2 Dec Product Type, Application and Specification
7.4.2.1 Type I
7.4.2.2 Type II
7.4.3 Swedish Biofuels Aviation Alternative Fuels Sales, Revenue, Price and Gross Margin (2011-2016)
7.4.4 Main Business/Business Overview
7.5 UOP
7.5.1 Company Basic Information, Manufacturing Base and Competitors
7.5.2 Product Type, Application and Specification
7.5.2.1 Type I
7.5.2.2 Type II
7.5.3 UOP Aviation Alternative Fuels Sales, Revenue, Price and Gross Margin (2011-2016)
7.5.4 Main Business/Business Overview
7.6 Amyris
7.6.1 Company Basic Information, Manufacturing Base and Competitors
7.6.2 Million USD Product Type, Application and Specification
7.6.2.1 Type I
7.6.2.2 Type II
7.6.3 Amyris Aviation Alternative Fuels Sales, Revenue, Price and Gross Margin (2011-2016)
7.6.4 Main Business/Business Overview
7.7 AltAir Fuels
7.7.1 Company Basic Information, Manufacturing Base and Competitors
7.7.2 Energy Product Type, Application and Specification
7.7.2.1 Type I
7.7.2.2 Type II
7.7.3 AltAir Fuels Aviation Alternative Fuels Sales, Revenue, Price and Gross Margin (2011-2016)
7.7.4 Main Business/Business Overview
7.8 Byogy Renewables
7.8.1 Company Basic Information, Manufacturing Base and Competitors
7.8.2 Product Type, Application and Specification
7.8.2.1 Type I
7.8.2.2 Type II
7.8.3 Byogy Renewables Aviation Alternative Fuels Sales, Revenue, Price and Gross Margin (2011-2016)
7.8.4 Main Business/Business Overview
7.9 Fulcrum BioEnergy
7.9.1 Company Basic Information, Manufacturing Base and Competitors
7.9.2 Product Type, Application and Specification
7.9.2.1 Type I
7.9.2.2 Type II
7.9.3 Fulcrum BioEnergy Aviation Alternative Fuels Sales, Revenue, Price and Gross Margin (2011-2016)
7.9.4 Main Business/Business Overview
7.10 Gevo
7.10.1 Company Basic Information, Manufacturing Base and Competitors
7.10.2 Product Type, Application and Specification
7.10.2.1 Type I
7.10.2.2 Type II
7.10.3 Gevo Aviation Alternative Fuels Sales, Revenue, Price and Gross Margin (2011-2016)
7.10.4 Main Business/Business Overview

8 Aviation Alternative Fuels Maufacturing Cost Analysis
8.1 Aviation Alternative Fuels Key Raw Materials Analysis
8.1.1 Key Raw Materials
8.1.2 Price Trend of Key Raw Materials
8.1.3 Key Suppliers of Raw Materials
8.1.4 Market Concentration Rate of Raw Materials
8.2 Proportion of Manufacturing Cost Structure
8.2.1 Raw Materials
8.2.2 Labor Cost
8.2.3 Manufacturing Process Analysis of Aviation Alternative Fuels

9 Industrial Chain, Sourcing Strategy and Downstream Buyers
9.1 Aviation Alternative Fuels Industrial Chain Analysis
9.2 Upstream Raw Materials Sourcing
9.3 Raw Materials Sources of Aviation Alternative Fuels Major Manufacturers in 2015
9.4 Downstream Buyers

10 Marketing Strategy Analysis, Distributors/Traders
10.1 Marketing Channel
10.1.1 Direct Marketing
10.1.2 Indirect Marketing
10.1.3 Marketing Channel Development Trend
10.2 Market Positioning
10.2.1 Pricing Strategy
10.2.2 Brand Strategy
10.2.3 Target Client
10.3 Distributors/Traders List

11 Market Effect Factors Analysis
11.1 Technology Progress/Risk
11.1.1 Substitutes Threat
11.1.2 Technology Progress in Related Industry
11.2 Consumer Needs/Customer Preference Change
11.3 Economic/Political Environmental Change

12 Global Aviation Alternative Fuels Market Forecast (2016-2021)
12.1 Global Aviation Alternative Fuels Sales, Revenue Forecast (2016-2021)
12.2 Global Aviation Alternative Fuels Sales Forecast by Regions (2016-2021)
12.3 Global Aviation Alternative Fuels Sales Forecast by Type (2016-2021)
12.4 Global Aviation Alternative Fuels Sales Forecast by Application (2016-2021)

13 Appendix

Continue…

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Japan Aircraft Fuel Systems (Jet Engine, Helicopter Engine, Turboprop Engine, UAV Engine) Market Report 2016

This report studies sales (consumption) of Japan Aircraft Fuel Systems Market 2016, focuses on the top players, with sales, price, revenue and market share for each player, covering
Eaton
Parker Hannifin
Woodward
Honeywell International
Triumph Group
Meggitt PLC
GKN PLC
Zodiac Aerospace
Crane
United Technologies

Split by product types, with sales, revenue, price, market share and growth rate of each type, can be divided into
Jet Engine
Helicopter Engine
Turboprop Engine
UAV Engine
Split by applications, this report focuses on sales, market share and growth rate of Aircraft Fuel Systems in each application, can be divided into
Commercial
Military
UAV

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Table of Contents

Japan Aircraft Fuel Systems Market Report 2016
1 Aircraft Fuel Systems Overview
1.1 Product Overview and Scope of Aircraft Fuel Systems
1.2 Classification of Aircraft Fuel Systems
1.2.1 Jet Engine
1.2.2 Helicopter Engine
1.2.3 Turboprop Engine
1.2.4 UAV Engine
1.3 Application of Aircraft Fuel Systems
1.3.1 Commercial
1.3.2 Military
1.3.3 UAV
1.4 Japan Market Size Sales (Value) and Revenue (Volume) of Aircraft Fuel Systems (2011-2021)
1.4.1 Japan Aircraft Fuel Systems Sales and Growth Rate (2011-2021)
1.4.2 Japan Aircraft Fuel Systems Revenue and Growth Rate (2011-2021)

….

5 Japan Aircraft Fuel Systems Manufacturers Profiles/Analysis
5.1 Eaton
5.1.1 Company Basic Information, Manufacturing Base and Competitors
5.1.2 Aircraft Fuel Systems Product Type, Application and Specification
5.1.2.1 Type I
5.1.2.2 Type II
5.1.3 Eaton Aircraft Fuel Systems Sales, Revenue, Price and Gross Margin (2011-2016)
5.1.4 Main Business/Business Overview
5.2 Parker Hannifin
5.2.2 Aircraft Fuel Systems Product Type, Application and Specification
5.2.2.1 Type I
5.2.2.2 Type II
5.2.3 Parker Hannifin Aircraft Fuel Systems Sales, Revenue, Price and Gross Margin (2011-2016)
5.2.4 Main Business/Business Overview
5.3 Woodward
5.3.2 Aircraft Fuel Systems Product Type, Application and Specification
5.3.2.1 Type I
5.3.2.2 Type II
5.3.3 Woodward Aircraft Fuel Systems Sales, Revenue, Price and Gross Margin (2011-2016)
5.3.4 Main Business/Business Overview
5.4 Honeywell International
5.4.2 Aircraft Fuel Systems Product Type, Application and Specification
5.4.2.1 Type I
5.4.2.2 Type II
5.4.3 Honeywell International Aircraft Fuel Systems Sales, Revenue, Price and Gross Margin (2011-2016)
5.4.4 Main Business/Business Overview
5.5 Triumph Group
5.5.2 Aircraft Fuel Systems Product Type, Application and Specification
5.5.2.1 Type I
5.5.2.2 Type II
5.5.3 Triumph Group Aircraft Fuel Systems Sales, Revenue, Price and Gross Margin (2011-2016)
5.5.4 Main Business/Business Overview
5.6 Meggitt PLC
5.6.2 Aircraft Fuel Systems Product Type, Application and Specification
5.6.2.1 Type I
5.6.2.2 Type II
5.6.3 Meggitt PLC Aircraft Fuel Systems Sales, Revenue, Price and Gross Margin (2011-2016)
5.6.4 Main Business/Business Overview
5.7 GKN PLC
5.7.2 Aircraft Fuel Systems Product Type, Application and Specification
5.7.2.1 Type I
5.7.2.2 Type II
5.7.3 GKN PLC Aircraft Fuel Systems Sales, Revenue, Price and Gross Margin (2011-2016)
5.7.4 Main Business/Business Overview
5.8 Zodiac Aerospace
5.8.2 Aircraft Fuel Systems Product Type, Application and Specification
5.8.2.1 Type I
5.8.2.2 Type II
5.8.3 Zodiac Aerospace Aircraft Fuel Systems Sales, Revenue, Price and Gross Margin (2011-2016)
5.8.4 Main Business/Business Overview
5.9 Crane
5.9.2 Aircraft Fuel Systems Product Type, Application and Specification
5.9.2.1 Type I
5.9.2.2 Type II
5.9.3 Crane Aircraft Fuel Systems Sales, Revenue, Price and Gross Margin (2011-2016)
5.9.4 Main Business/Business Overview
5.10 United Technologies
5.10.2 Aircraft Fuel Systems Product Type, Application and Specification
5.10.2.1 Type I
5.10.2.2 Type II
5.10.3 United Technologies Aircraft Fuel Systems Sales, Revenue, Price and Gross Margin (2011-2016)
5.10.4 Main Business/Business Overview

