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Global Electric Actuator Market Professional Survey Report 2017 (Petroleum, Water Treatment, Electric Power, Pharmaceutical, Others) By Product, Application, Manufacturer, Sales and Segmentation – Global QYResearch

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

This report focuses on top manufacturers in global market, with production, price, revenue and market share for each manufacturer, covering
Flowserve
Rotork
SIPOS Aktorik GmbH
ABB
EMG
DREHMO GmbH
BERNARD CONTROLS
SNNA
Biffi
Emerson
Tolomatic
Thomson
Shanghai Instrument Group
Yangzhou Aoruo Ke
Winsun
SND
Hengchun Electronics
Chuanyi Automation
Raga

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By types, the market can be split into
Electric Linear Actuator
Electric Rotary Actuator
Electric Valve Actuator
Others

By Application, the market can be split into
Petroleum
Water Treatment
Electric Power
Pharmaceutical
Others

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

View full report at http://globalqyresearch.com/global-electric-actuator-market-professional-survey-report-2017

Table of Contents

Global Electric Actuator Market Professional Survey Report 2017
1 Industry Overview of Electric Actuator
1.1 Definition and Specifications of Electric Actuator
1.1.1 Definition of Electric Actuator
1.1.2 Specifications of Electric Actuator
1.2 Classification of Electric Actuator
1.2.1 Electric Linear Actuator
1.2.2 Electric Rotary Actuator
1.2.3 Electric Valve Actuator
1.2.4 Others
1.3 Applications of Electric Actuator
1.3.1 Petroleum
1.3.2 Water Treatment
1.3.3 Electric Power
1.3.4 Pharmaceutical
1.3.5 Others
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 Electric Actuator
2.1 Raw Material and Suppliers
2.2 Manufacturing Cost Structure Analysis of Electric Actuator
2.3 Manufacturing Process Analysis of Electric Actuator
2.4 Industry Chain Structure of Electric Actuator

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

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

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

6 Global 2011-2016 Electric Actuator Segment Market Analysis (by Type)
6.1 Global 2011-2016 Electric Actuator Sales by Type
6.2 Different Types of Electric Actuator Product Interview Price Analysis
6.3 Different Types of Electric Actuator Product Driving Factors Analysis
6.3.1 Electric Linear Actuator of Electric Actuator Growth Driving Factor Analysis
6.3.2 Electric Rotary Actuator of Electric Actuator Growth Driving Factor Analysis
6.3.3 Electric Valve Actuator of Electric Actuator Growth Driving Factor Analysis
6.3.4 Others of Electric Actuator Growth Driving Factor Analysis

7 Global 2011-2016 Electric Actuator Segment Market Analysis (by Application)
7.1 Global 2011-2016 Electric Actuator Consumption by Application
7.2 Different Application of Electric Actuator Product Interview Price Analysis
7.3 Different Application of Electric Actuator Product Driving Factors Analysis
7.3.1 Petroleum of Electric Actuator Growth Driving Factor Analysis
7.3.2 Water Treatment of Electric Actuator Growth Driving Factor Analysis
7.3.3 Electric Power of Electric Actuator Growth Driving Factor Analysis
7.3.4 Pharmaceutical of Electric Actuator Growth Driving Factor Analysis
7.3.5 Others of Electric Actuator Growth Driving Factor Analysis

8 Major Manufacturers Analysis of Electric Actuator
8.1 Flowserve
8.1.1 Company Profile
8.1.2 Product Picture and Specifications
8.1.2.1 Electric Linear Actuator
8.1.2.2 Electric Rotary Actuator
8.1.2.3 Electric Valve Actuator
8.1.3 Flowserve 2015 Electric Actuator Sales, Ex-factory Price, Revenue, Gross Margin Analysis
8.1.4 Flowserve 2015 Electric Actuator Business Region Distribution Analysis
8.2 Rotork
8.2.1 Company Profile
8.2.2 Product Picture and Specifications
8.2.2.1 Electric Linear Actuator
8.2.2.2 Electric Rotary Actuator
8.2.2.3 Electric Valve Actuator
8.2.3 Rotork 2015 Electric Actuator Sales, Ex-factory Price, Revenue, Gross Margin Analysis
8.2.4 Rotork 2015 Electric Actuator Business Region Distribution Analysis
8.3 SIPOS Aktorik GmbH
8.3.1 Company Profile
8.3.2 Product Picture and Specifications
8.3.2.1 Electric Linear Actuator
8.3.2.2 Electric Rotary Actuator
8.3.2.3 Electric Valve Actuator
8.3.3 SIPOS Aktorik GmbH 2015 Electric Actuator Sales, Ex-factory Price, Revenue, Gross Margin Analysis
8.3.4 SIPOS Aktorik GmbH 2015 Electric Actuator Business Region Distribution Analysis
8.4 ABB
8.4.1 Company Profile
8.4.2 Product Picture and Specifications
8.4.2.1 Electric Linear Actuator
8.4.2.2 Electric Rotary Actuator
8.4.2.3 Electric Valve Actuator
8.4.3 ABB 2015 Electric Actuator Sales, Ex-factory Price, Revenue, Gross Margin Analysis
8.4.4 ABB 2015 Electric Actuator Business Region Distribution Analysis
8.5 EMG
8.5.1 Company Profile
8.5.2 Product Picture and Specifications
8.5.2.1 Electric Linear Actuator
8.5.2.2 Electric Rotary Actuator
8.5.2.3 Electric Valve Actuator
8.5.3 EMG 2015 Electric Actuator Sales, Ex-factory Price, Revenue, Gross Margin Analysis
8.5.4 EMG 2015 Electric Actuator Business Region Distribution Analysis
8.6 DREHMO GmbH
8.6.1 Company Profile
8.6.2 Product Picture and Specifications
8.6.2.1 Electric Linear Actuator
8.6.2.2 Electric Rotary Actuator
8.6.2.3 Electric Valve Actuator
8.6.3 DREHMO GmbH 2015 Electric Actuator Sales, Ex-factory Price, Revenue, Gross Margin Analysis
8.6.4 DREHMO GmbH 2015 Electric Actuator Business Region Distribution Analysis
8.7 BERNARD CONTROLS
8.7.1 Company Profile
8.7.2 Product Picture and Specifications
8.7.2.1 Electric Linear Actuator
8.7.2.2 Electric Rotary Actuator
8.7.2.3 Electric Valve Actuator
8.7.3 BERNARD CONTROLS 2015 Electric Actuator Sales, Ex-factory Price, Revenue, Gross Margin Analysis
8.7.4 BERNARD CONTROLS 2015 Electric Actuator Business Region Distribution Analysis
8.8 SNNA
8.8.1 Company Profile
8.8.2 Product Picture and Specifications
8.8.2.1 Electric Linear Actuator
8.8.2.2 Electric Rotary Actuator
8.8.2.3 Electric Valve Actuator
8.8.3 SNNA 2015 Electric Actuator Sales, Ex-factory Price, Revenue, Gross Margin Analysis
8.8.4 SNNA 2015 Electric Actuator Business Region Distribution Analysis
8.9 Biffi
8.9.1 Company Profile
8.9.2 Product Picture and Specifications
8.9.2.1 Electric Linear Actuator
8.9.2.2 Electric Rotary Actuator
8.9.2.3 Electric Valve Actuator
8.9.3 Biffi 2015 Electric Actuator Sales, Ex-factory Price, Revenue, Gross Margin Analysis
8.9.4 Biffi 2015 Electric Actuator Business Region Distribution Analysis
8.10 Emerson
8.10.1 Company Profile
8.10.2 Product Picture and Specifications
8.10.2.1 Electric Linear Actuator
8.10.2.2 Electric Rotary Actuator
8.10.2.3 Electric Valve Actuator
8.10.3 Emerson 2015 Electric Actuator Sales, Ex-factory Price, Revenue, Gross Margin Analysis
8.10.4 Emerson 2015 Electric Actuator Business Region Distribution Analysis
8.11 Tolomatic
8.12 Thomson
8.13 Shanghai Instrument Group
8.14 Yangzhou Aoruo Ke
8.15 Winsun
8.16 SND
8.17 Hengchun Electronics
8.18 Chuanyi Automation
8.19 Raga

