News Archive for Automotive, Automotive, Chemical News, Industry, Oil and Gas News, TMR, Transparancy Market Research

Booming Automotive Industry Displays Substantial Demand for Acrylic Rubber Market By 2024

Acrylic rubber, also known by its chemical name alkyl acrylate copolymer (ACM), is classified is a synthetic rubber and is under specialty rubbers. Synthetic rubber is largely used as a raw material in components that make noise, are susceptible to shocks and require oil and heat resistance.

Acrylic rubber are unsaturated polar rubbers that display very good swelling resistance in non-polar oils and also in oils that contain sulfur substances. As they do not have unsaturated bonds, they have good oxygen, heat, and ozone resistance. This specialty rubber is resistant to ozone and has very low permeability to gases.

Initially developed for the footwear industry in 1970, the rubber industry has been witnessing growth due to several other industries. Currently, the automotive industry exhibits an excessive demand for specialty rubber for the manufacture of automotive accessories. With the ever-increasing growth of the automotive market, the demand for synthetic rubber has been on the rise. Rubber parts that are used in automotive account for only 5% of the complete weight of automotive and are mainly used for automotive performance.

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The report analyzes the global acrylic rubber market in a ground-up manner, which includes detailed insights into market indicators, technological developments, geographical landscape and vendor landscape. The report is compiled after an extensive research phase, which includes data collection from trade journals, paid databases, white papers, and presentations.

This publication is a veritable collection of facts and factoids that offers a quantitative and qualitative assessment of the current state of the market and where it is headed.

Global Acrylic Rubber Market: Trends and Opportunities

The booming automotive industry that displays a substantial demand for acrylic rubber is acting as the primary factor driving the global acrylic rubber market. Acrylic rubber is predominantly used for automotive seal and packaging to add strength to automotive parts. Due to the damping properties of acrylic rubber, it is utilized in vibration damping mounts. Acrylic rubber is also used in automotive transmissions and hoses. Furthermore, the rising demand from end-use industries such as consumer goods and plastics is also expected to stimulate the growth of the acrylic rubber market.

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However, the market is expected to witness a decline due to some of the disadvantages of acrylic rubber, which includes low resistance to moisture, acids, and bases. These limitations restrict the use of acrylic rubber in some applications, thereby hampering the demand for the product.

Global Acrylic Rubber Market: Regional Outlook

North America, Asia Pacific, Europe, and Rest of the World are the major regional segments into which the global acrylic rubber market is divided. Asia Pacific, particularly China is expected to contribute significantly to the overall market due to the flourishing automotive industry in the region. North America and Europe are also expected to contribute significantly to the growth of the acrylic rubber market due to the rising demand for acrylic rubber from several end-use industries for sealing and packaging applications.

Global Acrylic Rubber Market: Competitive Landscape

Some of the companies that have a significant presence in the global acrylic rubber market include Hi-Tech Polymers, Ames Rubber Manufacturing, DuPont, Elder Rubber Company, GBSA, CANADA SILICONE INC., Kivi Markings, Specialty Tapes Manufacturing, REDCO, Plexipave, Sreeji Trading Company, Harboro Rubber, Rubber Mill, Apcotex Industries Ltd., Anabond Limted, Tiger Rubber Company, ZORGE, Hanna Rubber Company, Synthos SA, Vanderbit Chemicals LLC, Devcon, Fostek Corporation, INEOS Nitriles Company, PAR Group, and Jet Rubber Company.

SLS, SLES, and LAS Usage Increasing Globally as Chemical Developments Reduce Toxic Effects on Humans, TMR

A highly fragmented global market for sodium lauryl sulfate, sodium lauryl ether sulfate, and linear alkylbenzene sulfonate has allowed regional players to obtain a better foothold in it, says Transparency Market Research in a latest analysis. The easy availability of raw materials, a massive scope of applications, and a low financial requirement for industry setup has promoted the entry of many new players into this market. BASF SE led the global SLS, SLES, and LAS market in terms of revenue in 2015, followed by Stepan Company and Akzo Nobel N.V. In the same year, the top six companies held 41.8% of the market’s revenue, the remainder being held by a large number of regional players.

Rapidly Growing Use in Personal Care Products Boosts Demand for SLS, SLES, and LAS

The largest application segments in the global SLS, SLES, and LAS market have been textile and leather, personal care, detergents and cleaners, and oilfield chemicals. Of these, the current major area of focus lies in the personal care products segment, as SLES and SLS are being widely used in cleaning products, lotions, and creams. Both chemicals provide the abilities of suspending oil, cleaning wet surfaces, and provide a better grade of skin care with few or no instances of toxicity cases.

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“The panel of experts at the Cosmetic Ingredient Review had concluded SLES and SLS to be safe for use in personal care products, including cosmetics, as long as they are used in a calculated amount. At the same time, major research and development efforts are being undertaken to remove the minor toxic effects of SLES and SLS completely,” said a TMR analyst. “These facts, coupled with the rapidly increasing demand for personal care and cosmetic products, will be the major propellants for the global SLS, SLES, and LAS market in the near future.”

Detergent Demand Increases, Further Driving SLS, SLES, and LAS Consumption

Another major driver pointed out by the TMR analysts is the rapidly growing demand for household detergents. A large variety of detergents and cleaners are commercially available today, ranging from carpet cleaners and toilet cleaners to laundry detergents. This increased scope of use has ascribed a large consumer base across the world. This growth in consumer base applies especially to the emerging economies of the world, where improving income and disposable income rates are allowing individuals to purchase a better range and quality of cleaning products.

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Similar to personal care products, the global SLS, SLES, and LAS market receives a major thrust from the high detergent consumption rate, as manufacturers are increasingly preferring LAS over other surfactants. The reason for this higher preference is the fact that LAS can be utilized in both acidic and alkaline detergents of both liquid and powdered forms. Additionally, LAS is relatively cheaper than other conventional surfactants.

All these factors are the major ones responsible for propelling the global SLS, SLES, and LAS market at a CAGR of 4.2% within a forecast period from 2016 to 2024 in terms of volume. It stood at around 4,656 kilo tons in 2015 and is expected to reach 6,742.5 kilo tons by the end of 2024. Regionally speaking, all major locations of the market are expected to show a high rate of growth in the various segments. Asia Pacific held the highest share of volume in the global SLS, SLES, and LAS market for 2015 and is expected to do the same at the end of 2024.

Key Segments in the Global SLS, SLES, and LAS Market

SLS, SLES, and LAS Market – Product Segment Analysis

  • SLS
  • SLES
  • LAS

SLS, SLES, and LAS Market – Application Segment Analysis

  • Detergents & cleaners
  • Personal care
  • Textile & leather
  • Oilfield chemicals
  • Others (including paints & coatings, polymer additives, and agricultural chemicals)

The above data is collated from a research report released by TMR, titled “Sodium Lauryl Sulfate Market (SLS Liquid and SLS Dry), Sodium Lauryl Ether Sulfate Industry (SLES) and Linear Alkylbenzene Sulfonate (LAS) – Global Industry Analysis, Size, Share, Growth, Trends, and Forecast 2016 – 2024”.

Global Calcium Chloride Market: De-icing Offers Incremental Opportunities for Uptake in Coming Years, observes TMR

The global calcium chloride market is highly consolidated with leading share held by only three players. In 2015, TETRA Chemicals, OxyChem, and B .J Services collectively held a lion’s share of 69.1% in the global market. These companies have consistently focused on the expansion of production facilities, setting up businesses in newer geographies, and widening their sales and distribution channels to remain at leading positions. “Increasing production and manufacturing products that are suited for various applications is expected to the key strategy of these companies to march forward in the coming years,” says the lead author of this research report.

According to the research report, the global calcium chloride market is expected to be worth US$ 1.52 bn by 2024 as compared to US$ 1.04 bn in 2015, expanding at a CAGR 4.2% from 2016 to 2024.  

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Asia Pacific and North America Show Strong Presence in Global Market

In terms of regions, the global calcium chloride market is segmented into North America, Europe, Asia Pacific, Latin America, and the Middle East and Africa. Asia Pacific and North America hold a significant share of the global market. By the end of 2024, North America is expected to acquire a share of 46% in the global market. The demand for calcium chloride for product development for water treatment and several the applications is expected to provide an incremental opportunity to the market in North America in the coming years.

Calcium chloride is being applied in industries such as construction, drilling fluids, dust control, de-icing, and industrial processing. Of these, drilling fluids are expected to hold the highest share of 24.9% by the end of the forecast period. The soaring uptake of calcium chloride in the production of completion fluids is anticipated to contribute to the rising revenue of the segment.

Extensive Usage of Calcium Chloride for Dust Control Bodes Well for Overall Growth

The growing demand for calcium chloride is anticipated to remain steady as it is the key chemical used for de-icing. The frequently used de-icing agent is liquid calcium chloride of about 35% with rock salt to ice and snow control. Thus, in countries such as the U.S., Japan, and Canada calcium chloride is extensively used for managing the after-effects of heavy snowfall. Besides, de-icing, dust control is yet another leading application of calcium chloride.

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Known to retain moisture for exceptionally longer durations, calcium chloride is used on unpaved road surfaces as a cost-effective dust suppressant. The growing awareness about simple solutions for dust control is expected to augment the demand for calcium chloride in the coming years. The booming construction industry and the subsequently rising demand for cement are also expected to propel the growth of the global market. Calcium chloride is used as a concentrate accelerator to speed up the curing rate of cement. It also helps in reducing the alkali content in cement, which is known to prevent cracking.

Oversupply of Substandard Material Could Hamper Revenue

As calcium chloride can be produced using multiple methods, it has led to an oversupply of cheap material in the market. Thus, it has reduced profit margins for several sellers to a significant extent. The corrosive nature of calcium chloride is also expected to hamper its sale in the coming years. As calcium chloride is hygroscopic, it retains water from the air that can result in corrosion at lower levels and cause extended periods of relative humidity.

The report segments the global calcium chloride market into:

  • Calcium Chloride Market – Product Analysis
    • Flakes 77%
    • Flakes 94%
    • Prills 94%
    • Pellets 94%
    • Liquid Grade
  • Calcium Chloride Market – Application Analysis
    • Deicing
    • Dust Control
    • Drilling Fluids
    • Construction
    • Industrial Processing
    • Others (Including agrochemicals, food, tire ballast, etc.)