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Global Airport Surveillance Radar Market 2016 Industry Analysis, Size, Share, Growth, Trends, and Forecast 2021

This report studies Airport Surveillance Radar in Global market, especially in North America, Europe, China, Japan, Southeast Asia and India, focuses on top manufacturers in global market, with production, price, revenue and market share for each manufacturer, covering
BAE Systems Plc (UK)
Becker Avionics Inc. (USA)
Thales Group (France)
Northrop Grumman Corp. (USA)
Raytheon Company (USA)
Lockheed Martin Corporation (USA)
AngioDynamics, Inc. (US)
Exelis, Inc. (USA)
Frequentis AG (Austria)
Harris Corporation (USA)
Carl Zeiss Meditec AG (Germany)
Intelcan Technosystems, Inc. (Canada)
Kongsberg Gallium Ltd (Canada)

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Market Segment by Regions, this report splits Global into several key Regions, with production, consumption, revenue, market share and growth rate of Airport Surveillance Radar in these regions, from 2011 to 2021 (forecast), like
North America
Europe
China
Japan
Southeast Asia
India
Split by product type, with production, revenue, price, market share and growth rate of each type, can be divided into
Type I
Type II
Type III
Split by application, this report focuses on consumption, market share and growth rate of Airport Surveillance Radar in each application, can be divided into
Application 1
Application 2
Application 3

View full report at http://globalqyresearch.com/global-airport-surveillance-radar-market-research-report-2016

Table of Contents

Global Airport Surveillance Radar Market Research Report 2016
1 Airport Surveillance Radar Market Overview
1.1 Product Overview and Scope of Airport Surveillance Radar
1.2 Airport Surveillance Radar Segment by Type
1.2.1 Global Production Market Share of Airport Surveillance Radar by Type in 2015
1.2.2 Type I
1.2.3 Type II
1.2.4 Type III
1.3 Airport Surveillance Radar Segment by Application
1.3.1 Airport Surveillance Radar Consumption Market Share by Application in 2015
1.3.2 Application 1
1.3.3 Application 2
1.3.4 Application 3
1.4 Airport Surveillance Radar Market by Region
1.4.1 North America Status and Prospect (2011-2021)
1.4.2 Europe Status and Prospect (2011-2021)
1.4.3 China Status and Prospect (2011-2021)
1.4.4 Japan Status and Prospect (2011-2021)
1.4.5 Southeast Asia Status and Prospect (2011-2021)
1.4.6 India Status and Prospect (2011-2021)
1.5 Global Market Size (Value) of Airport Surveillance Radar (2011-2021)

2 Global Airport Surveillance Radar Market Competition by Manufacturers
2.1 Global Airport Surveillance Radar Production and Share by Manufacturers (2015 and 2016)
2.2 Global Airport Surveillance Radar Revenue and Share by Manufacturers (2015 and 2016)
2.3 Global Airport Surveillance Radar Average Price by Manufacturers (2015 and 2016)
2.4 Manufacturers Airport Surveillance Radar Manufacturing Base Distribution, Sales Area and Product Type
2.5 Airport Surveillance Radar Market Competitive Situation and Trends
2.5.1 Airport Surveillance Radar Market Concentration Rate
2.5.2 Airport Surveillance Radar Market Share of Top 3 and Top 5 Manufacturers
2.5.3 Mergers & Acquisitions, Expansion

3 Global Airport Surveillance Radar Production, Revenue (Value) by Region (2011-2016)
3.1 Global Airport Surveillance Radar Production by Region (2011-2016)
3.2 Global Airport Surveillance Radar Production Market Share by Region (2011-2016)
3.3 Global Airport Surveillance Radar Revenue (Value) and Market Share by Region (2011-2016)
3.4 Global Airport Surveillance Radar Production, Revenue, Price and Gross Margin (2011-2016)
3.5 North America Airport Surveillance Radar Production, Revenue, Price and Gross Margin (2011-2016)
3.6 Europe Airport Surveillance Radar Production, Revenue, Price and Gross Margin (2011-2016)
3.7 China Airport Surveillance Radar Production, Revenue, Price and Gross Margin (2011-2016)
3.8 Japan Airport Surveillance Radar Production, Revenue, Price and Gross Margin (2011-2016)
3.9 Southeast Asia Airport Surveillance Radar Production, Revenue, Price and Gross Margin (2011-2016)
3.10 India Airport Surveillance Radar Production, Revenue, Price and Gross Margin (2011-2016)

4 Global Airport Surveillance Radar Supply (Production), Consumption, Export, Import by Regions (2011-2016)
4.1 Global Airport Surveillance Radar Consumption by Regions (2011-2016)
4.2 North America Airport Surveillance Radar Production, Consumption, Export, Import by Regions (2011-2016)
4.3 Europe Airport Surveillance Radar Production, Consumption, Export, Import by Regions (2011-2016)
4.4 China Airport Surveillance Radar Production, Consumption, Export, Import by Regions (2011-2016)
4.5 Japan Airport Surveillance Radar Production, Consumption, Export, Import by Regions (2011-2016)
4.6 Southeast Asia Airport Surveillance Radar Production, Consumption, Export, Import by Regions (2011-2016)
4.7 India Airport Surveillance Radar Production, Consumption, Export, Import by Regions (2011-2016)

5 Global Airport Surveillance Radar Production, Revenue (Value), Price Trend by Type
5.1 Global Airport Surveillance Radar Production and Market Share by Type (2011-2016)
5.2 Global Airport Surveillance Radar Revenue and Market Share by Type (2011-2016)
5.3 Global Airport Surveillance Radar Price by Type (2011-2016)
5.4 Global Airport Surveillance Radar Production Growth by Type (2011-2016)

6 Global Airport Surveillance Radar Market Analysis by Application
6.1 Global Airport Surveillance Radar Consumption and Market Share by Application (2011-2016)
6.2 Global Airport Surveillance Radar Consumption Growth Rate by Application (2011-2016)
6.3 Market Drivers and Opportunities
6.3.1 Potential Applications
6.3.2 Emerging Markets/Countries