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

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

11 Consumers Analysis of Electric Actuator
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 Electric Actuator Market Professional Survey Report 2017

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Global Fuel Cell Catalyst Market Research Report 2017 (Methanol, Hydrogen, Reformate, Other) Market Capacity, Growth and Dynamics, Developments, Analysis & Heavy Investments

This report studies Global Fuel Cell Catalyst Market 2017, 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

JM
TKK
E-TEK
BASF
Umicore

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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 Cell Catalyst 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
Platinum Based
Platinum Ruthenium Alloy Based
Other
Split by application, this report focuses on consumption, market share and growth rate of Fuel Cell Catalyst in each application, can be divided into
Methanol Fuel Cell Catalyst
Hydrogen Fuel Cell Catalyst
Reformate Fuel Cell Catalyst
Other

View full report at http://globalqyresearch.com/global-fuel-cell-catalyst-market-research-report-2017

Table of Contents

Global Fuel Cell Catalyst Market Research Report 2017
1 Fuel Cell Catalyst Market Overview
1.1 Product Overview and Scope of Fuel Cell Catalyst
1.2 Fuel Cell Catalyst Segment by Type
1.2.1 Global Production Market Share of Fuel Cell Catalyst by Type in 2015
1.2.2 Platinum Based
1.2.3 Platinum Ruthenium Alloy Based
1.2.4 Other
1.3 Fuel Cell Catalyst Segment by Application
1.3.1 Fuel Cell Catalyst Consumption Market Share by Application in 2015
1.3.2 Methanol Fuel Cell Catalyst
1.3.3 Hydrogen Fuel Cell Catalyst
1.3.4 Reformate Fuel Cell Catalyst
1.3.5 Other
1.4 Fuel Cell Catalyst Market by Region
1.4.1 North America Status and Prospect (2012-2022)
1.4.2 Europe Status and Prospect (2012-2022)
1.4.3 China Status and Prospect (2012-2022)
1.4.4 Japan Status and Prospect (2012-2022)
1.4.5 Southeast Asia Status and Prospect (2012-2022)
1.4.6 India Status and Prospect (2012-2022)
1.5 Global Market Size (Value) of Fuel Cell Catalyst (2012-2022)

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

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

4 Global Fuel Cell Catalyst Supply (Production), Consumption, Export, Import by Regions (2012-2017)
4.1 Global Fuel Cell Catalyst Consumption by Regions (2012-2017)
4.2 North America Fuel Cell Catalyst Production, Consumption, Export, Import (2012-2017)
4.3 Europe Fuel Cell Catalyst Production, Consumption, Export, Import (2012-2017)
4.4 China Fuel Cell Catalyst Production, Consumption, Export, Import (2012-2017)
4.5 Japan Fuel Cell Catalyst Production, Consumption, Export, Import (2012-2017)
4.6 Southeast Asia Fuel Cell Catalyst Production, Consumption, Export, Import (2012-2017)
4.7 India Fuel Cell Catalyst Production, Consumption, Export, Import (2012-2017)

5 Global Fuel Cell Catalyst Production, Revenue (Value), Price Trend by Type
5.1 Global Fuel Cell Catalyst Production and Market Share by Type (2012-2017)
5.2 Global Fuel Cell Catalyst Revenue and Market Share by Type (2012-2017)
5.3 Global Fuel Cell Catalyst Price by Type (2012-2017)
5.4 Global Fuel Cell Catalyst Production Growth by Type (2012-2017)