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

Global QYResearch: Offshore Oil and Gas Market 2016 (Heavy crude oil, Light crude oil, Liquefied natural gas) Market Study by Maximal Popularity, Emerging Authority, Sales, Countries, Companies, Profits & Forecasts

This report studies Global Offshore Oil and Gas Market 2016, especially in North America, Europe, China, Japan, Southeast Asia 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
BP
ExxonMobil
Chevron
Royal Dutch Shell
Total
ConocoPhillips
Eni
Petrobras
Statoil
CNOOC

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By types, the market can be split into
Heavy crude oil
Light crude oil
Liquefied natural gas

By Application, the market can be split into
Application 1
Application 2
Application 3

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 Offshore Oil and Gas Market Professional Survey Report 2016
1 Industry Overview of Offshore Oil and Gas
1.1 Definition and Specifications of Offshore Oil and Gas
1.1.1 Definition of Offshore Oil and Gas
1.1.2 Specifications of Offshore Oil and Gas
1.2 Classification of Offshore Oil and Gas
1.2.1 Heavy crude oil
1.2.2 Light crude oil
1.2.3 Liquefied natural gas
1.3 Applications of Offshore Oil and Gas
1.3.1 Application 1
1.3.2 Application 2
1.3.3 Application 3
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 Offshore Oil and Gas
2.1 Raw Material and Suppliers
2.2 Manufacturing Cost Structure Analysis of Offshore Oil and Gas
2.3 Manufacturing Process Analysis of Offshore Oil and Gas
2.4 Industry Chain Structure of Offshore Oil and Gas

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

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

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

6 Global 2011-2016E Offshore Oil and Gas Segment Market Analysis (by Type)
6.1 Global 2011-2016E Offshore Oil and Gas Sales by Type
6.2 Different Types of Offshore Oil and Gas Product Interview Price Analysis
6.3 Different Types of Offshore Oil and Gas Product Driving Factors Analysis
6.3.1 Heavy crude oil of Offshore Oil and Gas Growth Driving Factor Analysis
6.3.2 Light crude oil of Offshore Oil and Gas Growth Driving Factor Analysis
6.3.3 Liquefied natural gas of Offshore Oil and Gas Growth Driving Factor Analysis

7 Global 2011-2016E Offshore Oil and Gas Segment Market Analysis (by Application)
7.1 Global 2011-2016E Offshore Oil and Gas Consumption by Application
7.2 Different Application of Offshore Oil and Gas Product Interview Price Analysis
7.3 Different Application of Offshore Oil and Gas Product Driving Factors Analysis
7.3.1 Application 1 Offshore Oil and Gas Growth Driving Factor Analysis
7.3.2 Application 2 Offshore Oil and Gas Growth Driving Factor Analysis
7.3.3 Application 3 Offshore Oil and Gas Growth Driving Factor Analysis

8 Major Manufacturers Analysis of Offshore Oil and Gas
8.1 BP
8.1.1 Company Profile
8.1.2 Product Picture and Specifications
8.1.2.1 Type I
8.1.2.2 Type II
8.1.2.3 Type III
8.1.3 BP 2015 Offshore Oil and Gas Sales, Ex-factory Price, Revenue, Gross Margin Analysis
8.1.4 BP 2015 Offshore Oil and Gas Business Region Distribution Analysis
8.2 ExxonMobil
8.2.1 Company Profile
8.2.2 Product Picture and Specifications
8.2.2.1 Type I
8.2.2.2 Type II
8.2.2.3 Type III
8.2.3 ExxonMobil 2015 Offshore Oil and Gas Sales, Ex-factory Price, Revenue, Gross Margin Analysis
8.2.4 ExxonMobil 2015 Offshore Oil and Gas Business Region Distribution Analysis
8.3 Chevron
8.3.1 Company Profile
8.3.2 Product Picture and Specifications
8.3.2.1 Type I
8.3.2.2 Type II
8.3.2.3 Type III
8.3.3 Chevron 2015 Offshore Oil and Gas Sales, Ex-factory Price, Revenue, Gross Margin Analysis
8.3.4 Chevron 2015 Offshore Oil and Gas Business Region Distribution Analysis
8.4 Royal Dutch Shell
8.4.1 Company Profile
8.4.2 Product Picture and Specifications
8.4.2.1 Type I
8.4.2.2 Type II
8.4.2.3 Type III
8.4.3 Royal Dutch Shell 2015 Offshore Oil and Gas Sales, Ex-factory Price, Revenue, Gross Margin Analysis
8.4.4 Royal Dutch Shell 2015 Offshore Oil and Gas Business Region Distribution Analysis
8.5 Total
8.5.1 Company Profile
8.5.2 Product Picture and Specifications
8.5.2.1 Type I
8.5.2.2 Type II
8.5.2.3 Type III
8.5.3 Total 2015 Offshore Oil and Gas Sales, Ex-factory Price, Revenue, Gross Margin Analysis
8.5.4 Total 2015 Offshore Oil and Gas Business Region Distribution Analysis
8.6 ConocoPhillips
8.6.1 Company Profile
8.6.2 Product Picture and Specifications
8.6.2.1 Type I
8.6.2.2 Type II
8.6.2.3 Type III
8.6.3 ConocoPhillips 2015 Offshore Oil and Gas Sales, Ex-factory Price, Revenue, Gross Margin Analysis
8.6.4 ConocoPhillips 2015 Offshore Oil and Gas Business Region Distribution Analysis
8.7 Eni
8.7.1 Company Profile
8.7.2 Product Picture and Specifications
8.7.2.1 Type I
8.7.2.2 Type II
8.7.2.3 Type III
8.7.3 Eni 2015 Offshore Oil and Gas Sales, Ex-factory Price, Revenue, Gross Margin Analysis
8.7.4 Eni 2015 Offshore Oil and Gas Business Region Distribution Analysis
8.8 Petrobras
8.8.1 Company Profile
8.8.2 Product Picture and Specifications
8.8.2.1 Type I
8.8.2.2 Type II
8.8.2.3 Type III
8.8.3 Petrobras 2015 Offshore Oil and Gas Sales, Ex-factory Price, Revenue, Gross Margin Analysis
8.8.4 Petrobras 2015 Offshore Oil and Gas Business Region Distribution Analysis
8.9 Statoil
8.9.1 Company Profile
8.9.2 Product Picture and Specifications
8.9.2.1 Type I
8.9.2.2 Type II
8.9.2.3 Type III
8.9.3 Statoil 2015 Offshore Oil and Gas Sales, Ex-factory Price, Revenue, Gross Margin Analysis
8.9.4 Statoil 2015 Offshore Oil and Gas Business Region Distribution Analysis
8.10 CNOOC
8.10.1 Company Profile
8.10.2 Product Picture and Specifications
8.10.2.1 Type I
8.10.2.2 Type II
8.10.2.3 Type III
8.10.3 CNOOC 2015 Offshore Oil and Gas Sales, Ex-factory Price, Revenue, Gross Margin Analysis
8.10.4 CNOOC 2015 Offshore Oil and Gas Business Region Distribution Analysis

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

10 Offshore Oil and Gas Marketing Type Analysis
10.1 Offshore Oil and Gas Regional Marketing Type Analysis
10.2 Offshore Oil and Gas International Trade Type Analysis
10.3 Traders or Distributors with Contact Information of Offshore Oil and Gas by Regions
10.4 Offshore Oil and Gas Supply Chain Analysis

11 Consumers Analysis of Offshore Oil and Gas
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 Offshore Oil and Gas Market Professional Survey Report 2016

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Liquefied Petroleum Gas (LPG) Market: Residential and Commercial Segment to Remain Key Contributors.

The global liquefied petroleum gas (LPG) market is extremely fragmented with a large number of players operating in it, states a research study by Transparency Market Research (TMR). The growing number of players entering the global liquefied petroleum gas market is likely to strengthen the competition in the next few years. In 2013, the leading players in the market, namely CNPC, Sinopec, Royal Dutch Shell, ExxonMobil, BP plc, and Valero Energy collectively held a share of 20% of the global liquefied petroleum gas market. These players are emphasizing on branding and market positioning in order to attain a dominant position in the overall market. In addition, the increasing number of mergers and acquisitions for the expansion of retailing and distribution is anticipated to contribute towards the market’s growth in the next few years.

As per the research study by TMR, in 2015, the global liquefied petroleum gas market in terms of consumption was worth US$259.2 bn and is likely to reach a value of US$299.1 bn by 2020. This market is anticipated to register a steady 3.40% CAGR between 2014 and 2020.

Asia Pacific to Maintain Dominance in Terms of Liquefied Petroleum Gas Consumption

From a geographical lookout, Asia Pacific is expected to lead the global liquefied petroleum gas market on the basis of consumption and account for a share of 36.90% by the end of 2020. This scenario is expected to remain similar throughout the forecast period, states a TMR analyst. High growth of this region can be contributed to the significant contribution from India and China. In addition, the growing consumption of liquefied petroleum gas in commercial and residential sectors is anticipated to encourage the growth of the liquefied petroleum gas market in Asia Pacific.

On the basis of end use, the residential and commercial segment is anticipated to lead the global liquefied petroleum gas market in the next few years. This segment is likely to hold a share of 63.60% by the end of 2020, owing to its primary use as a cooking fuel. In addition, governments in several emerging economies are offering subsidiaries for liquefied petroleum gas as a cooking fuel, owing to which this segment is estimated to witness robust growth throughout the forecast period.

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Growing Demand for Autogas to Supplement Market Growth

The growing demand for automotive liquefied petroleum gas (autogas) across the globe is one of the key factors estimated to encourage the growth of the global liquefied petroleum gas market in the next few years. In addition, the environmental benefits offered by autogas and favorable legislative policies for using autogas are some of the other factors driving the demand for liquefied petroleum gas worldwide.

Furthermore, the rising demand for liquefied petroleum gas in several developing economies for meeting lighting and cooking requirements is estimated to augment market’s growth in the next few years, says a TMR analyst.