7 Global Airport Surveillance Radar Manufacturers Profiles/Analysis
7.1 BAE Systems Plc (UK)
7.1.1 Company Basic Information, Manufacturing Base and Its Competitors
7.1.2 Airport Surveillance Radar Product Type, Application and Specification
7.1.2.1 Type I
7.1.2.2 Type II
7.1.3 BAE Systems Plc (UK) Airport Surveillance Radar Production, Revenue, Price and Gross Margin (2015 and 2016)
7.1.4 Main Business/Business Overview
7.2 Becker Avionics Inc. (USA)
7.2.1 Company Basic Information, Manufacturing Base and Its Competitors
7.2.2 Airport Surveillance Radar Product Type, Application and Specification
7.2.2.1 Type I
7.2.2.2 Type II
7.2.3 Becker Avionics Inc. (USA) Airport Surveillance Radar Production, Revenue, Price and Gross Margin (2015 and 2016)
7.2.4 Main Business/Business Overview
7.3 Thales Group (France)
7.3.1 Company Basic Information, Manufacturing Base and Its Competitors
7.3.2 Airport Surveillance Radar Product Type, Application and Specification
7.3.2.1 Type I
7.3.2.2 Type II
7.3.3 Thales Group (France) Airport Surveillance Radar Production, Revenue, Price and Gross Margin (2015 and 2016)
7.3.4 Main Business/Business Overview
7.4 Northrop Grumman Corp. (USA)
7.4.1 Company Basic Information, Manufacturing Base and Its Competitors
7.4.2 Airport Surveillance Radar Product Type, Application and Specification
7.4.2.1 Type I
7.4.2.2 Type II
7.4.3 Northrop Grumman Corp. (USA) Airport Surveillance Radar Production, Revenue, Price and Gross Margin (2015 and 2016)
7.4.4 Main Business/Business Overview
7.5 Raytheon Company (USA)
7.5.1 Company Basic Information, Manufacturing Base and Its Competitors
7.5.2 Airport Surveillance Radar Product Type, Application and Specification
7.5.2.1 Type I
7.5.2.2 Type II
7.5.3 Raytheon Company (USA) Airport Surveillance Radar Production, Revenue, Price and Gross Margin (2015 and 2016)
7.5.4 Main Business/Business Overview
7.6 Lockheed Martin Corporation (USA)
7.6.1 Company Basic Information, Manufacturing Base and Its Competitors
7.6.2 Airport Surveillance Radar Product Type, Application and Specification
7.6.2.1 Type I
7.6.2.2 Type II
7.6.3 Lockheed Martin Corporation (USA) Airport Surveillance Radar Production, Revenue, Price and Gross Margin (2015 and 2016)
7.6.4 Main Business/Business Overview
7.7 AngioDynamics, Inc. (US)
7.7.1 Company Basic Information, Manufacturing Base and Its Competitors
7.7.2 Airport Surveillance Radar Product Type, Application and Specification
7.7.2.1 Type I
7.7.2.2 Type II
7.7.3 AngioDynamics, Inc. (US) Airport Surveillance Radar Production, Revenue, Price and Gross Margin (2015 and 2016)
7.7.4 Main Business/Business Overview
7.8 Exelis, Inc. (USA)
7.8.1 Company Basic Information, Manufacturing Base and Its Competitors
7.8.2 Airport Surveillance Radar Product Type, Application and Specification
7.8.2.1 Type I
7.8.2.2 Type II
7.8.3 Exelis, Inc. (USA) Airport Surveillance Radar Production, Revenue, Price and Gross Margin (2015 and 2016)
7.8.4 Main Business/Business Overview
7.9 Frequentis AG (Austria)
7.9.1 Company Basic Information, Manufacturing Base and Its Competitors
7.9.2 Airport Surveillance Radar Product Type, Application and Specification
7.9.2.1 Type I
7.9.2.2 Type II
7.9.3 Frequentis AG (Austria) Airport Surveillance Radar Production, Revenue, Price and Gross Margin (2015 and 2016)
7.9.4 Main Business/Business Overview
7.10 Harris Corporation (USA)
7.10.1 Company Basic Information, Manufacturing Base and Its Competitors
7.10.2 Airport Surveillance Radar Product Type, Application and Specification
7.10.2.1 Type I
7.10.2.2 Type II
7.10.3 Harris Corporation (USA) Airport Surveillance Radar Production, Revenue, Price and Gross Margin (2015 and 2016)
7.10.4 Main Business/Business Overview
7.11 Carl Zeiss Meditec AG (Germany)
7.12 Intelcan Technosystems, Inc. (Canada)
7.13 Kongsberg Gallium Ltd (Canada)

8 Airport Surveillance Radar Manufacturing Cost Analysis
8.1 Airport Surveillance Radar Key Raw Materials Analysis
8.1.1 Key Raw Materials
8.1.2 Price Trend of Key Raw Materials
8.1.3 Key Suppliers of Raw Materials
8.1.4 Market Concentration Rate of Raw Materials
8.2 Proportion of Manufacturing Cost Structure
8.2.1 Raw Materials
8.2.2 Labor Cost
8.2.3 Manufacturing Expenses
8.3 Manufacturing Process Analysis of Airport Surveillance Radar

9 Industrial Chain, Sourcing Strategy and Downstream Buyers
9.1 Airport Surveillance Radar Industrial Chain Analysis
9.2 Upstream Raw Materials Sourcing
9.3 Raw Materials Sources of Airport Surveillance Radar Major Manufacturers in 2015
9.4 Downstream Buyers

10 Marketing Strategy Analysis, Distributors/Traders
10.1 Marketing Channel
10.1.1 Direct Marketing
10.1.2 Indirect Marketing
10.1.3 Marketing Channel Development Trend
10.2 Market Positioning
10.2.1 Pricing Strategy
10.2.2 Brand Strategy
10.2.3 Target Client
10.3 Distributors/Traders List

11 Market Effect Factors Analysis
11.1 Technology Progress/Risk
11.1.1 Substitutes Threat
11.1.2 Technology Progress in Related Industry
11.2 Consumer Needs/Customer Preference Change
11.3 Economic/Political Environmental Change

12 Global Airport Surveillance Radar Market Forecast (2016-2021)
12.1 Global Airport Surveillance Radar Production, Revenue Forecast (2016-2021)
12.2 Global Airport Surveillance Radar Production, Consumption Forecast by Regions (2016-2021)
12.3 Global Airport Surveillance Radar Production Forecast by Type (2016-2021)
12.4 Global Airport Surveillance Radar Consumption Forecast by Application (2016-2021)
12.5 Airport Surveillance Radar Price Forecast (2016-2021)

13 Research Findings and Conclusion

14 Appendix

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Global Air Traffic Control (ATC) Equipment Market Research Report 2016 Production, Sales, Market Share, Consumption, Import, Export, Price, Cost, Gross Margin

This report studies Air Traffic Control (ATC) Equipment in Global market, especially in North America, Europe, China, Japan, Southeast Asia and India, focuses on top manufacturers in global market, with production, price, revenue and market share for each manufacturer, covering
BAE Systems Plc (UK)
Becker Avionics Inc. (USA)
Thales Group (France)
Northrop Grumman Corp. (USA)
Raytheon Company (USA)
Lockheed Martin Corporation (USA)
Cobham Plc (UK)
Exelis, Inc. (USA)
Frequentis AG (Austria)
Harris Corporation (USA)
Indra Sistemas S. A. (Spain)
Intelcan Technosystems, Inc. (Canada)
Kongsberg Gallium Ltd (Canada)
Carl Zeiss Meditec AG (Germany)
AngioDynamics, Inc. (US)

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Market Segment by Regions, this report splits Global into several key Regions, with production, consumption, revenue, market share and growth rate of Air Traffic Control (ATC) Equipment in these regions, from 2011 to 2021 (forecast), like
North America
Europe
China
Japan
Southeast Asia
India
Split by product type, with production, revenue, price, market share and growth rate of each type, can be divided into
Air Traffic Control Communications Equipment
Air Traffic Control Navigation Equipment
Air Traffic Control Surveillance Equipment
Split by application, this report focuses on consumption, market share and growth rate of Air Traffic Control (ATC) Equipment in each application, can be divided into
Application 1
Application 2
Application 3

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Table of Contents

Global Air Traffic Control (ATC) Equipment Market Research Report 2016
1 Air Traffic Control (ATC) Equipment Market Overview
1.1 Product Overview and Scope of Air Traffic Control (ATC) Equipment
1.2 Air Traffic Control (ATC) Equipment Segment by Type
1.2.1 Global Production Market Share of Air Traffic Control (ATC) Equipment by Type in 2015
1.2.2 Air Traffic Control Communications Equipment
1.2.3 Air Traffic Control Navigation Equipment
1.2.4 Air Traffic Control Surveillance Equipment
1.3 Air Traffic Control (ATC) Equipment Segment by Application
1.3.1 Air Traffic Control (ATC) Equipment Consumption Market Share by Application in 2015
1.3.2 Application 1
1.3.3 Application 2
1.3.4 Application 3
1.4 Air Traffic Control (ATC) Equipment Market by Region
1.4.1 North America Status and Prospect (2011-2021)
1.4.2 Europe Status and Prospect (2011-2021)
1.4.3 China Status and Prospect (2011-2021)
1.4.4 Japan Status and Prospect (2011-2021)
1.4.5 Southeast Asia Status and Prospect (2011-2021)
1.4.6 India Status and Prospect (2011-2021)
1.5 Global Market Size (Value) of Air Traffic Control (ATC) Equipment (2011-2021)