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

7 Global Fuel Cell Catalyst Manufacturers Profiles/Analysis
7.1 JM
7.1.1 Company Basic Information, Manufacturing Base and Its Competitors
7.1.2 Fuel Cell Catalyst Product Type, Application and Specification
7.1.2.1 Platinum Based
7.1.2.2 Platinum Ruthenium Alloy Based
7.1.3 JM Fuel Cell Catalyst Production, Revenue, Price and Gross Margin (2015 and 2016)
7.1.4 Main Business/Business Overview
7.2 TKK
7.2.1 Company Basic Information, Manufacturing Base and Its Competitors
7.2.2 Fuel Cell Catalyst Product Type, Application and Specification
7.2.2.1 Platinum Based
7.2.2.2 Platinum Ruthenium Alloy Based
7.2.3 TKK Fuel Cell Catalyst Production, Revenue, Price and Gross Margin (2015 and 2016)
7.2.4 Main Business/Business Overview
7.3 E-TEK
7.3.1 Company Basic Information, Manufacturing Base and Its Competitors
7.3.2 Fuel Cell Catalyst Product Type, Application and Specification
7.3.2.1 Platinum Based
7.3.2.2 Platinum Ruthenium Alloy Based
7.3.3 E-TEK Fuel Cell Catalyst Production, Revenue, Price and Gross Margin (2015 and 2016)
7.3.4 Main Business/Business Overview
7.4 BASF
7.4.1 Company Basic Information, Manufacturing Base and Its Competitors
7.4.2 Fuel Cell Catalyst Product Type, Application and Specification
7.4.2.1 Platinum Based
7.4.2.2 Platinum Ruthenium Alloy Based
7.4.3 BASF Fuel Cell Catalyst Production, Revenue, Price and Gross Margin (2015 and 2016)
7.4.4 Main Business/Business Overview
7.5 Umicore
7.5.1 Company Basic Information, Manufacturing Base and Its Competitors
7.5.2 Fuel Cell Catalyst Product Type, Application and Specification
7.5.2.1 Platinum Based
7.5.2.2 Platinum Ruthenium Alloy Based
7.5.3 Umicore Fuel Cell Catalyst Production, Revenue, Price and Gross Margin (2015 and 2016)
7.5.4 Main Business/Business Overview

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

9 Industrial Chain, Sourcing Strategy and Downstream Buyers
9.1 Fuel Cell Catalyst Industrial Chain Analysis
9.2 Upstream Raw Materials Sourcing
9.3 Raw Materials Sources of Fuel Cell Catalyst Major Manufacturers in 2015
9.4 Downstream Buyers

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

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

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

13 Research Findings and Conclusion

14 Appendix

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Global Diesel Portable Generators Market Survey Report 2017 (Lighting, Construction , Traffic, Other) Market Study by Maximal Popularity, Emerging Authority, Sales, Countries, Companies, Profits & Forecasts

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

This report focuses on top manufacturers in global market, with production, price, revenue and market share for each manufacturer, covering
Briggs & Stratton
Cummins
Generac Holdings
Honda Motor
Kohler
Caterpillar
Eaton
GE
Honeywell International
Perkins
Pramac

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By types, the market can be split into
Alternating Current (Ac)
Direct Current (Dc)

By Application, the market can be split into
Lighting
Construction
Traffic
Other

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

View full report at http://globalqyresearch.com/global-diesel-portable-generators-market-professional-survey-report-2017

Table of Contents

Global Diesel Portable Generators Market Professional Survey Report 2017
1 Industry Overview of Diesel Portable Generators
1.1 Definition and Specifications of Diesel Portable Generators
1.1.1 Definition of Diesel Portable Generators
1.1.2 Specifications of Diesel Portable Generators
1.2 Classification of Diesel Portable Generators
1.2.1 Alternating Current (Ac)
1.2.2 Direct Current (Dc)
1.3 Applications of Diesel Portable Generators
1.3.1 Lighting
1.3.2 Construction
1.3.3 Traffic
1.3.4 Other
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 Diesel Portable Generators
2.1 Raw Material and Suppliers
2.2 Manufacturing Cost Structure Analysis of Diesel Portable Generators
2.3 Manufacturing Process Analysis of Diesel Portable Generators
2.4 Industry Chain Structure of Diesel Portable Generators

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

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

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

6 Global 2011-2016 Diesel Portable Generators Segment Market Analysis (by Type)
6.1 Global 2011-2016 Diesel Portable Generators Sales by Type
6.2 Different Types of Diesel Portable Generators Product Interview Price Analysis
6.3 Different Types of Diesel Portable Generators Product Driving Factors Analysis
6.3.1 Alternating Current (Ac) of Diesel Portable Generators Growth Driving Factor Analysis
6.3.2 Direct Current (Dc) of Diesel Portable Generators Growth Driving Factor Analysis

7 Global 2011-2016 Diesel Portable Generators Segment Market Analysis (by Application)
7.1 Global 2011-2016 Diesel Portable Generators Consumption by Application
7.2 Different Application of Diesel Portable Generators Product Interview Price Analysis
7.3 Different Application of Diesel Portable Generators Product Driving Factors Analysis
7.3.1 Lighting of Diesel Portable Generators Growth Driving Factor Analysis
7.3.2 Construction of Diesel Portable Generators Growth Driving Factor Analysis
7.3.3 Traffic of Diesel Portable Generators Growth Driving Factor Analysis
7.3.4 Other of Diesel Portable Generators Growth Driving Factor Analysis