Fluctuating Crude Oil Prices to Restrict Market Growth

The leading players in the global liquefied petroleum gas market; however, are facing several challenges in the market due to the volatility in crude oil prices. These raw material fluctuations result in an uncertainty of liquefied petroleum gas price, which is expected to hamper the growth of the market. Nevertheless, the possibility of Shale gas production in Latin America and Asia Pacific region and the expansion of Panama Canal boosting trade opportunities are anticipated to accelerate the growth of the market in the coming years.

This information is based on the findings of a research report published by Transparency Market Research (TMR), titled “Liquefied Petroleum Gas (LPG) Market ( – Global Industry Analysis, Size, Share, Growth, Trends and Forecast 2014-2020.”

The global liquefied petroleum gas market has been segmented as below:

Global Liquefied Petroleum Gas Market, by Source

  • Refinery
  • Associated Gas
  • Non-Associated Gas

Global Liquefied Petroleum Gas Market, by End Use

  • Residential/Commercial
  • Petrochemical and Refinery
  • Industrial
  • Transportation
  • Others

About Us

Transparency Market Research (TMR) is a market intelligence company, providing global business information reports and services. Our exclusive blend of quantitative forecasting and trends analysis provides forward-looking insight for thousands of decision makers. TMR’s experienced team of analysts, researchers, and consultants, use proprietary data sources and various tools and techniques to gather, and analyze information. Our business offerings represent the latest and the most reliable information indispensable for businesses to sustain a competitive edge.

Each TMR syndicated research report covers a different sector – such as pharmaceuticals, chemicals, energy, food & beverages, semiconductors, med-devices, consumer goods and technology. These reports provide in-depth analysis and deep segmentation to possible micro levels. With wider scope and stratified research methodology, TMR’s syndicated reports strive to provide clients to serve their overall research requirement.

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Growth Of Oil Storage Market – 2016 – 2024

The global oil storage market is rather competitive among the top five players, who jointly held a share of more than 67.0% in 2014. These five players are Royal Vopak N.V., Buckeye Partners L.P., Oiltanking GmbH, Kinder Morgan Inc., and NuStar Energy L.P. The Transparency Market Research report suggests that this market is extremely capital driven and hence, the entrance of new players is highly unlikely during the forecast period of 2016–2024. Rising at a healthy CAGR of 4.73% by volume during the forecast period, the global market for oil storage is estimated to reach 2,027 mn cubic meters by 2024, up from 1,337 mn cubic meters in 2014.

The report also finds that several companies are indulging in strategic alliances, mergers, acquisitions, partnerships, and joint ventures to maintain their hold over the global market for oil storage. Via these strategies, these key players in the market are able to raise funds, which they use to develop new pipelines, extend their storage facilities, and expand their terminal networks. For instance, Kinder Morgan acquired Hiland Partners in 2015 in order to enhance its storage and terminal infrastructure in North America.

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Commercial Petroleum Reserves Segment Augmented by Fluctuating Oil Prices

The global oil storage market is segmented on the basis of type of reserve and geography. By type of reserve, the market is segmented into commercial petroleum and strategic petroleum reserves. In 2015, the segment of strategic petroleum reserves accounted for a massive 79.21% of the market. This was a result of substantial investment from several governments for the expansion of oil reserves. On the other hand, the segment of commercial petroleum reserves is expected to expand at a stronger CAGR of 7.8% during the forecast period 2016–2024. This increase in demand is attributed to fluctuating oil prices because commercial petroleum reserves help control the prices and plan for the future.

Geographically, the Middle East and Africa serves the most prominent demand in the global market for oil storage. Countries such as UAE, Iran, Saudi Arabia, Oman, Qatar, and Nigeria contribute to most of the demand in the MEA oil storage market. Extensive oil production and declining oil prices are two factors driving these regional markets.

Improved Road Conditions Easing Transportation of Finished Petroleum Products

The supply of crude oil has exceeded the demand in recent years and, as a result, the demand for oil storage facilities has increased globally. Concurrently, the leading players in the market have increased their focus on expanding storage capacity, particularly their refineries in Asia Pacific and Europe. Moreover, the quality of road travel has improved drastically in the past decade, which has aided the transportation of finished petroleum products and in turn driven the demand for oil storage. For example, CLH Group raised over US$200 mn in 2015 to develop its integrated network, including several kilometers of storage facilities. Conversely, the high cost of initial investments and time-consuming approval processes are some of the factors that may hinder the growth of the market.

According to the author of the report, “The investment in oil storage facilities must be done with long-term goals to ensure higher returns.” The author also picks out Asia Pacific as the most lucrative market for players. Countries such as China, Singapore, Japan, and South Korea are among the leading markets for oil storage in this region in terms of volume, driven by increased investments in petroleum reserves.

Key Segments of the Global Oil Storage Market

Oil Storage Market – Type of Storage Segment Analysis

  • Open Top Tanks
  • Fixed Roof Tanks
  • Floating Roof Tanks
  • Other Storage Facilities

Oil Storage Market – Product Type Segment Analysis

  • Crude Oil
  • Gasoline
  • Aviation Fuel
  • Middle Distillates

About Us

Transparency Market Research (TMR) is a market intelligence company, providing global business information reports and services. Our exclusive blend of quantitative forecasting and trends analysis provides forward-looking insight for thousands of decision makers. TMR’s experienced team of analysts, researchers, and consultants, use proprietary data sources and various tools and techniques to gather, and analyze information. Our business offerings represent the latest and the most reliable information indispensable for businesses to sustain a competitive edge.

Each TMR syndicated research report covers a different sector – such as pharmaceuticals, chemicals, energy, food & beverages, semiconductors, med-devices, consumer goods and technology. These reports provide in-depth analysis and deep segmentation to possible micro levels. With wider scope and stratified research methodology, TMR’s syndicated reports strive to provide clients to serve their overall research requirement.

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Necessity of Zonal Isolation in Oil and Gas Industry Driving Demand

Zonal isolation refers to the process of placing a cement sheath between casing and wellbore. This process helps isolate fluids such as water and gas in a zone from mixing with oil in another zone. According to a study by Transparency Market Research (TMR), the global market for zonal isolation stood at US$14.80 bn in 2014 and is estimated to reach a valuation of US$27.88 bn by 2024, rising at a healthy CAGR of 6.6% during the forecast period of 2016–2024.

Why is zonal isolation so essential for well operators?

Well operators employ several methods to isolate a particular zone at the production site. Typically, cement is used to fill the gaps between casings and well bores to act as an isolation shield. However, with technological advancements in the recent past, several chemical and mechanical techniques have been developed to prevent the cross flow of water, oil, or gas between different formations. Zonal isolation not only helps a well to reach its full potential, but also insures against losing reserves, lower production rates, and start-up delays caused by repairing a faulty cement job.

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It has been noted that the market for zonal isolation is gaining popularity, with the exploration of unconventional energy resources on the rise across the globe, particularly in offshore areas. For example, shale gas production has grown exponentially in the past few years and well operators are banking on zonal isolation technologies such as packers and plugs to ensure full-scale production.

What enables the segment of chemical zonal isolation to dominate the market?

According to the TMR report, chemical zonal isolation holds the most formidable market share in terms of technology. This is because of the decreasing prices of crude oil, which have a direct impact on the chemicals used for zonal isolation. Well operators generally deploy multiple technologies besides primary cementing to isolate a specific zone during well completion and intervention. The technique used depends on several factors such as depth of the well, type of producing zone, temperate of the wellbore, and wellbore geometry.

Which regions are likely to be most lucrative for zonal isolation?

North America was the leading market for zonal isolation in 2014, as per TMR, which attributes it to the extensive exploration of unconventional resources in the region along with favorable government initiatives for safe energy and aggressive investments by key players. Europe and the Middle East were the next two prominent markets in 2014.

However, the zonal isolation market in Asia Pacific is expected to expand at the most robust rate in the near future, owing to consistent economic development and an increasing focus on the adoption of unconventional reserves. Drilling activities are rising in the region on the heels of supportive regulations in several countries, including China and India.

About Us

Transparency Market Research (TMR) is a market intelligence company, providing global business information reports and services. Our exclusive blend of quantitative forecasting and trends analysis provides forward-looking insight for thousands of decision makers. TMR’s experienced team of analysts, researchers, and consultants, use proprietary data sources and various tools and techniques to gather, and analyze information. Our business offerings represent the latest and the most reliable information indispensable for businesses to sustain a competitive edge.

Each TMR syndicated research report covers a different sector – such as pharmaceuticals, chemicals, energy, food & beverages, semiconductors, med-devices, consumer goods and technology. These reports provide in-depth analysis and deep segmentation to possible micro levels. With wider scope and stratified research methodology, TMR’s syndicated reports strive to provide clients to serve their overall research requirement.

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Global QYResearch: Fuel Additives Market 2016 (Diesel, Gasoline, Aviation) Overview by Product Configuration, Types, Functionalities, Market Procedures & Applications

This report studies Global Fuel Additives Market 2016, especially in North America, Europe, China, Japan, Southeast Asia and India, focuses on top manufacturers in global market, with capacity, production, price, revenue and market share for each manufacturer, covering
Chevron Oronite Company LLC
The Lubrizol Corporation
Afton Chemical Corporation
Fuel Performance Solutions Inc.
Evonik Industries AG
BASF SE
Chemtura Corporation
Innospec Inc.
Dorf Ketal Chemicals India Pvt. Ltd.
Infineum International Ltd.
Cummins Inc.
Cerion LLC

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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 Fuel Additives 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 Fuel Additives in each application, can be divided into
Diesel Fuel Additives
Gasoline Fuel Additives
Aviation Fuel Additives
Other Apllications Fuel Additives

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Table of Contents

Global Fuel Additives Market Research Report 2016
1 Fuel Additives Market Overview
1.1 Product Overview and Scope of Fuel Additives
1.2 Fuel Additives Segment by Type
1.2.1 Global Production Market Share of Fuel Additives by Type in 2015
1.2.2 Type I
1.2.3 Type II
1.2.4 Type III
1.3 Fuel Additives Segment by Application
1.3.1 Fuel Additives Consumption Market Share by Application in 2015
1.3.2 Diesel Fuel Additives
1.3.3 Gasoline Fuel Additives
1.3.4 Aviation Fuel Additives
1.3.5 Other Apllications Fuel Additives
1.4 Fuel Additives 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 Fuel Additives (2011-2021)

….