2 Global Air Traffic Control (ATC) Equipment Market Competition by Manufacturers
2.1 Global Air Traffic Control (ATC) Equipment Production and Share by Manufacturers (2015 and 2016)
2.2 Global Air Traffic Control (ATC) Equipment Revenue and Share by Manufacturers (2015 and 2016)
2.3 Global Air Traffic Control (ATC) Equipment Average Price by Manufacturers (2015 and 2016)
2.4 Manufacturers Air Traffic Control (ATC) Equipment Manufacturing Base Distribution, Sales Area and Product Type
2.5 Air Traffic Control (ATC) Equipment Market Competitive Situation and Trends
2.5.1 Air Traffic Control (ATC) Equipment Market Concentration Rate
2.5.2 Air Traffic Control (ATC) Equipment Market Share of Top 3 and Top 5 Manufacturers
2.5.3 Mergers & Acquisitions, Expansion

3 Global Air Traffic Control (ATC) Equipment Production, Revenue (Value) by Region (2011-2016)
3.1 Global Air Traffic Control (ATC) Equipment Production by Region (2011-2016)
3.2 Global Air Traffic Control (ATC) Equipment Production Market Share by Region (2011-2016)
3.3 Global Air Traffic Control (ATC) Equipment Revenue (Value) and Market Share by Region (2011-2016)
3.4 Global Air Traffic Control (ATC) Equipment Production, Revenue, Price and Gross Margin (2011-2016)
3.5 North America Air Traffic Control (ATC) Equipment Production, Revenue, Price and Gross Margin (2011-2016)
3.6 Europe Air Traffic Control (ATC) Equipment Production, Revenue, Price and Gross Margin (2011-2016)
3.7 China Air Traffic Control (ATC) Equipment Production, Revenue, Price and Gross Margin (2011-2016)
3.8 Japan Air Traffic Control (ATC) Equipment Production, Revenue, Price and Gross Margin (2011-2016)
3.9 Southeast Asia Air Traffic Control (ATC) Equipment Production, Revenue, Price and Gross Margin (2011-2016)
3.10 India Air Traffic Control (ATC) Equipment Production, Revenue, Price and Gross Margin (2011-2016)

4 Global Air Traffic Control (ATC) Equipment Supply (Production), Consumption, Export, Import by Regions (2011-2016)
4.1 Global Air Traffic Control (ATC) Equipment Consumption by Regions (2011-2016)
4.2 North America Air Traffic Control (ATC) Equipment Production, Consumption, Export, Import by Regions (2011-2016)
4.3 Europe Air Traffic Control (ATC) Equipment Production, Consumption, Export, Import by Regions (2011-2016)
4.4 China Air Traffic Control (ATC) Equipment Production, Consumption, Export, Import by Regions (2011-2016)
4.5 Japan Air Traffic Control (ATC) Equipment Production, Consumption, Export, Import by Regions (2011-2016)
4.6 Southeast Asia Air Traffic Control (ATC) Equipment Production, Consumption, Export, Import by Regions (2011-2016)
4.7 India Air Traffic Control (ATC) Equipment Production, Consumption, Export, Import by Regions (2011-2016)

5 Global Air Traffic Control (ATC) Equipment Production, Revenue (Value), Price Trend by Type
5.1 Global Air Traffic Control (ATC) Equipment Production and Market Share by Type (2011-2016)
5.2 Global Air Traffic Control (ATC) Equipment Revenue and Market Share by Type (2011-2016)
5.3 Global Air Traffic Control (ATC) Equipment Price by Type (2011-2016)
5.4 Global Air Traffic Control (ATC) Equipment Production Growth by Type (2011-2016)

6 Global Air Traffic Control (ATC) Equipment Market Analysis by Application
6.1 Global Air Traffic Control (ATC) Equipment Consumption and Market Share by Application (2011-2016)
6.2 Global Air Traffic Control (ATC) Equipment Consumption Growth Rate by Application (2011-2016)
6.3 Market Drivers and Opportunities
6.3.1 Potential Applications
6.3.2 Emerging Markets/Countries

7 Global Air Traffic Control (ATC) Equipment Manufacturers Profiles/Analysis
7.1 BAE Systems Plc (UK)
7.1.1 Company Basic Information, Manufacturing Base and Its Competitors
7.1.2 Air Traffic Control (ATC) Equipment Product Type, Application and Specification
7.1.2.1 Type I
7.1.2.2 Type II
7.1.3 BAE Systems Plc (UK) Air Traffic Control (ATC) Equipment Production, Revenue, Price and Gross Margin (2015 and 2016)
7.1.4 Main Business/Business Overview
7.2 Becker Avionics Inc. (USA)
7.2.1 Company Basic Information, Manufacturing Base and Its Competitors
7.2.2 Air Traffic Control (ATC) Equipment Product Type, Application and Specification
7.2.2.1 Type I
7.2.2.2 Type II
7.2.3 Becker Avionics Inc. (USA) Air Traffic Control (ATC) Equipment Production, Revenue, Price and Gross Margin (2015 and 2016)
7.2.4 Main Business/Business Overview
7.3 Thales Group (France)
7.3.1 Company Basic Information, Manufacturing Base and Its Competitors
7.3.2 Air Traffic Control (ATC) Equipment Product Type, Application and Specification
7.3.2.1 Type I
7.3.2.2 Type II
7.3.3 Thales Group (France) Air Traffic Control (ATC) Equipment Production, Revenue, Price and Gross Margin (2015 and 2016)
7.3.4 Main Business/Business Overview
7.4 Northrop Grumman Corp. (USA)
7.4.1 Company Basic Information, Manufacturing Base and Its Competitors
7.4.2 Air Traffic Control (ATC) Equipment Product Type, Application and Specification
7.4.2.1 Type I
7.4.2.2 Type II
7.4.3 Northrop Grumman Corp. (USA) Air Traffic Control (ATC) Equipment Production, Revenue, Price and Gross Margin (2015 and 2016)
7.4.4 Main Business/Business Overview
7.5 Raytheon Company (USA)
7.5.1 Company Basic Information, Manufacturing Base and Its Competitors
7.5.2 Air Traffic Control (ATC) Equipment Product Type, Application and Specification
7.5.2.1 Type I
7.5.2.2 Type II
7.5.3 Raytheon Company (USA) Air Traffic Control (ATC) Equipment Production, Revenue, Price and Gross Margin (2015 and 2016)
7.5.4 Main Business/Business Overview
7.6 Lockheed Martin Corporation (USA)
7.6.1 Company Basic Information, Manufacturing Base and Its Competitors
7.6.2 Air Traffic Control (ATC) Equipment Product Type, Application and Specification
7.6.2.1 Type I
7.6.2.2 Type II
7.6.3 Lockheed Martin Corporation (USA) Air Traffic Control (ATC) Equipment Production, Revenue, Price and Gross Margin (2015 and 2016)
7.6.4 Main Business/Business Overview
7.7 Cobham Plc (UK)
7.7.1 Company Basic Information, Manufacturing Base and Its Competitors
7.7.2 Air Traffic Control (ATC) Equipment Product Type, Application and Specification
7.7.2.1 Type I
7.7.2.2 Type II
7.7.3 Cobham Plc (UK) Air Traffic Control (ATC) Equipment Production, Revenue, Price and Gross Margin (2015 and 2016)
7.7.4 Main Business/Business Overview
7.8 Exelis, Inc. (USA)
7.8.1 Company Basic Information, Manufacturing Base and Its Competitors
7.8.2 Air Traffic Control (ATC) Equipment Product Type, Application and Specification
7.8.2.1 Type I
7.8.2.2 Type II
7.8.3 Exelis, Inc. (USA) Air Traffic Control (ATC) Equipment Production, Revenue, Price and Gross Margin (2015 and 2016)
7.8.4 Main Business/Business Overview
7.9 Frequentis AG (Austria)
7.9.1 Company Basic Information, Manufacturing Base and Its Competitors
7.9.2 Air Traffic Control (ATC) Equipment Product Type, Application and Specification
7.9.2.1 Type I
7.9.2.2 Type II
7.9.3 Frequentis AG (Austria) Air Traffic Control (ATC) Equipment Production, Revenue, Price and Gross Margin (2015 and 2016)
7.9.4 Main Business/Business Overview
7.10 Harris Corporation (USA)
7.10.1 Company Basic Information, Manufacturing Base and Its Competitors
7.10.2 Air Traffic Control (ATC) Equipment Product Type, Application and Specification
7.10.2.1 Type I
7.10.2.2 Type II
7.10.3 Harris Corporation (USA) Air Traffic Control (ATC) Equipment Production, Revenue, Price and Gross Margin (2015 and 2016)
7.10.4 Main Business/Business Overview
7.11 Indra Sistemas S. A. (Spain)
7.12 Intelcan Technosystems, Inc. (Canada)
7.13 Kongsberg Gallium Ltd (Canada)
7.14 Carl Zeiss Meditec AG (Germany)
7.15 AngioDynamics, Inc. (US)