8 Major Manufacturers Analysis of Diesel Portable Generators
8.1 Briggs & Stratton
8.1.1 Company Profile
8.1.2 Product Picture and Specifications
8.1.2.1 Alternating Current (Ac)
8.1.2.2 Direct Current (Dc)
8.1.3 Briggs & Stratton 2015 Diesel Portable Generators Sales, Ex-factory Price, Revenue, Gross Margin Analysis
8.1.4 Briggs & Stratton 2015 Diesel Portable Generators Business Region Distribution Analysis
8.2 Cummins
8.2.1 Company Profile
8.2.2 Product Picture and Specifications
8.2.2.1 Alternating Current (Ac)
8.2.2.2 Direct Current (Dc)
8.2.3 Cummins 2015 Diesel Portable Generators Sales, Ex-factory Price, Revenue, Gross Margin Analysis
8.2.4 Cummins 2015 Diesel Portable Generators Business Region Distribution Analysis
8.3 Generac Holdings
8.3.1 Company Profile
8.3.2 Product Picture and Specifications
8.3.2.1 Alternating Current (Ac)
8.3.2.2 Direct Current (Dc)
8.3.3 Generac Holdings 2015 Diesel Portable Generators Sales, Ex-factory Price, Revenue, Gross Margin Analysis
8.3.4 Generac Holdings 2015 Diesel Portable Generators Business Region Distribution Analysis
8.4 Honda Motor
8.4.1 Company Profile
8.4.2 Product Picture and Specifications
8.4.2.1 Alternating Current (Ac)
8.4.2.2 Direct Current (Dc)
8.4.3 Honda Motor 2015 Diesel Portable Generators Sales, Ex-factory Price, Revenue, Gross Margin Analysis
8.4.4 Honda Motor 2015 Diesel Portable Generators Business Region Distribution Analysis
8.5 Kohler
8.5.1 Company Profile
8.5.2 Product Picture and Specifications
8.5.2.1 Alternating Current (Ac)
8.5.2.2 Direct Current (Dc)
8.5.3 Kohler 2015 Diesel Portable Generators Sales, Ex-factory Price, Revenue, Gross Margin Analysis
8.5.4 Kohler 2015 Diesel Portable Generators Business Region Distribution Analysis
8.6 Caterpillar
8.6.1 Company Profile
8.6.2 Product Picture and Specifications
8.6.2.1 Alternating Current (Ac)
8.6.2.2 Direct Current (Dc)
8.6.3 Caterpillar 2015 Diesel Portable Generators Sales, Ex-factory Price, Revenue, Gross Margin Analysis
8.6.4 Caterpillar 2015 Diesel Portable Generators Business Region Distribution Analysis
8.7 Eaton
8.7.1 Company Profile
8.7.2 Product Picture and Specifications
8.7.2.1 Alternating Current (Ac)
8.7.2.2 Direct Current (Dc)
8.7.3 Eaton 2015 Diesel Portable Generators Sales, Ex-factory Price, Revenue, Gross Margin Analysis
8.7.4 Eaton 2015 Diesel Portable Generators Business Region Distribution Analysis
8.8 GE
8.8.1 Company Profile
8.8.2 Product Picture and Specifications
8.8.2.1 Alternating Current (Ac)
8.8.2.2 Direct Current (Dc)
8.8.3 GE 2015 Diesel Portable Generators Sales, Ex-factory Price, Revenue, Gross Margin Analysis
8.8.4 GE 2015 Diesel Portable Generators Business Region Distribution Analysis
8.9 Honeywell International
8.9.1 Company Profile
8.9.2 Product Picture and Specifications
8.9.2.1 Alternating Current (Ac)
8.9.2.2 Direct Current (Dc)
8.9.3 Honeywell International 2015 Diesel Portable Generators Sales, Ex-factory Price, Revenue, Gross Margin Analysis
8.9.4 Honeywell International 2015 Diesel Portable Generators Business Region Distribution Analysis
8.10 Perkins
8.10.1 Company Profile
8.10.2 Product Picture and Specifications
8.10.2.1 Alternating Current (Ac)
8.10.2.2 Direct Current (Dc)
8.10.3 Perkins 2015 Diesel Portable Generators Sales, Ex-factory Price, Revenue, Gross Margin Analysis
8.10.4 Perkins 2015 Diesel Portable Generators Business Region Distribution Analysis
8.11 Pramac

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

10 Diesel Portable Generators Marketing Type Analysis
10.1 Diesel Portable Generators Regional Marketing Type Analysis
10.2 Diesel Portable Generators International Trade Type Analysis
10.3 Traders or Distributors with Contact Information of Diesel Portable Generators by Regions
10.4 Diesel Portable Generators Supply Chain Analysis

11 Consumers Analysis of Diesel Portable Generators
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 Diesel Portable Generators Market Professional Survey Report 2017

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Global QYResearch: Power Line Communication (LPC) System Sales Market 2016 has received a massive boost in its Growth globally as the number of Emerging Companies has gradually increased

This report studies sales (consumption) of Global Power Line Communication (LPC) System Market 2016, especially in United States, China, Europe, Japan, focuses on top players in these regions/countries, with sales, price, revenue and market share for each player in these regions, covering
Echelon Corp
Maxim Integrated Product
Semitech Semiconductor Pte
ST&T Corp
NXP Semiconductors NV
Yitran Communications
Alcatel-Lucent
Broadcom
Marvell Technology Group
Texas Instruments

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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 Power Line Communication (LPC) System 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 Power Line Communication (LPC) System in each application, can be divided into
Application 1
Application 2
Application 3

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Table of Contents

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

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

3 United States Power Line Communication (LPC) System (Volume, Value and Sales Price)
3.1 United States Power Line Communication (LPC) System Sales and Value (2011-2016)
3.1.1 United States Power Line Communication (LPC) System Sales and Growth Rate (2011-2016)
3.1.2 United States Power Line Communication (LPC) System Revenue and Growth Rate (2011-2016)
3.1.3 United States Power Line Communication (LPC) System Sales Price Trend (2011-2016)
3.2 United States Power Line Communication (LPC) System Sales and Market Share by Manufacturers
3.3 United States Power Line Communication (LPC) System Sales and Market Share by Type
3.4 United States Power Line Communication (LPC) System Sales and Market Share by Application

4 China Power Line Communication (LPC) System (Volume, Value and Sales Price)
4.1 China Power Line Communication (LPC) System Sales and Value (2011-2016)
4.1.1 China Power Line Communication (LPC) System Sales and Growth Rate (2011-2016)
4.1.2 China Power Line Communication (LPC) System Revenue and Growth Rate (2011-2016)
4.1.3 China Power Line Communication (LPC) System Sales Price Trend (2011-2016)
4.2 China Power Line Communication (LPC) System Sales and Market Share by Manufacturers
4.3 China Power Line Communication (LPC) System Sales and Market Share by Type
4.4 China Power Line Communication (LPC) System Sales and Market Share by Application

5 Europe Power Line Communication (LPC) System (Volume, Value and Sales Price)
5.1 Europe Power Line Communication (LPC) System Sales and Value (2011-2016)
5.1.1 Europe Power Line Communication (LPC) System Sales and Growth Rate (2011-2016)
5.1.2 Europe Power Line Communication (LPC) System Revenue and Growth Rate (2011-2016)
5.1.3 Europe Power Line Communication (LPC) System Sales Price Trend (2011-2016)
5.2 Europe Power Line Communication (LPC) System Sales and Market Share by Manufacturers
5.3 Europe Power Line Communication (LPC) System Sales and Market Share by Type
5.4 Europe Power Line Communication (LPC) System Sales and Market Share by Application