7 Global Fuel Additives Manufacturers Profiles/Analysis
7.1 Chevron Oronite Company LLC
7.1.1 Company Basic Information, Manufacturing Base and Its Competitors
7.1.2 Fuel Additives Product Type, Application and Specification
7.1.2.1 Type I
7.1.2.2 Type II
7.1.3 Chevron Oronite Company LLC Fuel Additives Capacity, Production, Revenue, Price and Gross Margin (2015 and 2016)
7.1.4 Main Business/Business Overview
7.2 The Lubrizol Corporation
7.2.1 Company Basic Information, Manufacturing Base and Its Competitors
7.2.2 Fuel Additives Product Type, Application and Specification
7.2.2.1 Type I
7.2.2.2 Type II
7.2.3 The Lubrizol Corporation Fuel Additives Capacity, Production, Revenue, Price and Gross Margin (2015 and 2016)
7.2.4 Main Business/Business Overview
7.3 Afton Chemical Corporation
7.3.1 Company Basic Information, Manufacturing Base and Its Competitors
7.3.2 Fuel Additives Product Type, Application and Specification
7.3.2.1 Type I
7.3.2.2 Type II
7.3.3 Afton Chemical Corporation Fuel Additives Capacity, Production, Revenue, Price and Gross Margin (2015 and 2016)
7.3.4 Main Business/Business Overview
7.4 Fuel Performance Solutions Inc.
7.4.1 Company Basic Information, Manufacturing Base and Its Competitors
7.4.2 Fuel Additives Product Type, Application and Specification
7.4.2.1 Type I
7.4.2.2 Type II
7.4.3 Fuel Performance Solutions Inc. Fuel Additives Capacity, Production, Revenue, Price and Gross Margin (2015 and 2016)
7.4.4 Main Business/Business Overview
7.5 Evonik Industries AG
7.5.1 Company Basic Information, Manufacturing Base and Its Competitors
7.5.2 Fuel Additives Product Type, Application and Specification
7.5.2.1 Type I
7.5.2.2 Type II
7.5.3 Evonik Industries AG Fuel Additives Capacity, Production, Revenue, Price and Gross Margin (2015 and 2016)
7.5.4 Main Business/Business Overview
7.6 BASF SE
7.6.1 Company Basic Information, Manufacturing Base and Its Competitors
7.6.2 Fuel Additives Product Type, Application and Specification
7.6.2.1 Type I
7.6.2.2 Type II
7.6.3 BASF SE Fuel Additives Capacity, Production, Revenue, Price and Gross Margin (2015 and 2016)
7.6.4 Main Business/Business Overview
7.7 Chemtura Corporation
7.7.1 Company Basic Information, Manufacturing Base and Its Competitors
7.7.2 Fuel Additives Product Type, Application and Specification
7.7.2.1 Type I
7.7.2.2 Type II
7.7.3 Chemtura Corporation Fuel Additives Capacity, Production, Revenue, Price and Gross Margin (2015 and 2016)
7.7.4 Main Business/Business Overview
7.8 Innospec Inc.
7.8.1 Company Basic Information, Manufacturing Base and Its Competitors
7.8.2 Fuel Additives Product Type, Application and Specification
7.8.2.1 Type I
7.8.2.2 Type II
7.8.3 Innospec Inc. Fuel Additives Capacity, Production, Revenue, Price and Gross Margin (2015 and 2016)
7.8.4 Main Business/Business Overview
7.9 Dorf Ketal Chemicals India Pvt. Ltd.
7.9.1 Company Basic Information, Manufacturing Base and Its Competitors
7.9.2 Fuel Additives Product Type, Application and Specification
7.9.2.1 Type I
7.9.2.2 Type II
7.9.3 Dorf Ketal Chemicals India Pvt. Ltd. Fuel Additives Capacity, Production, Revenue, Price and Gross Margin (2015 and 2016)
7.9.4 Main Business/Business Overview
7.10 Infineum International Ltd.
7.10.1 Company Basic Information, Manufacturing Base and Its Competitors
7.10.2 Fuel Additives Product Type, Application and Specification
7.10.2.1 Type I
7.10.2.2 Type II
7.10.3 Infineum International Ltd. Fuel Additives Capacity, Production, Revenue, Price and Gross Margin (2015 and 2016)
7.10.4 Main Business/Business Overview
7.11 Cummins Inc.
7.12 Cerion LLC

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Increasing Deployment of GTL Technology for Developing Clean Fuel Globally Supports Growth of Gas to Liquids Market

Gas to liquids (GTL) is a refinery process for converting natural gas or any other kind of gaseous hydrocarbons to longer-chain hydrocarbons such as diesel fuel or gasoline. Methane-rich gases get converted to liquid synthetic fuels either via direct conversion or non-catalytic processes. These processes are used for the conversion of methane to methanol in just a single step or by syngas as an intermediate using Mobil, Fischer Tropsch, and syngas to gasoline plus processes.

The globally rising consumption of energy and an emphasis on converting of waste flare gas into useful products globally are amongst the major factors fuelling the development of the gas to liquids market. In addition, the policies made by governments globally in favor of the development of clean fuel will also impact the market positively. Furthermore, the increasing consumption of natural gas, particularly within nations such as Japan, China, and India and the rising advancement of smaller sized micro-channel reactors in place of the traditionally utilized reactors have emerged as key growth opportunities in the market.

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There are a number of commercial uses of the gas to liquid processes. Transparency Market Research (TMR), a market intelligence company throws light on the top commercial uses of gas to liquid processes and the ways these processes have been deployed by a number of companies in different application areas.

Refineries are able to convert a large amount of their gaseous waste products into valuable fuel oils, which can then be sold as-is or can be blended with diesel fuel. As per the World Bank, more than 150 bn cubic meters of natural gas is vented or flared yearly, an amount worth around $30.6 bn, which is an equivalent to 25% of the gas consumption of the U.S or 30% of the annual gas consumption of the European Union, using the method of GTL.

GTL processes are also utilized in the economic extraction of gas deposits within locations where it is not viable to build a pipeline. The popularity of the GTL process is increasing owing to the depletion of crude oil resources.

Biofuels Power Corporation (BFLS) signed a letter of intent with Liberty GTL, Inc. and thyssenKrupp Industrial Solutions on August 1, 2014 on building a small scale GTL demonstration facility within Houston, Texas. This GTL pilot plant was completed on December 31, 2014. The key purpose of this GTL pilot plant was to present a commercial demonstration of converting the stranded natural gas resources into synthetic crude oil. More such projects are afoot worldwide and will likely accelerate the development of the gas to liquids market.

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In the early days of experimenting of GTL by a number of organizations, Petrobras, a Brazilian oil company has employed two small experimental GTL production facilities for its offshore oil fields. The research and development center of Petrobras has approved the commercial deployment of this GTL technology, supplied by CompactGTL, a UK-based GTL company. Thus, such development will further augment the development of the market.

Thus, the deployment of GTL technology in a number of applications globally will fuel the overall market in the coming years. However, the need for considerable expenditure for the development of large-scale GTL plants is a major factor that may inhibit the growth of the market in the coming years.

About Us

Transparency Market Research (TMR) is a market intelligence company, providing global business information reports and services. Our exclusive blend of quantitative forecasting and trends analysis provides forward-looking insight for thousands of decision makers. TMR’s experienced team of analysts, researchers, and consultants, use proprietary data sources and various tools and techniques to gather, and analyze information. Our business offerings represent the latest and the most reliable information indispensable for businesses to sustain a competitive edge.

Each TMR syndicated research report covers a different sector – such as pharmaceuticals, chemicals, energy, food & beverages, semiconductors, med-devices, consumer goods and technology. These reports provide in-depth analysis and deep segmentation to possible micro levels. With wider scope and stratified research methodology, TMR’s syndicated reports strive to provide clients to serve their overall research requirement.

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Remotely Operated Offshore Support Vessels are Enabling the Oil and Gas Sector to Reach Greater Depths

Offshore oil exploration began in the 19th century off the coasts of the United States. Henry L. Williams, an American industrialist, is widely regarded as being a pioneer in this area when he set up a project to extract oil from Summerland field, a site located off the coast of California, in the 1890s. However, when the 1973 Arab Oil Crisis compelled the U.S. to take energy security seriously, offshore exploration received a further boost.

The offshore support vessels market, which developed to meet the growing demand for supplies and equipment on offshore and subsea exploration sites, has only grown since then. However, it is interesting to note that despite the cause of offshore exploration being strongly endorsed by countries such as the United States, three of the five largest offshore oil reserves today are in the Persian Gulf. This region is thus especially important for companies in the global offshore support vessels market.

With regulatory winds blowing constantly and fiercely in the oil and gas sector, constant improvement and innovation is crucial for companies supplying products to this sector. And companies in the offshore support vessels market are no exception. With offshore oil rigs being exposed to demanding conditions and venturing progressively deeper into the sea, conventional offshore support vessels are simply not enough. That has prompted companies to offer remotely operated vehicles to support offshore projects.

Tracing Growth of Global offshore Support Vessels Market

Innovation has been at the heart of the global offshore support vehicles industry since its easy days. In the case of remotely operated offshore support vehicles, especially, commercial companies have drawn heavily from the technology used the defense industry to recover ordnance lost in deep waters during naval exercises and tests.

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The commercially-used remove offshore support vessels are commonly referred to as the work-class ROVs – their primary application is to support operations at an offshore oil field. U.S.-based firm, HydroProducts, was among the first to develop ROVs for use on offshore fields. Two of its products – the RCV-225 and RCV-150 – laid the foundations of the offshore support vessels market.

But when offshore oil wells started being set up in depths that were beyond the reach of human divers, the use of remotely operated offshore support vessels became even more important in the 1980s. However, this phase was also the toughest for the offshore support vessels industry because technological development received a blow from the global economic recession, which wasn’t helped in any way by the freefalling oil prices.

Innovation to Remain Cornerstone of Global Offshore Support Vessels Market

As the global recession eased and companies were able to fund more R&D initiatives, ROVs evolved again to carry out hundreds of different tasks required at an oil field. From inspecting a site to checking whether subsea pipelines are structurally sound to place manifolds at thousands of feet under the sea, the role offshore support vessels now ranges from initial construction to lifelong maintenance once the offshore site is operational.