8 Air Traffic Control (ATC) Equipment Manufacturing Cost Analysis
8.1 Air Traffic Control (ATC) Equipment Key Raw Materials Analysis
8.1.1 Key Raw Materials
8.1.2 Price Trend of Key Raw Materials
8.1.3 Key Suppliers of Raw Materials
8.1.4 Market Concentration Rate of Raw Materials
8.2 Proportion of Manufacturing Cost Structure
8.2.1 Raw Materials
8.2.2 Labor Cost
8.2.3 Manufacturing Expenses
8.3 Manufacturing Process Analysis of Air Traffic Control (ATC) Equipment

9 Industrial Chain, Sourcing Strategy and Downstream Buyers
9.1 Air Traffic Control (ATC) Equipment Industrial Chain Analysis
9.2 Upstream Raw Materials Sourcing
9.3 Raw Materials Sources of Air Traffic Control (ATC) Equipment Major Manufacturers in 2015
9.4 Downstream Buyers

10 Marketing Strategy Analysis, Distributors/Traders
10.1 Marketing Channel
10.1.1 Direct Marketing
10.1.2 Indirect Marketing
10.1.3 Marketing Channel Development Trend
10.2 Market Positioning
10.2.1 Pricing Strategy
10.2.2 Brand Strategy
10.2.3 Target Client
10.3 Distributors/Traders List

11 Market Effect Factors Analysis
11.1 Technology Progress/Risk
11.1.1 Substitutes Threat
11.1.2 Technology Progress in Related Industry
11.2 Consumer Needs/Customer Preference Change
11.3 Economic/Political Environmental Change

12 Global Air Traffic Control (ATC) Equipment Market Forecast (2016-2021)
12.1 Global Air Traffic Control (ATC) Equipment Production, Revenue Forecast (2016-2021)
12.2 Global Air Traffic Control (ATC) Equipment Production, Consumption Forecast by Regions (2016-2021)
12.3 Global Air Traffic Control (ATC) Equipment Production Forecast by Type (2016-2021)
12.4 Global Air Traffic Control (ATC) Equipment Consumption Forecast by Application (2016-2021)
12.5 Air Traffic Control (ATC) Equipment Price Forecast (2016-2021)

13 Research Findings and Conclusion

14 Appendix

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Sand blasting machines market size over $485 million by 2022: Global Market Insights, Inc.

Sand blasting machines market size is forecast to exceed USD 485 million by 2022, as per a new research report by Global Market Insights, Inc. Emergence of robotic technology for sand blasting should boost global demand. Industrial sand blasting machines market size was valued at USD 298.3 million in 2014, with forecast of USD 391.2 million by 2022.

 
This technology has been increasingly adopted to amplify the extent of sand blasting in areas where part complexity, quality control and complex process requirements are not sufficed through standard automation solutions. It provides optional features such as automatic recovery, automated media flow control, custom data collection, automatic blast pressure control, report generation, through-the-fixture back pressure control and rotary lance capabilities.

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Health hazards associated with the use of silica as an abrasive material coupled with threat of substitutes are expected to challenge growth over the forecast period.

Key insights from the report include:

  • Global sand blasting machines market was valued at USD 366.1 million in 2014, with expected revenue of USD 485.4 million by 2022, growing at 3.5% from 2015 to 2022. In terms of volume, the industry should grow at a CAGR of 5.0%, to exceed 140.1 thousand units by 2022, up from 93.9 thousand units in 2014.
  • Mini-sand blasting machines market share was over 18% in 2014, and with segment growth expectations of 4.1% from 2015 to 2022. This is primarily due to increasing deployment in household activities such as rust removal, repairing and paint removal. Additionally, increased substitution of manual labor with sand blasting for performing domestic tasks to save time is likely to boost demand.
  • Asia Pacific led the global industry with over 35% of the overall share in 2014, with forecast of 4.2% growth over the forecast period, mainly due to the considerable Chinese industry. Although sand blasting machines price trend is low in the region, high unit volumes should see sizable revenue during over coming six years. Europe may grow sluggishly compared to the global average to exceed USD 95 million by 2022.
  • The sand blasting machines market share is highly fragmented in nature, with the presence of several stakeholders. Clemco Industries, Tools USA, Trinity Tool, and C.M. Surface were among the key participants in 2014. Other notable companies include Airblast B.V, Kramer Industries, SANdBOT (JetSystem Group), Midwest Finishing Systems Inc., Norton Sandblasting Equipment, Torbo Engineering Keizers GmbH, and Sintokogio Group among others.

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Global Market Insights, Inc., headquartered in Delaware, U.S., is a global market research and consulting service provider; offering syndicated and custom research reports along with growth consulting services. Our business intelligence and industry research reports offer clients with penetrative insights and actionable market data specially designed and presented to aid strategic decision making. These exhaustive reports are designed via a proprietary research methodology and are available for key industries such as chemicals, advanced materials, technology, renewable energy and biotechnology.


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Recyclable Thermosets Market Report, Regional Analysis, Competitive Market Share & Forecast by 2023: Global Market Insights, Inc.

Thermosets market size is likely to exceed 102 million tons by 2016. Key materials include phenol formaldehyde (PF), epoxy/polyexpoxide resins, UPR (unsaturated polyester resins) and polyurethanes (PU). Recycling of these materials can be done through techniques such as mechanical, feedstock and energy recovery.

Growing awareness towards reducing dependency on depleting fossil fuels for polymer/plastic production is likely to drive recyclable thermosets market growth. This technology also provides opportunities to curb carbon emissions and reduce the quantities of waste required for disposal. It can prevent the accumulating of substantial quantities of discarded plastics as debris in natural habitats and landfills. Recyclable thermosets market price trend should also play a prominent role in industry dynamics.

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Two new recyclable thermosets have been developed at the U.S. based IBM Almaden Research Centre, namely hemiaminal dynamic covalent networks (HDCNs) and polyhexahydotriazines (PHT), which represents highly cross-linked polymer networks. On the other hand, nitrogen based thermosets such as polyamides and polybenzimidazoles are used in numerous industrial applications such as adhesives & coatings, electronic devices, aerospace & automotive parts and foams owing to high durability and mechanical strength.

Despite their widespread commercial use, these aforementioned polymers are difficult to recycle and reuse. There has also been a little success in design & synthesis of new thermosets owing to challenging production technology. Also, existing products are difficult to rework or recycle as they can’t get remolded once cured and they thermally get decomposed on heating at high temperatures.

End-use industries such as automobiles, aerospace and electronics can benefit from PHT usage in manufacturing devices and parts owing to recyclability, strength, solvent resistance and lightweight structure.

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Asia Pacific thermoset market size was the largest and is also expected to witness highest gains at over 11% up to 2023 owing to growth of end-use industries such as automobile and construction. North America is expected to witness significant gains at over 10% from 2016 to 2023 owing to government regulations over automobile weight reduction by 2020.

Automobile industry could benefit to build lightweight vehicle which are useful in improving fuel efficiency and curbing carbon emissions. Countries such as China, India, Indonesia and Thailand are likely to scale up automobile production capacity owing to population expansion and rise in spending capacity. Introduction of new vehicles by substituting metal parts with plastic components is new trend in the industry which can provide new growth opportunities for recyclable thermosets market. PHT can be used in automobile applications such as hoods, exterior trims and panels.

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Aerospace industry can use PHT for development of tails and wings used for both, personal and commercial aircraft. PHT, combined with PHA, could be used for adhering aircraft pieces exposed to high speeds and harsh environmental conditions. Semiconductor industry could use it making transistors and chips. This would help the manufacturers to rework on defective electronics rather than scraping the equipment.

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Pleated filters market size to reach $14.9 billion by 2022: Global Market Insights, Inc.

Pleated filters market size is likely to be valued at USD 14.9 billion by 2022; as per a new research report by Global Market Insights, Inc. Growing need for energy conservation and low green house gases (GHG) emission devices is likely to drive demand. The market is also likely to be driven by consumer preference to install latest air conditioning systems in residential and commercial buildings. These filters also have significance in HVAC installation systems.

Germany pleated filters market size, by product, 2012 - 2022 (Million Units)

Germany pleated filters market size, by product, 2012 – 2022 (Million Units)

Air based pleated filters market share dominated the industry and accounted for more than 50% of the total demand in 2014. Growing importance of efficient equipments with for minimizing indoor contaminants is likely to drive air filters demand. Oil filters are likely to witness highest growth rates with an estimated CAGR of 7.5% up to 2022.