6 Japan Power Line Communication (LPC) System (Volume, Value and Sales Price)
6.1 Japan Power Line Communication (LPC) System Sales and Value (2011-2016)
6.1.1 Japan Power Line Communication (LPC) System Sales and Growth Rate (2011-2016)
6.1.2 Japan Power Line Communication (LPC) System Revenue and Growth Rate (2011-2016)
6.1.3 Japan Power Line Communication (LPC) System Sales Price Trend (2011-2016)
6.2 Japan Power Line Communication (LPC) System Sales and Market Share by Manufacturers
6.3 Japan Power Line Communication (LPC) System Sales and Market Share by Type
6.4 Japan Power Line Communication (LPC) System Sales and Market Share by Application

7 Global Power Line Communication (LPC) System Manufacturers Analysis
7.1 Echelon Corp
7.1.1 Company Basic Information, Manufacturing Base and Competitors
7.1.2 Power Line Communication (LPC) System Product Type, Application and Specification
7.1.2.1 Type I
7.1.2.2 Type II
7.1.3 Echelon Corp Power Line Communication (LPC) System Sales, Revenue, Price and Gross Margin (2011-2016)
7.1.4 Main Business/Business Overview
7.2 Maxim Integrated Product
7.2.1 Company Basic Information, Manufacturing Base and Competitors
7.2.2 102 Product Type, Application and Specification
7.2.2.1 Type I
7.2.2.2 Type II
7.2.3 Maxim Integrated Product Power Line Communication (LPC) System Sales, Revenue, Price and Gross Margin (2011-2016)
7.2.4 Main Business/Business Overview
7.3 Semitech Semiconductor Pte
7.3.1 Company Basic Information, Manufacturing Base and Competitors
7.3.2 125 Product Type, Application and Specification
7.3.2.1 Type I
7.3.2.2 Type II
7.3.3 Semitech Semiconductor Pte Power Line Communication (LPC) System Sales, Revenue, Price and Gross Margin (2011-2016)
7.3.4 Main Business/Business Overview
7.4 ST&T Corp
7.4.1 Company Basic Information, Manufacturing Base and Competitors
7.4.2 Dec Product Type, Application and Specification
7.4.2.1 Type I
7.4.2.2 Type II
7.4.3 ST&T Corp Power Line Communication (LPC) System Sales, Revenue, Price and Gross Margin (2011-2016)
7.4.4 Main Business/Business Overview
7.5 NXP Semiconductors NV
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 NXP Semiconductors NV Power Line Communication (LPC) System Sales, Revenue, Price and Gross Margin (2011-2016)
7.5.4 Main Business/Business Overview
7.6 Yitran Communications
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 Yitran Communications Power Line Communication (LPC) System Sales, Revenue, Price and Gross Margin (2011-2016)
7.6.4 Main Business/Business Overview
7.7 Alcatel-Lucent
7.7.1 Company Basic Information, Manufacturing Base and Competitors
7.7.2 Energy Product Type, Application and Specification
7.7.2.1 Type I
7.7.2.2 Type II
7.7.3 Alcatel-Lucent Power Line Communication (LPC) System Sales, Revenue, Price and Gross Margin (2011-2016)
7.7.4 Main Business/Business Overview
7.8 Broadcom
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 Broadcom Power Line Communication (LPC) System Sales, Revenue, Price and Gross Margin (2011-2016)
7.8.4 Main Business/Business Overview
7.9 Marvell Technology Group
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 Marvell Technology Group Power Line Communication (LPC) System Sales, Revenue, Price and Gross Margin (2011-2016)
7.9.4 Main Business/Business Overview
7.10 Texas Instruments
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 Texas Instruments Power Line Communication (LPC) System Sales, Revenue, Price and Gross Margin (2011-2016)
7.10.4 Main Business/Business Overview

8 Power Line Communication (LPC) System Maufacturing Cost Analysis
8.1 Power Line Communication (LPC) System Key Raw Materials Analysis
8.1.1 Key Raw Materials
8.1.2 Price Trend of Key Raw Materials
8.1.3 Key Suppliers of Raw Materials
8.1.4 Market Concentration Rate of Raw Materials
8.2 Proportion of Manufacturing Cost Structure
8.2.1 Raw Materials
8.2.2 Labor Cost
8.2.3 Manufacturing Process Analysis of Power Line Communication (LPC) System

9 Industrial Chain, Sourcing Strategy and Downstream Buyers
9.1 Power Line Communication (LPC) System Industrial Chain Analysis
9.2 Upstream Raw Materials Sourcing
9.3 Raw Materials Sources of Power Line Communication (LPC) System Major Manufacturers in 2015
9.4 Downstream Buyers

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

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

12 Global Power Line Communication (LPC) System Market Forecast (2016-2021)
12.1 Global Power Line Communication (LPC) System Sales, Revenue Forecast (2016-2021)
12.2 Global Power Line Communication (LPC) System Sales Forecast by Regions (2016-2021)
12.3 Global Power Line Communication (LPC) System Sales Forecast by Type (2016-2021)
12.4 Global Power Line Communication (LPC) System Sales Forecast by Application (2016-2021)

13 Appendix

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Global QYResearch: Residential Diesel Portable Generator Market 2016 by Manufacturers, Regions, Type and Application, Forecast to 2021

This report studies Global Residential Diesel Portable Generator 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
Briggs & Stratton
Cummins
Generac Holdings
Honda Motor
Kohler
Caterpillar
Eaton
GE
Honeywell International
Perkins

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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 Residential Diesel Portable Generator 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 Residential Diesel Portable Generator in each application, can be divided into
Application 1
Application 2
Application 3

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Table of Contents

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

…..