In 1993, JAMSTEC set a new benchmark for the global offshore support vessels market with the launch of ROV Kaiko, which successfully reached the Challenger Deep, the deepest part in the world, located in the Marina Trench. Thus, with remotely operated offshore support vessels that could reach depths of over 10,000 feet, it became clear that no matter how challenging the task at hand was, ROVs could be relied on.

With an increase in the count of offshore rigs worldwide, the demand for offshore support vessels is thus expected to remain strong.

About Us

Transparency Market Research (TMR) is a market intelligence company, providing global business information reports and services. Our exclusive blend of quantitative forecasting and trends analysis provides forward-looking insight for thousands of decision makers. TMR’s experienced team of analysts, researchers, and consultants, use proprietary data sources and various tools and techniques to gather, and analyze information. Our business offerings represent the latest and the most reliable information indispensable for businesses to sustain a competitive edge.

Each TMR syndicated research report covers a different sector – such as pharmaceuticals, chemicals, energy, food & beverages, semiconductors, med-devices, consumer goods and technology. These reports provide in-depth analysis and deep segmentation to possible micro levels. With wider scope and stratified research methodology, TMR’s syndicated reports strive to provide clients to serve their overall research requirement.

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Global Natural Gas Storage Market: Rising Energy Security Concerns to Drive Demand, says TMR

The global natural gas storage market is dominated by players such as Gazprom, Spectra Energy Corporation, TransCanada Corporation, Chiyoda Corporation, Cardinal Gas Storage Partners LLC, Enbridge Gas Distribution Inc., Centrica Storage Ltd., Niska Gas Storage Partners LLC, Engie S.A., and NAFTA A.S. According to Transparency Market Research (TMR), the global natural gas storage market is quite fragmented and lacks a clear market leader. However, entering the natural gas storage market is difficult, as players need extensive pipeline and distribution networks. As a result, the market could be headed towards a phase of consolidation.

According to TMR, the global natural gas storage market’s total storage capacity volume is expected to reach 421,102.54 mcm by the end of 2016 and further rise to 548,566.74 mcm by the end of 2023.

North America, Europe to Retain Clear Dominance despite Steady Growth of Asia Pacific Market

Geographically, Europe was the leading contributor to the global natural gas storage market in 2014 and is likely to remain the clear regional leader in the natural gas storage market through the 2015-2023 forecast period. “Europe is expected to consistently account for a majority share in the global natural gas storage market due to the widespread availability of advanced natural gas storage technologies,” elaborated TMR’s lead analyst. Europe is expected to account for 54.6% of the global natural gas storage market by the end of 2023, followed by North America.

Asia Pacific and the rest of the world markets for natural gas storage collectively accounted for just over 3% of the global natural gas storage market in 2014. Despite steady growth of the market in Asia Pacific, whose share in the global natural gas market is expected to grow by close to threefold over the 2015-2023 forecast period, these two regions are likely to remain minor contributors to the global natural gas storage market in the coming years.

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By storage type, underground storage was the overwhelmingly dominant segment of the natural gas storage market in 2014, with above-ground storage accounting for less than 1% of the market. The share of above-ground storage technologies in the natural gas storage market is unlikely to increase significantly in the 2015-2023 forecast period, as it can’t match the logistical and economic convenience of underground storage. However, the rising Asia Pacific market could provide a second wind for the above-ground natural gas storage market, as new players often opt for above-ground natural gas storage before moving on to underground facilities.

Rising Demand for Natural Gas as Clean Fuel to Drive Demand

The key driver for the global natural gas storage market is the rising utilization of natural gas in household and commercial applications. Natural gas is a cleaner fuel than most other fossil fuels, which has become a vital property in light of the increasing government and public support to environmentalism. The demand for natural gas has received a strong boost in the form of the rising demand for gas-fired turbines in combined heat and power generation plants, which are likely to remain popular over the coming years due to their low overall impact on the environment.

Another key driver for the global natural gas storage market is the rising concern regarding energy security. Due to the mounting scarcity of fossil fuels, allied to the geopolitical problems in many oil-producing regions, natural gas storage has become commercially as well as politically important. On the other hand, the capital-intensive nature of natural gas storage is likely to restrict expansion of the market in the coming years.

The global natural gas storage market is segmented as follows:

Global Natural Gas Storage Market: By Type

Above-ground Storage

Underground Storage

  • Depleted Reservoirs
  • Salt Caverns
  • Aquifers

Global Natural Gas Storage Market: By Geography

  • North America
  • Europe
  • Asia Pacific
  • Rest of the World

About Us

Transparency Market Research (TMR) is a market intelligence company, providing global business information reports and services. Our exclusive blend of quantitative forecasting and trends analysis provides forward-looking insight for thousands of decision makers. TMR’s experienced team of analysts, researchers, and consultants, use proprietary data sources and various tools and techniques to gather, and analyze information. Our business offerings represent the latest and the most reliable information indispensable for businesses to sustain a competitive edge.

Each TMR syndicated research report covers a different sector – such as pharmaceuticals, chemicals, energy, food & beverages, semiconductors, med-devices, consumer goods and technology. These reports provide in-depth analysis and deep segmentation to possible micro levels. With wider scope and stratified research methodology, TMR’s syndicated reports strive to provide clients to serve their overall research requirement.

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Oil and Gas Automation Market Global Market Opportunity Assessment Study 2024.

Oil and Gas Automation Market: Overview

Automation in the oil and gas industry refers to the completion of tasks by the use of control systems, with minimal human intervention. Automation in the oil and gas industry helps in improving the safety and enhancing the efficiency of various operations. Work-related fatalities in the oil and gas industry is increasing every year and thus, automation in the industry helps in avoiding accidents and ensuring safety for the workforce. Automation in the oil and gas industry has applications such as retailing and distribution of petroleum products, start-up, commissioning, and processing and production of plants.

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The market study offers an in-depth analysis of the global oil and gas automation industry, studying it by segmenting the market based on various key criteria. It provides an executive-level blueprint of the global oil and gas automation market using Porter’s five forces, market attractiveness analysis, and value chain analysis. It discusses the degree of competition, bargaining power of buyer and supplier, threat of new entrants, and threat of substitutes. In addition to this, the report discusses the company market share and market attractiveness analysis. The report assesses industry policies that influence the global oil and gas automation market.

The global oil and gas automation market can be segmented on the basis of technology, sector, petroleum derivative products, and by geography. On the basis of technology, the market can be segmented into distributed control systems (DCS), programmable logic controller (PLC), human machine interface (HMI), supervisory control and data acquisition (SCADA), and real-time optimization and simulation (RTOS). By derivative products, the market can be segmented into liquefied petroleum gas, petrol, and diesel.

Oil and Gas Automation Market: Trends and Opportunities

The key factors driving the global oil and gas automation market include effective and easy maintenance made possible by automation, enhanced safety and security, and effective exploration from aging reservoirs. In order to satisfy the increasing demand of oil and gas by both domestic and international consumers, there is a need for a delivery system that is both efficient and accurate. Thus, different products such as DCS, PLC, HMI, and SCADA can be used to ensure adequate safety. The oil and gas companies are chiefly aiming at automation systems so as to achieve a higher level of transparency which subsequently leads to profits by complying with stringent regulations regarding carbon emissions. This is expected to continue to drive the market in the coming years.

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Technological advancements and innovations in automation of both software and hardware are aiding the growth of the oil and gas automation market. On the other hand, factors impacting the growth of the global oil and gas automation market negatively include high initial investments and challenges regarding system upgrades. In short, configuration and consistency are among key concerns for players in the market.

Oil and Gas Automation Market: Region-wise Outlook

The report segments the global oil and gas automation market on the basis of geography, into North America, Europe, Asia Pacific, and the Rest of the World. Owing to the availability of coal and oil reserves, the oil and gas automation market is expected to be concentrated in South East Asia. In addition to this, North America is expected to be a lucrative regional segment in the coming years.

Key Players Mentioned in the Report

The report profiles key players operating in the global oil and gas automation market. They are ABB, Mitsubishi Electric, Siemens, Emersion, Honeywell, and Rockwell Automation. The recent developments and growth strategies adopted by each of the players have been included in the report. The report also provides insights into the strengths and weaknesses of the companies profiled. The opportunities and challenges that these companies face are also elaborated upon.

About Us

Transparency Market Research (TMR) is a market intelligence company, providing global business information reports and services. Our exclusive blend of quantitative forecasting and trends analysis provides forward-looking insight for thousands of decision makers. TMR’s experienced team of analysts, researchers, and consultants, use proprietary data sources and various tools and techniques to gather, and analyze information. Our business offerings represent the latest and the most reliable information indispensable for businesses to sustain a competitive edge.

Each TMR syndicated research report covers a different sector – such as pharmaceuticals, chemicals, energy, food & beverages, semiconductors, med-devices, consumer goods and technology. These reports provide in-depth analysis and deep segmentation to possible micro levels. With wider scope and stratified research methodology, TMR’s syndicated reports strive to provide clients to serve their overall research requirement.

Contact
Transparency Market Research
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Global Biogas Market: Significant Development of Biogas Infrastructure to Enhance Production, finds TMR

The degree of competition in the global biogas market is high due to the presence of numerous companies with similar products and a slight difference in quality, states Transparency Market Research (TMR) in a new research report. Several players operating in the global biogas market are getting into strategic partnerships and have increased merger and acquisition activities to maintain a strong hold on the market. Leading players are carrying out long term contracts with buyers as well as suppliers. The exit barriers in the global biogas market are considerably high due to contract commitments and high initial investments. Some of the key companies operating in the market are Air Liquide Advanced Business and Technologies, Wartsila Corporation, Vanzetti Engineering S.r.l., Cryostar SAS, Gasrec Ltd., and Biofrigas Sweden AB.

In terms of volume, the global biogas market stood at 22,963.21 KTOE in 2015 and is projected to touch 39,845.58 KTOE by the end of 2023. The global biogas market is likely to witness a CAGR of 6.56% from 2015 to 2023. Electricity and heat emerged as the key application segment, in terms of consumption of biogas, with a share of 50.61% in 2014 and is likely to account for 52.05% by 2023. Biogas is used as a fuel in combustion engines, which are used to power electric generators for electricity production. The growing use of electricity produced through combined heat and power technique in electricity grids is further anticipated to boost the consumption of biogas over the forthcoming years.