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Stringent regulations by governing bodies such as EPA to curb air borne diseases are anticipated to drive pleated filters market size over the next seven years. Ensuring continuous & down-flow of particulate-free fluids in oil & gas exploration and production applications is anticipated to play a major role in increasing the demand. Preference of some substitute products to remove micro-particulates is likely to challenge pleated filters industry.

Key report insights suggest:

  • Global pleated filters market size was estimated 197.2 million units in 2014 and may register 326.0 million units by 2022 growing with an estimated CAGR of 6.5% from 2015 to 2022.
  • Industrial applications dominated the overall demand and accounted for 41.9% of the total volume in 2014. Rapid industrialization in emerging economies such as  Asia Pacific & Latin America coupled with increasing investments in expansion of cement and power industries is likely to drive demand for this application. Residential applications are likely to witness moderate growth rates at CAGR of 5.7% up to 2022.
  • Asia Pacific dominated the regional market and accounted for 43.2% of the total volume in 2014 and is likely to witness highest gains up to 2022. Increasing flow of FDIs coupled with stringent regulations to curb air pollution is likely to drive regional demand.
  • U.S. pleated filters market share is likely to witness moderate growth rate with an estimated CAGR of 3.2% up to 2022.
  • The market is characterized being highly fragmented with presence of large number of domestic and international industry participants. Key companies include General Motors Company, 3M Company, Midwesco Filter Resources Inc, Donaldson Company Inc., Freudenberg & Company KG, Atlas Copco, Camfil AB and The Strainite companies. The market is also likely to increase the competition by attracting new industry participants.

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Global Market Insights, Inc., headquartered in Delaware, U.S., is a global market research and consulting service provider; offering syndicated and custom research reports along with growth consulting services. Our business intelligence and industry research reports offer clients with penetrative insights and actionable market data specially designed and presented to aid strategic decision making. These exhaustive reports are designed via a proprietary research methodology and are available for key industries such as chemicals, advanced materials, technology, renewable energy and biotechnology.


Contact Us:
Jack Davis
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Adhesives and sealants market size, share, Industry analysis & forecast, 2023

Global adhesives and sealants market size was estimated at 9.8 million tons and 1.9 million tons in 2015, as per the latest research report by Global Market Insights, Inc. Construction, automotive and packaging were key revenue generating applications for the industry.
Adhesives and sealants market size analysis is set to exceed USD 50 billion by 2023. Strong infrastructure development indicators and focus on vehicle weight reduction for better fuel performance will play a key role in demand development.

India adhesives market size, by technology, 2012-2023 (USD Million)

India adhesives market size, by technology, 2012-2023 (USD Million)

Waterborne adhesives market size dominated the technology landscape, with 47% global share 2015. This technology is preferred over solvent borne technology owing to low VoC emissions to curb environmental toxicity.

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Hot melt adhesives market size is forecast to gain significantly, with 5.3% CAGR up to 2023. On product basis, acrylic products witnessed most usage, with overall consumption close to 3.6 million tons in 2015, whereas silicone sealants consumption was over 580 kilo tons.
Stringent norms by the EPA and REACH to address environment concerns over VoC emissions may challenge industry growth. Strong focus on developing renewable materials as an alternative to fossil fuel products is likely to support growth. Bio adhesive market size already accounts for over 1% of the total demand and could witness sizable gains over the coming seven years.
 

Key insights from the report include:

  • Global adhesives market size is set to attain grow at 4.9% CAGR, whereas sealants market size is estimated to reach 2.7 million tons by 2023.
  • Pressure sensitive adhesive (PSA) applications dominate demand and accounted for over 29% of the total demand in 2015, followed by packaging, with overall consumption of close to 2.1 million tons.
  • Construction sealants market size witnessed consumption of 510 kilo tons in 2015. Automotive sealants market is forecast to significantly grow at 5.4% CAGR and reach 565.0 kilo tons by 2023.
  • APAC, led by China, Japan & India, was the leading regional industry and accounted for over 40% of the total demand in 2015.
  • China polyurethane (PU) glue demand was estimated at close to 280 kilo tons in 2015, whereas PU sealants demand in China was calculated at close to 135 kilo tons in the same year.
  • North America, driven by stringent norms in the U.S., accounted for over 22% of the total volume in 2015. North America construction glues market was close to 345 kilo tons in 2015.
  • Global market share is moderately consolidated with multinationals such as Dow, HB Fuller, 3M and Henkel catering to over 47% of the industry demand. Other notable companies include Eastman Chemical, BASF, Avery Dennison, Ashland and Bostik.

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Personal Protective Equipment (PPE) industry size to be worth USD 67.6 billion by 2023

Personal Protective Equipment (PPE) market size is forecast to hit USD 67.6 billion by 2023; as per a new research report by Global Market Insights, Inc. Rising employee safety and health concerns, along with high number of industrial fatalities in unregulated regional industries will drive the global personal protective equipment (PPE) market size.

India Personal Protective Equipment (PPE) market size, by product, 2015

India Personal Protective Equipment (PPE) market size, by product, 2015

U.S PPE market, being one of the most regulated regions, dominated demand, with over USD 12.5 billion revenue in 2015. Product innovation, with changing needs for protective gear that combines safety with attractiveness in terms of appearance will augment industry expansion.

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Safety guideline set by OSHA, especially in the U.S. will be a key growth facilitator. Rising fatality rate in core industries, including automotive, refining, metal processing and oil & gas will be a key parameter for demand development.

Hand protection, including industrial safety gloves market, is forecast to grow at 7% CAGR, from USD 8.7 billion in 2015. Food manufacturing, heavy chemicals, clinical diagnostics, pharmaceuticals, mining and metals are key application areas for this segment.

Personal protective equipment manufacturers design and supply products for different end-use industries by employing unique and innovative technologies. Most of them either have their own proprietary technology or license it from other industry participants.

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Key insights from the report include:

  • Global personal protective equipment market size was over USD 38 billion 2015, with 7.3% CAGR growth forecast from 2016 to 2023.
  • Industrial protective clothing market size, dominated by flame retardant apparel, is forecast to witness 7.4% CAGR growth, from USD 8.5 billion in 2015.
  • Protective footwear market is likely to witness moderate gains, with over USD 12.5 billion revenue estimate by 2023.
  • Strong construction indicators in South East Asia and Africa will likely result in a surge for head, eye and face protection demand over the forecast period.
  • Hearing protection devices increase communication capabilities for high noise environments where communication is paramount. Positive oil & gas outlook with rising number of shale plays in the region is anticipated to augment hearing protection demand in near future. APAC is expected to be the fastest growing hearing protection market with 6.7% CAGR forecast.
  • U.S. and Europe PPE market share is likely to be stagnant, with most of the industry being regulated with strict safety guidelines and product specifications.
  • APAC should continues being an attractive regional industry, with Japan, China and India personal protective equipment market share being over 86% regional demand in 2015. India PPE market size is set 8.2% CAGR growth from 2016 to 2023.
  • Global personal protective equipment market share is moderately concentrated over 60% global demand being met by top 5 participants in 2015. Core PPE manufacturing companies include RockFall Ltd., 3M Co., Alpha Protech, Ltd., Honeywell, JAL Group and DuPont.

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Ceramic Filters Market size likely to exceed USD2.2 billion by 2023: Global Market Insights, Inc.

Ceramic filters market size was estimated at USD 899.9 million in 2015, as per the latest research report by Global Market Insights, Inc.  Environmental mandates & regulations from EPA, European Environmental agency EEA, NSF and ASTM over water treatment and pollutant emission issues from industries may favor global ceramic filters market growth.

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Industrial ceramic filter market size valuation is predicted to exceed USD 840 million and is forecast to achieve significant gains up to 2023. Strong application scope in separating suspended solids & oil in effluent treatment plants for oil refineries, chemical and natural gas processing units is expected trend to drive demand.

                               UK ceramic filter market size, by application, 2015 (USD Million)

UK ceramic filter market size, by application, 2015 (USD Million)

Hot gas filtration based industrial application is set to generate revenues over USD 335 million by 2023. Using these filters protects downstream equipment, such as heat exchangers, catalyst units, turbines and scrubbers from erosion and fouling. These processes can be intensified or simplified as well as blocked by condensation or de-sublimation can be prevented.