7 Global Residential Diesel Portable Generator Manufacturers Profiles/Analysis
7.1 Briggs & Stratton
7.1.1 Company Basic Information, Manufacturing Base and Its Competitors
7.1.2 Residential Diesel Portable Generator Product Type, Application and Specification
7.1.2.1 Type I
7.1.2.2 Type II
7.1.3 Briggs & Stratton Residential Diesel Portable Generator Production, Revenue, Price and Gross Margin (2015 and 2016)
7.1.4 Main Business/Business Overview
7.2 Cummins
7.2.1 Company Basic Information, Manufacturing Base and Its Competitors
7.2.2 Residential Diesel Portable Generator Product Type, Application and Specification
7.2.2.1 Type I
7.2.2.2 Type II
7.2.3 Cummins Residential Diesel Portable Generator Production, Revenue, Price and Gross Margin (2015 and 2016)
7.2.4 Main Business/Business Overview
7.3 Generac Holdings
7.3.1 Company Basic Information, Manufacturing Base and Its Competitors
7.3.2 Residential Diesel Portable Generator Product Type, Application and Specification
7.3.2.1 Type I
7.3.2.2 Type II
7.3.3 Generac Holdings Residential Diesel Portable Generator Production, Revenue, Price and Gross Margin (2015 and 2016)
7.3.4 Main Business/Business Overview
7.4 Honda Motor
7.4.1 Company Basic Information, Manufacturing Base and Its Competitors
7.4.2 Residential Diesel Portable Generator Product Type, Application and Specification
7.4.2.1 Type I
7.4.2.2 Type II
7.4.3 Honda Motor Residential Diesel Portable Generator Production, Revenue, Price and Gross Margin (2015 and 2016)
7.4.4 Main Business/Business Overview
7.5 Kohler
7.5.1 Company Basic Information, Manufacturing Base and Its Competitors
7.5.2 Residential Diesel Portable Generator Product Type, Application and Specification
7.5.2.1 Type I
7.5.2.2 Type II
7.5.3 Kohler Residential Diesel Portable Generator Production, Revenue, Price and Gross Margin (2015 and 2016)
7.5.4 Main Business/Business Overview
7.6 Caterpillar
7.6.1 Company Basic Information, Manufacturing Base and Its Competitors
7.6.2 Residential Diesel Portable Generator Product Type, Application and Specification
7.6.2.1 Type I
7.6.2.2 Type II
7.6.3 Caterpillar Residential Diesel Portable Generator Production, Revenue, Price and Gross Margin (2015 and 2016)
7.6.4 Main Business/Business Overview
7.7 Eaton
7.7.1 Company Basic Information, Manufacturing Base and Its Competitors
7.7.2 Residential Diesel Portable Generator Product Type, Application and Specification
7.7.2.1 Type I
7.7.2.2 Type II
7.7.3 Eaton Residential Diesel Portable Generator Production, Revenue, Price and Gross Margin (2015 and 2016)
7.7.4 Main Business/Business Overview
7.8 GE
7.8.1 Company Basic Information, Manufacturing Base and Its Competitors
7.8.2 Residential Diesel Portable Generator Product Type, Application and Specification
7.8.2.1 Type I
7.8.2.2 Type II
7.8.3 GE Residential Diesel Portable Generator Production, Revenue, Price and Gross Margin (2015 and 2016)
7.8.4 Main Business/Business Overview
7.9 Honeywell International
7.9.1 Company Basic Information, Manufacturing Base and Its Competitors
7.9.2 Residential Diesel Portable Generator Product Type, Application and Specification
7.9.2.1 Type I
7.9.2.2 Type II
7.9.3 Honeywell International Residential Diesel Portable Generator Production, Revenue, Price and Gross Margin (2015 and 2016)
7.9.4 Main Business/Business Overview
7.10 Perkins
7.10.1 Company Basic Information, Manufacturing Base and Its Competitors
7.10.2 Residential Diesel Portable Generator Product Type, Application and Specification
7.10.2.1 Type I
7.10.2.2 Type II
7.10.3 Perkins Residential Diesel Portable Generator Production, Revenue, Price and Gross Margin (2015 and 2016)
7.10.4 Main Business/Business Overview

Continue…

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Global QYResearch: Turbo Generator Market 2016 – by Manufacturers, Regions, Type and Application, Forecast to 2021

This report studies Global Turbo Generator 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
Alstom
Dongfang Electric
Harbin Electric
Mitsubishi
Siemens
Toshiba
Andritz
Bharat Heavy Electricals
Brush Turbogenerator
GE

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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 Turbo Generator 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 Turbo Generator in each application, can be divided into
Application 1
Application 2
Application 3

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Table of Contents

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

….