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Europe to Witness Promising Growth Owing to Favorable Subsidy Schemes

Geographically, Europe emerged dominant in the global biogas market in 2014 and is likely to retain a leading position until 2023. It held a share of 62.65% in 2014 and is projected to account for 64.38% in 2023. According to a TMR analyst, “The biogas market in Europe is likely to grow at a significant rate owing to the favorable subsidization schemes implemented by governments of countries such as the Czech Republic, the U.K., Italy, and the Netherlands.” The simplification of approval procedures for the construction of biogas plants in France is further expected to aid the progress of the biogas market in Europe.

Shift of Consumers towards Renewable Energy Sources to Bolster Demand for Biogas

At present, maximum heat and power generation activitiesGlobal Biogas Market: Significant Development of Biogas Infrastructure to Enhance Production, finds TMR across the globe are carried out using fossil fuels such as coal, oil, and gas. Rising concerns regarding the depletion of crude oil reserves have paved way for the adoption of alternative sources of energy. As a result of this, governments of several countries have reduced the dependence on fossil fuels and are taking initiatives to promote the adoption of clean and renewable energy sources.

As biogas is an organic and renewable source of energy, its adoption assists in addressing environmental concerns to a certain extent. Furthermore, the ongoing infrastructural development for natural gas in several developed nations to meet the high demand for natural gas is projected to augment the growth of the global biogas market. Upgraded biogas with high methane content is equivalent to natural gas and is transported using natural gas pipelines. Biogas is being preferred as the most potential alternative for natural gas.

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High Cost of Installation and Initial Investment to Act as Hindrance for Market Growth

The cost of installation of equipment such as pumps, gas storage, reactors, and digesters in biogas plants can be prohibitively high. Furthermore, as compared to other sources of energy, the cost of power generation from biogas is significantly high. The cost of construction and operation of biogas plants is also not economically feasible and without government support, it is difficult to operate a biogas plant. As a result of this, the growth of the global biogas market is likely to be impeded over the forthcoming years.

This review is based on a Transparency Market Research report, titled, “Biogas Market  – Global Industry Analysis, Size, Share, Growth Trends and Forecast 2015-2023.”

The biogas market has been segmented as follows:

Global Biogas Market: Application Analysis

Electricity & Heat
Vehicle Fuel
Others

About Us

Transparency Market Research (TMR) is a market intelligence company, providing global business information reports and services. Our exclusive blend of quantitative forecasting and trends analysis provides forward-looking insight for thousands of decision makers. TMR’s experienced team of analysts, researchers, and consultants, use proprietary data sources and various tools and techniques to gather, and analyze information. Our business offerings represent the latest and the most reliable information indispensable for businesses to sustain a competitive edge.

Each TMR syndicated research report covers a different sector – such as pharmaceuticals, chemicals, energy, food & beverages, semiconductors, med-devices, consumer goods and technology. These reports provide in-depth analysis and deep segmentation to possible micro levels. With wider scope and stratified research methodology, TMR’s syndicated reports strive to provide clients to serve their overall research requirement.

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Oil and Gas Automation Market Advanced technologies & growth opportunities in global Industry by 2024.

Oil and Gas Automation Market: Overview

Automation in the oil and gas industry refers to the completion of tasks by the use of control systems, with minimal human intervention. Automation in the oil and gas industry helps in improving the safety and enhancing the efficiency of various operations. Work-related fatalities in the oil and gas industry is increasing every year and thus, automation in the industry helps in avoiding accidents and ensuring safety for the workforce. Automation in the oil and gas industry has applications such as retailing and distribution of petroleum products, start-up, commissioning, and processing and production of plants.

The market study offers an in-depth analysis of the global oil and gas automation industry, studying it by segmenting the market based on various key criteria. It provides an executive-level blueprint of the global oil and gas automation market using Porter’s five forces, market attractiveness analysis, and value chain analysis. It discusses the degree of competition, bargaining power of buyer and supplier, threat of new entrants, and threat of substitutes. In addition to this, the report discusses the company market share and market attractiveness analysis. The report assesses industry policies that influence the global oil and gas automation market.

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The global oil and gas automation market can be segmented on the basis of technology, sector, petroleum derivative products, and by geography. On the basis of technology, the market can be segmented into distributed control systems (DCS), programmable logic controller (PLC), human machine interface (HMI), supervisory control and data acquisition (SCADA), and real-time optimization and simulation (RTOS). By derivative products, the market can be segmented into liquefied petroleum gas, petrol, and diesel.

Oil and Gas Automation Market: Trends and Opportunities

The key factors driving the global oil and gas automation market include effective and easy maintenance made possible by automation, enhanced safety and security, and effective exploration from aging reservoirs. In order to satisfy the increasing demand of oil and gas by both domestic and international consumers, there is a need for a delivery system that is both efficient and accurate. Thus, different products such as DCS, PLC, HMI, and SCADA can be used to ensure adequate safety. The oil and gas companies are chiefly aiming at automation systems so as to achieve a higher level of transparency which subsequently leads to profits by complying with stringent regulations regarding carbon emissions. This is expected to continue to drive the market in the coming years.

Technological advancements and innovations in automation of both software and hardware are aiding the growth of the oil and gas automation market. On the other hand, factors impacting the growth of the global oil and gas automation market negatively include high initial investments and challenges regarding system upgrades. In short, configuration and consistency are among key concerns for players in the market.

Oil and Gas Automation Market: Region-wise Outlook

The report segments the global oil and gas automation market on the basis of geography, into North America, Europe, Asia Pacific, and the Rest of the World. Owing to the availability of coal and oil reserves, the oil and gas automation market is expected to be concentrated in South East Asia. In addition to this, North America is expected to be a lucrative regional segment in the coming years.

Key Players Mentioned in the Report

The report profiles key players operating in the global oil and gas automation market. They are ABB, Mitsubishi Electric, Siemens, Emersion, Honeywell, and Rockwell Automation. The recent developments and growth strategies adopted by each of the players have been included in the report. The report also provides insights into the strengths and weaknesses of the companies profiled. The opportunities and challenges that these companies face are also elaborated upon.

About Us

Transparency Market Research (TMR) is a market intelligence company, providing global business information reports and services. Our exclusive blend of quantitative forecasting and trends analysis provides forward-looking insight for thousands of decision makers. TMR’s experienced team of analysts, researchers, and consultants, use proprietary data sources and various tools and techniques to gather, and analyze information. Our business offerings represent the latest and the most reliable information indispensable for businesses to sustain a competitive edge.

Each TMR syndicated research report covers a different sector – such as pharmaceuticals, chemicals, energy, food & beverages, semiconductors, med-devices, consumer goods and technology. These reports provide in-depth analysis and deep segmentation to possible micro levels. With wider scope and stratified research methodology, TMR’s syndicated reports strive to provide clients to serve their overall research requirement.

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Global Smart Oilfield Market Research Report 2016: CNPC Halliburton Honeywell International Schlumberger Accenture…

This report studies Global Smart Oilfield Market 2016, 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
CNPC
Halliburton
Honeywell International
Schlumberger
Accenture
Kongsberg Gruppen
Paradigm
Rockwell Automation
Shell

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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 Smart Oilfield 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 Smart Oilfield in each application, can be divided into
Application 1
Application 2
Application 3

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Table of Contents

Global Smart Oilfield Market Research Report 2016
1 Smart Oilfield Market Overview
1.1 Product Overview and Scope of Smart Oilfield
1.2 Smart Oilfield Segment by Type
1.2.1 Global Production Market Share of Smart Oilfield by Type in 2015
1.2.2 Type I
1.2.3 Type II
1.2.4 Type III
1.3 Smart Oilfield Segment by Application
1.3.1 Smart Oilfield Consumption Market Share by Application in 2015
1.3.2 Application 1
1.3.3 Application 2
1.3.4 Application 3
1.4 Smart Oilfield 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 Smart Oilfield (2011-2021)

…..

7 Global Smart Oilfield Manufacturers Profiles/Analysis
7.1 CNPC
7.1.1 Company Basic Information, Manufacturing Base and Its Competitors
7.1.2 Smart Oilfield Product Type, Application and Specification
7.1.2.1 Type I
7.1.2.2 Type II
7.1.3 CNPC Smart Oilfield Production, Revenue, Price and Gross Margin (2015 and 2016)
7.1.4 Main Business/Business Overview
7.2 Halliburton
7.2.1 Company Basic Information, Manufacturing Base and Its Competitors
7.2.2 Smart Oilfield Product Type, Application and Specification
7.2.2.1 Type I
7.2.2.2 Type II
7.2.3 Halliburton Smart Oilfield Production, Revenue, Price and Gross Margin (2015 and 2016)
7.2.4 Main Business/Business Overview
7.3 Honeywell International
7.3.1 Company Basic Information, Manufacturing Base and Its Competitors
7.3.2 Smart Oilfield Product Type, Application and Specification
7.3.2.1 Type I
7.3.2.2 Type II
7.3.3 Honeywell International Smart Oilfield Production, Revenue, Price and Gross Margin (2015 and 2016)
7.3.4 Main Business/Business Overview
7.4 Schlumberger
7.4.1 Company Basic Information, Manufacturing Base and Its Competitors
7.4.2 Smart Oilfield Product Type, Application and Specification
7.4.2.1 Type I
7.4.2.2 Type II
7.4.3 Schlumberger Smart Oilfield Production, Revenue, Price and Gross Margin (2015 and 2016)
7.4.4 Main Business/Business Overview
7.5 Accenture
7.5.1 Company Basic Information, Manufacturing Base and Its Competitors
7.5.2 Smart Oilfield Product Type, Application and Specification
7.5.2.1 Type I
7.5.2.2 Type II
7.5.3 Accenture Smart Oilfield Production, Revenue, Price and Gross Margin (2015 and 2016)
7.5.4 Main Business/Business Overview
7.6 Kongsberg Gruppen
7.6.1 Company Basic Information, Manufacturing Base and Its Competitors
7.6.2 Smart Oilfield Product Type, Application and Specification
7.6.2.1 Type I
7.6.2.2 Type II
7.6.3 Kongsberg Gruppen Smart Oilfield Production, Revenue, Price and Gross Margin (2015 and 2016)
7.6.4 Main Business/Business Overview
7.7 Paradigm
7.7.1 Company Basic Information, Manufacturing Base and Its Competitors
7.7.2 Smart Oilfield Product Type, Application and Specification
7.7.2.1 Type I
7.7.2.2 Type II
7.7.3 Paradigm Smart Oilfield Production, Revenue, Price and Gross Margin (2015 and 2016)
7.7.4 Main Business/Business Overview
7.8 Rockwell Automation
7.8.1 Company Basic Information, Manufacturing Base and Its Competitors
7.8.2 Smart Oilfield Product Type, Application and Specification
7.8.2.1 Type I
7.8.2.2 Type II
7.8.3 Rockwell Automation Smart Oilfield Production, Revenue, Price and Gross Margin (2015 and 2016)
7.8.4 Main Business/Business Overview
7.9 Shell
7.9.1 Company Basic Information, Manufacturing Base and Its Competitors
7.9.2 Smart Oilfield Product Type, Application and Specification
7.9.2.1 Type I
7.9.2.2 Type II
7.9.3 Shell Smart Oilfield Production, Revenue, Price and Gross Margin (2015 and 2016)
7.9.4 Main Business/Business Overview

Continue…

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Oil Refinery Market Advanced technologies & growth opportunities in global Industry by 2023.