Key characteristics, superior mechanical strength and excellent chemical resistance, makes ceramic filter membranes preferable over polymeric counterparts. They are also required in low numbers to treat same water quantity compared to polymeric products.

Higher CAPEX may act as hindrance for market penetration which can be overcome by low maintenance & operational costs. Key raw materials, aluminum oxide, zirconium oxide & titanium oxide, face irregular supply and pricing issues and can affect the global ceramic filters market price.

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Key report insights suggest:

  • Global ceramic filters market size is forecast to grow at 12.7% CAGR and register USD 2.26 billion by 2023.
  • Ceramic water filter market size was the most dominant and accounted for over 55% of the total revenue in 2015. Growing acceptance across diverse industries coupled with supportive government measures for water treatment & safe disposal may drive demand.
  •  U.S. ceramic air filters market is presumed to grow significantly and register over USD 190 million by 2023. Industrial and commercial sectors are mandated by regulatory authorities to install air filtration systems to reduce toxic gaseous and VoC, which may boost demand in the U.S.
  • APAC, influenced by India and China ceramic filters market size, was dominant regional industry by accounting over 35.5% of the total revenue share in 2015. Large scale industry bases in China & India coupled with environmental toxicity reduction measures should drive product demand.
  • China residential application generated revenues over USD 50 million in 2015 and most likely will grow at 12.7% CAGR up to 2023.
  • Europe, dominated by Germany and UK, may register over USD 630 million by 2023.  Germany biofiltration industrial applications generated revenues close to USD 5.5 million in 2015 and are presumed to grow significantly up to 2023.
  • Global ceramic filters market share depicts low degree in backward integration and forward integration at different levels. The value chain has presence of raw material providers, system integrators, manufacturers, distributor and end-user industries.
  • Glosfume Ltd, Unifrax, 3M, Haldor Topsoe, Doulton, Tri-Mer, Pall Corporation, Clear Edge Filtration, Veolia and Corning are among prominent industry participants.

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Automotive coatings market size set to exceed $28 billion by 2022: Global MArket Insights, Inc.

Automotive coatings market size was calculated at 3.76 million tons in 2014, as per the latest research report by Global Market Insights, Inc.  Increase in consumer preference to safeguard the vehicle from foreign particles, UV radiation, extreme temperature conditions and acid rain will boost global automotive coatings market size. Key attributing factors, aesthetic appearance and durability, also play significant role in influencing consumer preference.

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Automotive coatings market size is set to register USD 28.3 billion by 2022. Automotive refinish coatings market will positively influence demand owing to increase in number of vehicle body and repair shops for damage recovery & timely maintenance.

                Germany automotive coatings market Size, by technology, 2012-2022 (Kilo Tons)

Germany automotive coatings market Size, by technology, 2012-2022 (Kilo Tons)

Solvent borne coatings dominated the demand by accounting over 43% of the total volume in 2014. Solvent borne technology is predicted to sluggishly grow owing to stringent measures taken by regulators to curb VoC emissions, particularly in the U.S. and EU.

In the U.S., manufacturers of paints & coatings should comply with regulations levied by EPA. This has led to increase usage of waterborne, powder and UV-cured coatings.

Key raw materials, titanium oxide, additives, pigments and resins face supply imbalance and price fluctuations, which may affect costing and result in upswing of automotive coating market price.

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Technology innovation towards reducing manufacturing costs and enhancing product performance may provide new growth opportunities and increase industry profitability.

 

Key insights from the report include:

  • Global automotive coatings market size is forecast to grow at 4.9% CAGR and reach 5.51 million tons by 2022.
  • Basecoat automotive coatings demand was largest and accounted for over 38% of the total demand in 2014. Basecoat products, mainly metallic paints, pearlescent paints and solid paints, are preferred by OEMs to impart exterior aesthetics and decorative effects.
  • Metal applications were dominant and accounted for over 70% of the total automotive coating market share in 2014. Predominant use of steel and aluminum for vehicle production is expected driver influencing demand.
  • Plastic applications, influenced by vehicle weight reduction along with better fuel efficiency, expect highest gains at 5.2% CAGR up to 2022.
  • APAC, led by India and China automotive coatings market size, was dominant regional base, with overall consumption of over 2 million tons in 2014. Favorable regulations supporting FDI to set up automobile base in China, India, Indonesia and Thailand coupled with rise in per-capita disposable income, expects surge in demand.
  • China light vehicle OEM demand generated close to USD 1.8 billion in 2014 and expects to significantly grow at over 5.2% CAGR up to 2022.
  • North America, dominated by U.S. consumer base, most likely will generate over USD 5.5 billion revenue by 2022. U.S. waterborne automotive coatings market size was worth over USD 870 million in 2014.
  • Germany powder coatings demand was worth close to USD 290 million in 2014. This technology expects to grow at significant rate with over 4.5% CAGR by 2022.
  • Global automotive coatings market share is competitive and consolidated, with PPG Industries, Axalta, BASF and Kansai catering to major industry demand. Nippon, AkzoNobel, Arkema, Berger, Eastman, DSM and Solvay are among notable key industry players.

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Synthetic lubricants market size to exceed USD 5 billion by 2023: Global Market Insights, Inc.

Synthetic lubricants market size was estimated at 652.2 kilo tons in 2015, as per the latest research report by Global Market Insights, Inc. Positive automotive production landscape, particularly in Asia Pacific, along with superior performance and environmental properties will drive the global synthetic lubricants market trends.

Synthetic lubricant market size is projected to register USD 5.0 billion by 2023. Increasing focus towards natural gas development owing to strong application scope in construction, food & beverages and personal care industries, particularly Saudi Arabia, Qatar and UAE, may favor demand.

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(Group IV) PAO synthetic lubricants market size was dominant by accounting over 66% of the total demand in 2015. Increased PAO usage in automotive engines accompanied by OEM recommendations in major brands such as BMW and Volkswagen should instigate product demand.

Europe synthetic lubricants market size, by product, 2012 – 2023, (USD Million)

Europe synthetic lubricants market size, by product, 2012 – 2023, (USD Million)

Europe PAG market is poised to sustain average growth and register over USD 165 million by 2023.  Strong focus towards reducing maintenance cost and rising trend in condition based monitoring for manufacturing sector is projected to promote PAG market growth.

Asia Pacific heat transfer fluid demand may observe highest gains with 4.7% CAGR up to 2023. HTFs are used for heating reboilers and water removal in the oil & gas and chemical industries. Presence of large scale manufacturing companies in China and India may instigate product demand.

Synthetic lubricants market price are higher when compared to mineral based products which may negatively impact overall growth.

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Regulatory support towards sustainable products development in the U.S and EU accompanied by superior mechanical properties may boost biolubricants market and hamper synthetic lubricants demand.

Key insights from the report include:

  • Global synthetic lubricants market size is projected to gain growth rates at 4.2% and reach 903.0 kilo tons by 2023. Strong automobile sales outlook coupled with installation of new industrial machines, particularly in Asia Pacific, may boost demand.
  • Synthetic esters should witness highest gains, at more than 4.5% CAGR up to 2023. Rising product demand in reciprocating compressors with endorsing compressor oil use should instigate growth.
  • Engine oil applications registered close to USD 1.38 billion in revenue in 2015. Key properties, improved drain intervals, sustainable film protection and wide operating temperature, should favor demand.
  • Europe, dominated by Germany and UK synthetic lubricants market size, dominated the regional industry demand with overall consumption at above 210 kilo tons in 2015. Presence of aerospace and automotive manufacturing companies such as Airbus, Rolls Royce, Audi, BMW, Volkswagen, and Mercedes are expected trends to boost sales.
  • North America, dominated by U.S automobile industry demand, may register over USD 1.45 billion by 2023. Presence of major aviation companies including Boeing accompanied by increasing automotive production in the U.S. and Mexico are among the stimulating factors to foster synthetic lubricants market growth.
  • Global synthetic lubricants market share is fairly consolidated and was dominated by Shell, ExxonMobil, Castrol and British Petroleum, catering over 49% of overall demand in 2015.
  • Other market participants include Fuchs, Pennzoil, Amsoil, Kendall, Valvoline, Total and Chevron.

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Specialty fuel additives market size over $10.4 billion by 2023: Global Market Insights, Inc.

Specialty fuel additives market size was estimated at 1.55 million tons in 2015, as per the latest research report by Global Market Insights, Inc. Rising biofuel industry penetration and a strong focus on improving fuel performance, especially in regards to efficiency and emissions will drive the global specialty fuel additives market.