7 Global Turbo Generator Manufacturers Profiles/Analysis
7.1 Alstom
7.1.1 Company Basic Information, Manufacturing Base and Its Competitors
7.1.2 Turbo Generator Product Type, Application and Specification
7.1.2.1 Type I
7.1.2.2 Type II
7.1.3 Alstom Turbo Generator Production, Revenue, Price and Gross Margin (2015 and 2016)
7.1.4 Main Business/Business Overview
7.2 Dongfang Electric
7.2.1 Company Basic Information, Manufacturing Base and Its Competitors
7.2.2 Turbo Generator Product Type, Application and Specification
7.2.2.1 Type I
7.2.2.2 Type II
7.2.3 Dongfang Electric Turbo Generator Production, Revenue, Price and Gross Margin (2015 and 2016)
7.2.4 Main Business/Business Overview
7.3 Harbin Electric
7.3.1 Company Basic Information, Manufacturing Base and Its Competitors
7.3.2 Turbo Generator Product Type, Application and Specification
7.3.2.1 Type I
7.3.2.2 Type II
7.3.3 Harbin Electric Turbo Generator Production, Revenue, Price and Gross Margin (2015 and 2016)
7.3.4 Main Business/Business Overview
7.4 Mitsubishi
7.4.1 Company Basic Information, Manufacturing Base and Its Competitors
7.4.2 Turbo Generator Product Type, Application and Specification
7.4.2.1 Type I
7.4.2.2 Type II
7.4.3 Mitsubishi Turbo Generator Production, Revenue, Price and Gross Margin (2015 and 2016)
7.4.4 Main Business/Business Overview
7.5 Siemens
7.5.1 Company Basic Information, Manufacturing Base and Its Competitors
7.5.2 Turbo Generator Product Type, Application and Specification
7.5.2.1 Type I
7.5.2.2 Type II
7.5.3 Siemens Turbo Generator Production, Revenue, Price and Gross Margin (2015 and 2016)
7.5.4 Main Business/Business Overview
7.6 Toshiba
7.6.1 Company Basic Information, Manufacturing Base and Its Competitors
7.6.2 Turbo Generator Product Type, Application and Specification
7.6.2.1 Type I
7.6.2.2 Type II
7.6.3 Toshiba Turbo Generator Production, Revenue, Price and Gross Margin (2015 and 2016)
7.6.4 Main Business/Business Overview
7.7 Andritz
7.7.1 Company Basic Information, Manufacturing Base and Its Competitors
7.7.2 Turbo Generator Product Type, Application and Specification
7.7.2.1 Type I
7.7.2.2 Type II
7.7.3 Andritz Turbo Generator Production, Revenue, Price and Gross Margin (2015 and 2016)
7.7.4 Main Business/Business Overview
7.8 Bharat Heavy Electricals
7.8.1 Company Basic Information, Manufacturing Base and Its Competitors
7.8.2 Turbo Generator Product Type, Application and Specification
7.8.2.1 Type I
7.8.2.2 Type II
7.8.3 Bharat Heavy Electricals Turbo Generator Production, Revenue, Price and Gross Margin (2015 and 2016)
7.8.4 Main Business/Business Overview
7.9 Brush Turbogenerator
7.9.1 Company Basic Information, Manufacturing Base and Its Competitors
7.9.2 Turbo Generator Product Type, Application and Specification
7.9.2.1 Type I
7.9.2.2 Type II
7.9.3 Brush Turbogenerator Turbo Generator Production, Revenue, Price and Gross Margin (2015 and 2016)
7.9.4 Main Business/Business Overview
7.10 GE
7.10.1 Company Basic Information, Manufacturing Base and Its Competitors
7.10.2 Turbo Generator Product Type, Application and Specification
7.10.2.1 Type I
7.10.2.2 Type II
7.10.3 GE Turbo Generator Production, Revenue, Price and Gross Margin (2015 and 2016)
7.10.4 Main Business/Business Overview

Continue…

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Global Hydrogen Generators Market: On-site Generation to Remain Preferred Mode of Procurement, says TMR

The competitive landscape of the global hydrogen generators is highly consolidated, with the top 5 companies–Linde AG, Air Products and Chemicals Inc., Praxair Technology Inc., Hydrogenics Corporation, Air Liquide-accounting for more than 95% of the market in 2014. Most companies operating in the global hydrogen generators market focus on generation and distribution. However, leading players such as Linde AG and Air Liquide have successfully achieved backward integration of the market’s supply chain, giving them considerable control over their pricing structure.

According to Transparency Market Research (TMR), the revenue of the global hydrogen generators market is expected to reach US$833.8 mn by the end of 2016 and further rise to US$1.2 bn by the end of 2024.

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North America, Europe to Retain Dominance in Global Hydrogen Generators Market

Of the two types of hydrogen generators in the global market, on-site generators dominated the market in 2015, with the segment accounting for a whopping 72.8% of the global market. The segment is likely to further extend its lead over the portable hydrogen generators segment in the forecast period. “On-site hydrogen generation is significantly more cost-effective for most customers, since hydrogen generators are usually required in remote areas. Since transporting stored hydrogen to these application sites can be troublesome, on-site generation is likely to remain the preferred mode of procurement in the coming years,” explained TMR’s lead analyst.

Geographically, North America and Europe are likely to dominate the global hydrogen generators market in the coming years, with North America remaining in the lead. These two regions account for close to 75% of the global market, and are likely to remain similarly dominant in the coming years. Asia Pacific, while a key emerging market, is expected to remain a distant third through the forecast period.

Lack of Storage Issues Drives Demand for Hydrogen Generators

The key driver for the global hydrogen generators market is the immediate on-site availability of hydrogen. This represents a significant advance over conventional methods, as storage and transportation of hydrogen–one of the most flammable gases–is both risky and expensive. On-site hydrogen generators also provide a continuous supply of hydrogen and offer the user greater control over the production and distribution of hydrogen. This allows the user to use low-pressure storage tanks, which are less expensive than the tanks used in conventional storage and transportation of hydrogen.

The easy availability of low-cost natural gas is another key driver for the global hydrogen generators market. Of the various types of feedstock used to generate hydrogen, natural gas is the most cost-effective option, regardless of whether the hydrogen generators are operated on-site or remotely.

On the other hand, the use of natural gas in hydrogen generation has caused environmental concerns due to the greenhouse gas emissions caused by combustion of natural gas. Steam reforming, an efficient production process utilizing natural gas, has become common in the hydrogen generators market at present, and presents a viable short-term solution. Nevertheless, while natural gas is among the cleanest burning fossil fuels, the use of non-fossil-fuel feedstock is likely to be encouraged in the global hydrogen generators market in the coming years.

The global hydrogen generators market is segmented as follows:

Hydrogen Generator Market: By Product Type

  • On-Site Generation
  • Portable

Hydrogen Generator Market: By Process Type

  • Steam Reformer
  • Electrolysis
  • Others

Hydrogen Generator Market: By Application

  • Chemical Processing
  • Fuel Cells
  • Petroleum Recovery
  • Refining
  • Others

Hydrogen Generator Market: By Capacity

  • 1-100 W
  • 100-300 W
  • 300-700W
  • 700W-1 KW
  • 1-3KW
  • 3KW and above

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 data repository is continuously updated and revised by a team of research experts, so that it always reflects the latest trends and information. With a broad research and analysis capability, Transparency Market Research employs rigorous primary and secondary research techniques in developing distinctive data sets and research material for business reports.