The global oil refinery market is expected to increase due to rising energy demand, evolving technology and new sources of the crude oil explored during the forecast period. In 2013, the global refinery capacity has increased significantly. Apart from Europe, refinery capacity has increased substantially worldwide.

A refinery is a processing facility that consists of various processing units that convert raw materials into different products. Some of the products produced in the refinery may need further processing. A refinery is used to process crude oil into various products and intermediates. Crude oil is transported to the refineries using pipelines. The first processing unit in the refinery is desalination. Crude oil contains various salts and impurities that can be harmful for the other processing units. All the impurities are not removed from the crude oil in desalination unit. After desalination crude oil passes through various preheat trains that increase the temperature of crude oil. The temperature is further increased using a heater before it enters the crude distillation unit (CDU).

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Crude oil is processed into a distillation column and separated into different components on the basis of boiling point. The component with low boiling points goes to the top of the tower and the one with the highest boiling point remains at the bottom of the distillation tower. The products from a crude distillation unit from top to bottom are liquefied petroleum gas (LPG), naphtha, gasoline, kerosene, diesel oils, fuel oil and residue. These products are further processed in various units to remove impurities such as sulfur and nitrogen. Residue from the crude oil is further processed in vacuum distillation unit (VDU). The products obtained from vacuum distillation units are light vaccine gas oil, heavy vacuum gas oil and base oils for manufacturing lubricants.

The global oil refinery market can be segmented on the basis of type of crude processed by the refinery into sweet crude and sour crude. Asia Pacific has the highest refining capacity followed by the North America. The refinery capacity of china has increased significantly. By the end of 2013, China’s refining capacity rose to 12.7 million barrels per day. China is the largest importer of crude oil and the increasing refinery capacity is due to the need to process such large amount of crude oil. China is planning to further increase its refining capacity in the coming year. The world’s largest refinery is owned by Reliance Industries. The refinery is situated in Jamnagar, India and has a capacity of 1.24 million barrels per day. Paraguana is the second largest refinery in the world and has a capacity of 955,000 barrels per day. Some of the factors driving the global oil refinery market are changing economies of developing countries, upgrades or revamps of a refinery to process new crude oil.

Some of the key players in the global oil refinery market are Abu Dhabi Oil Refining Company, Chevron Corporation, China National Petroleum Company, Conoco Phillips, ENI, Exxon Mobil, Hindustan Petroleum Corporation Limited, Total Oil, Kuwait Petroleum International, National Iranian Oil Company, Petroleos de Venezuela SA, National Iranian Oil Company, Essar Oil Limited, Saudi Aramco Lubricating Oil Refining Company and Reliance Industries Ltd.

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TMR’s data repository is continuously updated and revised by a team of research experts so that it always reflects the latest trends and information. With extensive research and analysis capabilities, Transparency Market Research employs rigorous primary and secondary research techniques to develop distinctive data sets and research material for business reports.

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Global Market Size on Heavy Oil: Market 2016, Production, Share, Sales, Revenue, Analysis & Innovative Revolution and Forecast 2021

This report studies sales (consumption) of Heavy Oil market, 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
Schlumberger
Halliburton
Total
COS
Saudi Aramco
Albemarle
Shell
Fractalsys
Husky
Devon

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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 Heavy Oil 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 Heavy Oil in each application, can be divided into
Application 1
Application 2
Application 3

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Table of Contents

Global Heavy Oil Sales Market Report 2016
1 Heavy Oil Overview
1.1 Product Overview and Scope of Heavy Oil
1.2 Classification of Heavy Oil
1.2.1 Type I
1.2.2 Type II
1.2.3 Type III
1.3 Application of Heavy Oil
1.3.1 Application 1
1.3.2 Application 2
1.3.3 Application 3
1.4 Heavy Oil 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 Heavy Oil (2011-2021)
1.5.1 Global Heavy Oil Sales and Growth Rate (2011-2021)
1.5.2 Global Heavy Oil Revenue and Growth Rate (2011-2021)

….

7 Global Heavy Oil Manufacturers Analysis
7.1 Schlumberger
7.1.1 Company Basic Information, Manufacturing Base and Competitors
7.1.2 Heavy Oil Product Type, Application and Specification
7.1.2.1 Type I
7.1.2.2 Type II
7.1.3 Schlumberger Heavy Oil Sales, Revenue, Price and Gross Margin (2011-2016)
7.1.4 Main Business/Business Overview
7.2 Halliburton
7.2.1 Company Basic Information, Manufacturing Base and Competitors
7.2.2 108 Product Type, Application and Specification
7.2.2.1 Type I
7.2.2.2 Type II
7.2.3 Halliburton Heavy Oil Sales, Revenue, Price and Gross Margin (2011-2016)
7.2.4 Main Business/Business Overview
7.3 Total
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 Total Heavy Oil Sales, Revenue, Price and Gross Margin (2011-2016)
7.3.4 Main Business/Business Overview
7.4 COS
7.4.1 Company Basic Information, Manufacturing Base and Competitors
7.4.2 Oct Product Type, Application and Specification
7.4.2.1 Type I
7.4.2.2 Type II
7.4.3 COS Heavy Oil Sales, Revenue, Price and Gross Margin (2011-2016)
7.4.4 Main Business/Business Overview
7.5 Saudi Aramco
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 Saudi Aramco Heavy Oil Sales, Revenue, Price and Gross Margin (2011-2016)
7.5.4 Main Business/Business Overview
7.6 Albemarle
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 Albemarle Heavy Oil Sales, Revenue, Price and Gross Margin (2011-2016)
7.6.4 Main Business/Business Overview
7.7 Shell
7.7.1 Company Basic Information, Manufacturing Base and Competitors
7.7.2 Chemical & Material Product Type, Application and Specification
7.7.2.1 Type I
7.7.2.2 Type II
7.7.3 Shell Heavy Oil Sales, Revenue, Price and Gross Margin (2011-2016)
7.7.4 Main Business/Business Overview
7.8 Fractalsys
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 Fractalsys Heavy Oil Sales, Revenue, Price and Gross Margin (2011-2016)
7.8.4 Main Business/Business Overview
7.9 Husky
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 Husky Heavy Oil Sales, Revenue, Price and Gross Margin (2011-2016)
7.9.4 Main Business/Business Overview
7.10 Devon
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 Devon Heavy Oil Sales, Revenue, Price and Gross Margin (2011-2016)
7.10.4 Main Business/Business Overview

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Lubricants – Friction Theories, Applications and a Global Scenario

The surfaces of rolling or moving parts in all kinds of machines rub against each other. The mutual rubbing of various parts of a machine imparts resistance their movement. This resistive force is called friction.

Friction causes a significant wear and tear to the surfaces of moving parts of machines. To reduce this force of resistance, some substances are introduced between the moving surfaces. These are called lubricants. The main purpose of lubricants is to keep the moving surfaces away from each other, so the friction and the resulting damage to the moving parts can be reduced.

The process of reducing the force of resistance or friction between moving surfaces of machines by the introduction of a lubricant is called lubrication.

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What causes friction?

There are many theories that explain why friction occurs between moving parts of machines.

The welding theory suggests that all metal surfaces, irrespective of how finely they are finished, have a series of troughs and crests. So, when such surfaces are rubbed against one another, only the crests from both surfaces come in actual contact. When the surfaces are rubbed under load, the local pressure at the crests is sufficient to deform the peaks and create welding junctions between them.

The electrostatic attraction theory suggests that the stick-slip phenomenon between the moving parts results in the flow of electrons, which produce charges of opposite polarities at the interface. These charges keep holding the surfaces with each other by virtue of electrostatic attraction.

Another theory, the mechanical interlocking theory, states that when the moving surfaces come in contact with each other, the crests and troughs of both surfaces interlock with each other, thus restricting the movement of one surface over the other.

How Lubricants work?

Some lubricants are applied as thick fluid films between the moving surfaces. These films separate the moving surfaces from each other, avoiding the direct contact between surfaces which consequently results in reduced friction.

In cases where a continuous film of lubricants cannot persist between moving machine parts, a material is applied that can get adsorbed on both surfaces by virtue of either physical or chemical forces. This thin film of adsorbed substances help the moving surfaces remain away from each other, at least upto the height where crests are present on the surfaces.

In some cases characterized by very high pressure and speed between moving machine parts, either a thick or a thin film fails to stick to the surfaces. This happens as the high local temperature attained at the surfaces decomposes or even vaporizes the lubricant films. To meet these conditions, special additives are added to commonly used lubricants, making them more durable.

Global Scenario:

Lubricants are as necessary as the machines themselves in any industrial segment. If it was not for the use and introduction of lubricants, of a variety of forms in a variety of products, industrial machines would have to be either repaired or replaced within few years of their use.