Growing environment consciousness, mainly in EU, U.S., and China, coupled with favorable government policies to adopt sustainable resources are key trending factors to boost demand.

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Deposit control additives dominated product segment with total consumption of over 605 kilo tons in 2015. Technology advancement in injector systems and engines played a key role to stimulate market growth. These additives are used in all oil types and help to inhibit deposit formation on injector nozzles.

                  Latin America specialty fuel additives market size, by product, 2012-2023 (KT)

Latin America specialty fuel additives market size, by product, 2012-2023 (KT)

Diesel application is projected to witness significant growth of 6.7% CAGR up to 2023. ULSD adoption in major countries including U.S. and China accompanied by growing biodiesel demand may boost the market growth. Reduced biodiesel engine functionality in low temperatures conditions requires cold flow, which is another influencing demand drivers.

Growing autogas consumption owing to its environmental benefits over conventional alternatives may restrain the specialty fuel additives market growth. Governments in U.S., Algeria, Australia, India and China are promoting autogas usage and offering several benefits on certain consumption.

Cost benefits over gasoline or diesel is another stimulating factor for CNG vehicles expansion, wherein Asia Pacific is the leading market.

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Key insights from the report include:

  • Global specialty fuel additives market size analysis targets 2.48 million ton consumption by 2023, growing at 6.1% CAGR.
  • Constant focus to improve fuel efficiency and engine performance has positively driven the CI (Cetane improvers) demand. This additive is mixed with oil to increase cetane number in order to boost performance. CI product demand is set to grow at 5.8% CAGR by 2023.
  • Gasoline dominated the application segment and is set to be valued at USD 4.79 billion in 2023. U.S., the largest gasoline consumer, established Top Tier Detergent Gasoline (TTDG) standard under EPA guidelines which may positively influence gasoline based specialty fuel additive market demand.
  • North America, led by U.S. accounted for over 26% of the global volume in 2015.
  • Stringent environment regulations by Saudi Arabia coupled with introduction of Euro IV standard busses in Dubai are considered to be the major factor to foster Middle East & Africa specialty fuel additives demand. The region is set to increase with an estimated gain at 6.3% CAGR by 2023.
  • APAC, primarily dominated by India and China specialty fuel additives market, is predicted to reach over 750 kilo tons by 2023, growing at 7.1% CAGR.
  • Global specialty fuel additives market share is fairly consolidated, NewMarket, Innospec, BASF, Infineum were the top four companies. Other market participants include Afton, Albemarle, Baker Hughes, Chemutra, Chevron Oronite, Clariant International, Angus, EURENCO, Evonik, and The Lubrizol.

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Powder coating market size worth USD 15.58 billion by 2023: Global Market Insights, Inc.

Powder coating market size was 2.25 million tons in 2015, as per the latest research report by Global Market Insights, Inc. Consumer goods and automotives are the leading revenue generating applications for powder coating industry.

Powder coating market size is set to register USD 15.58 billion by 2023. Favorable sales potential from domestic appliances including microwave ovens, freezer cabinets, and washing machines should instigate growth.

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Strong vehicle production growth in Brazil, Germany, China, and Malaysia are the driving factors across various applications which include door rims, handles, and under the hood components.

       Europe powder coatings market size, by application, (Kilo tons), 2012-2023

Europe powder coatings market size, by application, (Kilo tons), 2012-2023

Automotive applications are forecast to witness maximum growth, with expectations of 7.2% CAGR up to 2023. Major automotive consumers include Chevrolet, Lincoln, Daimler-Chrysler, Dodge, and Mercedes-Benz to use this coating in the manufacturing process.

APAC powder coatings market size for furniture applications was more than 210 kilo tons for 2015. Strong growth outlook in the Chinese metal furniture industry, owing to raw material availability may positively influence growth.

Superior properties in terms of heat and corrosion resistance has fueled the consumption in defense and outdoor home products including wheelbarrows, lawn mowers, snow shovels, snow blowers, barbecue grills, garden tools and propane tanks.

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Raw material trends are a key industry driving factor, covering over 38% of total production cost. Balanced supply will be critical for favorable powder coatings market prices. Moreover, limited wastage and ability to recycle is another positive factor to foster product demand.

Key insights from the report include:

  • Global powder coating market size is forecast at 3.82 million tons by 2023, growing at 6.8% CAGR. Environment regulations by EPA & REACH to control VOC emission will continue to aid industry development.
  • Consumer goods dominated the application segment and accounted for over 20% of the total volume in 2015, followed by general industries application, with overall consumption of over 450 kilo tons.
  • Furniture is the second fastest growing application, increasing with estimated gains of 7.2% CAGR up to 2023. Weather resistances and durability are the key product properties to drive demand in this segment.
  • Asia Pacific, led by China, Malaysia, and India powder coating market share, dominated the regional industry and accounted for over 45% of the global demand in 2015.
  • In terms of growth, Latin America is likely to be another attractive region for industry participants. Strong infrastructure spending Brazil for upcoming summer Olympics 2016 may influence demand.
  • North America, driven by U.S. powder coating market size, with consumption likely to exceed 580 kilo tons by 2023. North America automotive applications accounted for over 20% of regional volume in 2015.
  • Global powder coatings market share is moderately fragmented, with leading companies catering to under 40% of the overall demand for 2015. PPG, AkzoNobel, Axalta, and Sherwin Williams are notable market players.
  • Other market participants include DuPont, BASF, Valspar, Nippon, Kansai, Jotun, Eastman, DIC Corporation, Arkema, Bayer, and Evonik.

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Construction paints & coatings demand to drive global Methyl Ethyl Ketone (MEK) market to USD 3.64 billion by 2022

Methyl Ethyl Ketone (MEK) Market size is forecast to reach USD 3.64 billion by 2022, as per a new research report by Global Market Insights, Inc. The latest MEK market report predicts over 50% of total demand to be from paints and coatings.

Positive demand outlook for paints and coatings, on account of growing construction spending, particularly in Latin America and Asia Pacific is expected to remain a key driving factor for industry development.

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Steady automotive demand, on account of recovery from economic downturn in North America and Asia will also impact industry growth positively. Pharmaceutical and personal care industrial applications include manufacturing antiseptics, anesthetics, lotions, and drugs.

(Methyl Ethyl Ketone) MEK market size, by application, 2012-2022 (Kilo Tons)

(Methyl Ethyl Ketone) MEK market size, by application, 2012-2022 (Kilo Tons)

Printing ink applications presently account for over 200 kilo tons of global Methyl Ethyl Ketone (MEK) market size. It is extensively used and preferred solvent in printing industry owing to advantages offered such as excellent drying times, adhesion with substrates such as plastics, metals & glass and allowing formulation of specialized inks.

MEK market price trend benefited from the global crude slump, however, expected recovery in 2017 along with regulatory pressure may challenge industry profitability. Growing importance for MEK peroxides as catalysts in polymerization of polyester resins and as a cleaning agent, varnish and paint remover will drive growth throughout the forecast timeframe.

Methyl Ethyl Ketone (MEK) market exhibits a high degree of integration by major manufacturers across the value chain, where most of the producers are involved in the raw material production or has their own captive consumption.

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Key insights from the report include:

  • Global Methyl Ethyl Ketone (MEK) market size was USD 2.51 billion in 2014, with 4.8% CAGR growth expectations from 2015 to 2022.
  • Paint & coating applications will remain to be very attractive demand outlets for industry participants. However, companies may be under pressure from regulatory changes as governing agencies look to reduce VOC emissions via green solvents. Key segments include powder coatings, waterborne coatings, solvent borne technologies and specialty coatings.
  • MEK industry demand for adhesives is forecast to exceed 348 kilo tons by 2022.
  • APAC leads the regional demand, being the largest construction and infrastructure market in the world. The region is dominated by China and India methyl ethyl ketone market share, with total revenue of USD 1.35 billion in 2014.
  • U.S. MEK demand is primarily driven by its usage in paints & coatings, with emphasis concentrated on using sustainable technologies, green solvents are expected to outpace methyl ethyl ketone demand in the region.
  • Europe Methyl Ethyl Ketone (MEK) market size is poised to exceed USD 600 million in revenue by 2022. The region is heavily regulated, with product registration guidelines being very strict and relatively expensive.
  • ExxonMobil Chemical and Maruzen Petrochemical were the leading companies in the global Methyl Ethyl Ketone (MEK) market share and accounted for over 35% of overall demand in 2014 collectively.

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