The wide range of applications of lubricants in a variety of industrial segments has made this industry a billion dollar global market. This industry has huge scope of growth in the coming years as well, owing to the growth of industries such as automotives.

The automotives industry has huge growth prospects in the Asia pacific region, a region where every industry seems to flourish in the current market scenario due to rapid economic development, abundant raw materials and cheap labor. This indirectly would lead to the growth of the lubricants industry in the coming times.

About Us

Transparency Market Research (TMR) is a market intelligence company, providing global business information reports and services. Our exclusive blend of quantitative forecasting and trends analysis provides forward-looking insight for thousands of decision makers. TMR’s experienced team of analysts, researchers, and consultants, use proprietary data sources and various tools and techniques to gather, and analyze information. Our business offerings represent the latest and the most reliable information indispensable for businesses to sustain a competitive edge.

Each TMR syndicated research report covers a different sector – such as pharmaceuticals, chemicals, energy, food & beverages, semiconductors, med-devices, consumer goods and technology. These reports provide in-depth analysis and deep segmentation to possible micro levels. With wider scope and stratified research methodology, TMR’s syndicated reports strive to provide clients to serve their overall research requirement.

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Biodiesel Market Advanced technologies & growth opportunities in global Industry by 2020.

Increasing environmental concerns and the need for energy independence have led to the growth of the global biodiesel market. Biodiesel is derivative of the vegetable oils extracted by oil seeds, although waste from animal fats and cooking oil can also be used. The oil is formed by combining methanol or ethanol with fatty acid molecules. Chemically, biodiesel is a mono alkyl ester. Biodiesel can be used in pure form or blended with petroleum diesel at any concentration in most injection pump diesel engine. Biodiesel is commonly produced by the transesterification of the vegetable oil or animal fat feedstock. Biodiesel has excellent lubricating properties and cetane ratings compared to low sulfur diesel fuels.

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Global biodiesel market is segmented on the basis of feedstock, application and geography. Railway, aircraft, heating oil, cleaning and generators are division on the basis of application. On the basis of feedstock, global biodiesel market is divided into animal fat, waste vegetable oil, algae, Jatropha and others. North America, Asia Pacific, Europe and Rest of the world are classification on the basis of geography for global biodiesel market. Across the globe, several countries are involved in the growing production and usage of biodiesel as a substitute energy source to oil and fossil fuel. Governments have implemented laws and policies as incentives to reduce oil dependency consequently increasing the usage of renewable energies. Engine wear, engine performance and fuel viscosity are important factors in the global biodiesel market. Variations in biodiesel energy density are more dependent on the feedstock used than the production process.

The biodiesel market provides huge opportunities in countries such as China, U.K. and India because of huge number of diesel vehicles and high diesel prices. The global biodiesel market is anticipated to face a pattern shift with the growing switch from existing feedstock efficiency. The growth of algae as newer feedstock sources is expected for biodiesel in the upcoming years. Transportation fuels still make up the major share of the biodiesel market. The European Union is the greatest producer of biodiesel with Germany and France being the top producers.

The global biodiesel market is in a period of transitional and rapid growth creating opportunity in upcoming years. The biodiesel markets in Europe and the United States have reached remarkable biodiesel production capacity levels but remain restrained by feedstock availability. In India, Brazil and China, key government policies are creating new opportunities for feedstock development, biodiesel production, feedstock development and export. Governments continue to actively support the development of alternative, sustainable, lower-cost feedstock such as jatropha, algae, castor, vegetable oil, tallow and other sustainable feedstock. Biodiesel industries of Argentina are booming as a result of domestic demand along with strong exports for global biodiesel market.

Some of the advantages of biodiesel over other alternative fuels are the infrastructure of the petroleum economy and ability to work in existing engines among others. Some of the restraint in global biodiesel market is availability of raw material and sudden drop in oil prices. US market is expected to provide significant growth potential for Malaysian biodiesel exports in upcoming years.

Some of the global players in global biodiesel market are Green Earth Fuels of Houston, LLC, ACCIONA Energy, American Energy Producer, China Biodiesel International Holding, Crimson Renewable Energy, Deerfield Energy, Imperium Renewables, Delta American Fuel and Western Dubuque Biodiesel among others.

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Global QYResearch: Gas Storage Water Heaters Market 2016 has received a massive boost in its Growth globally as the number of Emerging Companies has gradually increased

This report studies Gas Storage Water Heaters in Global market, especially in North America, Europe, China, Japan, Korea and Taiwan, focuses on top manufacturers in global market, with production, price, revenue and market share for each manufacturer, covering
A.O. Smith Corporation
Stiebel Eltron
Rheem
Bosch
Bradford White Corporation
Noritz Corporation
Atmor
Rinnai
Crompton Greaves Ltd.
Eccotemp Systems
Electrolux
Heat Transfer Products Inc.
Reliance Water Heater Company
Rinnai
Midea Group

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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 Gas Storage Water Heaters in these regions, from 2011 to 2021 (forecast), like
North America
Europe
China
Japan
Korea
Taiwan
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 Gas Storage Water Heaters in each application, can be divided into
Application 1
Application 2
Application 3

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Table of Contents

Global Gas Storage Water Heaters Market Research Report 2016
1 Gas Storage Water Heaters Market Overview
1.1 Product Overview and Scope of Gas Storage Water Heaters
1.2 Gas Storage Water Heaters Segment by Type
1.2.1 Global Production Market Share of Gas Storage Water Heaters by Type in 2015
1.2.2 Type I
1.2.3 Type II
1.2.4 Type III
1.3 Gas Storage Water Heaters Segment by Application
1.3.1 Gas Storage Water Heaters Consumption Market Share by Application in 2015
1.3.2 Application 1
1.3.3 Application 2
1.3.4 Application 3
1.4 Gas Storage Water Heaters 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 Korea Status and Prospect (2011-2021)
1.4.6 Taiwan Status and Prospect (2011-2021)
1.5 Global Market Size (Value) of Gas Storage Water Heaters (2011-2021)

….

7 Global Gas Storage Water Heaters Manufacturers Profiles/Analysis
7.1 A.O. Smith Corporation
7.1.1 Company Basic Information, Manufacturing Base and Its Competitors
7.1.2 Gas Storage Water Heaters Product Type, Application and Specification
7.1.2.1 Type I
7.1.2.2 Type II
7.1.3 A.O. Smith Corporation Gas Storage Water Heaters Production, Revenue, Price and Gross Margin (2015 and 2016)
7.1.4 Main Business/Business Overview
7.2 Stiebel Eltron
7.2.1 Company Basic Information, Manufacturing Base and Its Competitors
7.2.2 Gas Storage Water Heaters Product Type, Application and Specification
7.2.2.1 Type I
7.2.2.2 Type II
7.2.3 Stiebel Eltron Gas Storage Water Heaters Production, Revenue, Price and Gross Margin (2015 and 2016)
7.2.4 Main Business/Business Overview
7.3 Rheem
7.3.1 Company Basic Information, Manufacturing Base and Its Competitors
7.3.2 Gas Storage Water Heaters Product Type, Application and Specification
7.3.2.1 Type I
7.3.2.2 Type II
7.3.3 Rheem Gas Storage Water Heaters Production, Revenue, Price and Gross Margin (2015 and 2016)
7.3.4 Main Business/Business Overview
7.4 Bosch
7.4.1 Company Basic Information, Manufacturing Base and Its Competitors
7.4.2 Gas Storage Water Heaters Product Type, Application and Specification
7.4.2.1 Type I
7.4.2.2 Type II
7.4.3 Bosch Gas Storage Water Heaters Production, Revenue, Price and Gross Margin (2015 and 2016)
7.4.4 Main Business/Business Overview
7.5 Bradford White Corporation
7.5.1 Company Basic Information, Manufacturing Base and Its Competitors
7.5.2 Gas Storage Water Heaters Product Type, Application and Specification
7.5.2.1 Type I
7.5.2.2 Type II
7.5.3 Bradford White Corporation Gas Storage Water Heaters Production, Revenue, Price and Gross Margin (2015 and 2016)
7.5.4 Main Business/Business Overview
7.6 Noritz Corporation
7.6.1 Company Basic Information, Manufacturing Base and Its Competitors
7.6.2 Gas Storage Water Heaters Product Type, Application and Specification
7.6.2.1 Type I
7.6.2.2 Type II
7.6.3 Noritz Corporation Gas Storage Water Heaters Production, Revenue, Price and Gross Margin (2015 and 2016)
7.6.4 Main Business/Business Overview
7.7 Atmor
7.7.1 Company Basic Information, Manufacturing Base and Its Competitors
7.7.2 Gas Storage Water Heaters Product Type, Application and Specification
7.7.2.1 Type I
7.7.2.2 Type II
7.7.3 Atmor Gas Storage Water Heaters Production, Revenue, Price and Gross Margin (2015 and 2016)
7.7.4 Main Business/Business Overview
7.8 Rinnai
7.8.1 Company Basic Information, Manufacturing Base and Its Competitors
7.8.2 Gas Storage Water Heaters Product Type, Application and Specification
7.8.2.1 Type I
7.8.2.2 Type II
7.8.3 Rinnai Gas Storage Water Heaters Production, Revenue, Price and Gross Margin (2015 and 2016)
7.8.4 Main Business/Business Overview
7.9 Crompton Greaves Ltd.
7.9.1 Company Basic Information, Manufacturing Base and Its Competitors
7.9.2 Gas Storage Water Heaters Product Type, Application and Specification
7.9.2.1 Type I
7.9.2.2 Type II
7.9.3 Crompton Greaves Ltd. Gas Storage Water Heaters Production, Revenue, Price and Gross Margin (2015 and 2016)
7.9.4 Main Business/Business Overview
7.10 Eccotemp Systems
7.10.1 Company Basic Information, Manufacturing Base and Its Competitors
7.10.2 Gas Storage Water Heaters Product Type, Application and Specification
7.10.2.1 Type I
7.10.2.2 Type II
7.10.3 Eccotemp Systems Gas Storage Water Heaters Production, Revenue, Price and Gross Margin (2015 and 2016)
7.10.4 Main Business/Business Overview
7.11 Electrolux
7.12 Heat Transfer Products Inc.
7.13 Reliance Water Heater Company
7.14 Rinnai
7.15 Midea Group

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