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

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

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

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

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

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

Key report insights suggest:

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

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Global Portable Generators Market Size 2016, Production, Sales, Revenue and Forecast 2021 – Yamaha Honda Hyundai Champion Schumacher Electric Ryobi Lifan…

This report studies Portable Generators in Global market, especially in North America, Europe, China, Japan, Southeast Asia and India, focuses on top manufacturers in global market, with production, price, revenue and market share for each manufacturer, covering
Yamaha
Honda
Hyundai
Champion
Schumacher Electric
Ryobi
Lifan
Westinghouse
Generac Power Systems
Briggs & Stratton
AIMS Power
Whistler
Energizer
Porta Source
Cobra
WEN Products
Honeywell

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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 Portable Generators 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 Portable Generators in each application, can be divided into
Application 1
Application 2
Application 3

Download sample copy of this report at http://globalqyresearch.com/download-sample/97368

Table of Contents

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

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

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

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

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

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

7 Global Portable Generators Manufacturers Profiles/Analysis
7.1 Yamaha
7.1.1 Company Basic Information, Manufacturing Base and Its Competitors
7.1.2 Portable Generators Product Type, Application and Specification
7.1.2.1 Type I
7.1.2.2 Type II
7.1.3 Yamaha Portable Generators Production, Revenue, Price and Gross Margin (2015 and 2016)
7.1.4 Main Business/Business Overview
7.2 Honda
7.2.1 Company Basic Information, Manufacturing Base and Its Competitors
7.2.2 Portable Generators Product Type, Application and Specification
7.2.2.1 Type I
7.2.2.2 Type II
7.2.3 Honda Portable Generators Production, Revenue, Price and Gross Margin (2015 and 2016)
7.2.4 Main Business/Business Overview
7.3 Hyundai
7.3.1 Company Basic Information, Manufacturing Base and Its Competitors
7.3.2 Portable Generators Product Type, Application and Specification
7.3.2.1 Type I
7.3.2.2 Type II
7.3.3 Hyundai Portable Generators Production, Revenue, Price and Gross Margin (2015 and 2016)
7.3.4 Main Business/Business Overview
7.4 Champion
7.4.1 Company Basic Information, Manufacturing Base and Its Competitors
7.4.2 Portable Generators Product Type, Application and Specification
7.4.2.1 Type I
7.4.2.2 Type II
7.4.3 Champion Portable Generators Production, Revenue, Price and Gross Margin (2015 and 2016)
7.4.4 Main Business/Business Overview
7.5 Schumacher Electric
7.5.1 Company Basic Information, Manufacturing Base and Its Competitors
7.5.2 Portable Generators Product Type, Application and Specification
7.5.2.1 Type I
7.5.2.2 Type II
7.5.3 Schumacher Electric Portable Generators Production, Revenue, Price and Gross Margin (2015 and 2016)
7.5.4 Main Business/Business Overview
7.6 Ryobi
7.6.1 Company Basic Information, Manufacturing Base and Its Competitors
7.6.2 Portable Generators Product Type, Application and Specification
7.6.2.1 Type I
7.6.2.2 Type II
7.6.3 Ryobi Portable Generators Production, Revenue, Price and Gross Margin (2015 and 2016)
7.6.4 Main Business/Business Overview
7.7 Lifan
7.7.1 Company Basic Information, Manufacturing Base and Its Competitors
7.7.2 Portable Generators Product Type, Application and Specification
7.7.2.1 Type I
7.7.2.2 Type II
7.7.3 Lifan Portable Generators Production, Revenue, Price and Gross Margin (2015 and 2016)
7.7.4 Main Business/Business Overview
7.8 Westinghouse
7.8.1 Company Basic Information, Manufacturing Base and Its Competitors
7.8.2 Portable Generators Product Type, Application and Specification
7.8.2.1 Type I
7.8.2.2 Type II
7.8.3 Westinghouse Portable Generators Production, Revenue, Price and Gross Margin (2015 and 2016)
7.8.4 Main Business/Business Overview
7.9 Generac Power Systems
7.9.1 Company Basic Information, Manufacturing Base and Its Competitors
7.9.2 Portable Generators Product Type, Application and Specification
7.9.2.1 Type I
7.9.2.2 Type II
7.9.3 Generac Power Systems Portable Generators Production, Revenue, Price and Gross Margin (2015 and 2016)
7.9.4 Main Business/Business Overview
7.10 Briggs & Stratton
7.10.1 Company Basic Information, Manufacturing Base and Its Competitors
7.10.2 Portable Generators Product Type, Application and Specification
7.10.2.1 Type I
7.10.2.2 Type II
7.10.3 Briggs & Stratton Portable Generators Production, Revenue, Price and Gross Margin (2015 and 2016)
7.10.4 Main Business/Business Overview
7.11 AIMS Power
7.12 Whistler
7.13 Energizer
7.14 Porta Source
7.15 Cobra
7.16 WEN Products
7.17 Honeywell

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

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

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

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

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

13 Research Findings and Conclusion

14 Appendix
Author List
Disclosure Section
Research Methodology
Data Source

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Global Inverter Generators Market Size 2016, Production, Sales, Revenue and Forecast 2021 – Yamaha Honda Hyundai Champion Schumacher Electric Ryobi Lifan…

This report studies Inverter Generators in Global market, especially in North America, Europe, China, Japan, Southeast Asia and India, focuses on top manufacturers in global market, with production, price, revenue and market share for each manufacturer, covering
Yamaha
Honda
Hyundai
Champion
Schumacher Electric
Ryobi
Lifan
Westinghouse
Generac Power Systems
Briggs & Stratton
AIMS Power
Whistler
Energizer
Porta Source
Cobra

View Full Report at http://globalqyresearch.com/global-inverter-generators-market-research-report-2016

Market Segment by Regions, this report splits Global into several key Regions, with production, consumption, revenue, market share and growth rate of Inverter Generators 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 Inverter Generators in each application, can be divided into
Application 1
Application 2
Application 3

Download sample copy of this report at http://globalqyresearch.com/download-sample/97363

Table of Contents

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

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

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

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

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

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

7 Global Inverter Generators Manufacturers Profiles/Analysis
7.1 Yamaha
7.1.1 Company Basic Information, Manufacturing Base and Its Competitors
7.1.2 Inverter Generators Product Type, Application and Specification
7.1.2.1 Type I
7.1.2.2 Type II
7.1.3 Yamaha Inverter Generators Production, Revenue, Price and Gross Margin (2015 and 2016)
7.1.4 Main Business/Business Overview
7.2 Honda
7.2.1 Company Basic Information, Manufacturing Base and Its Competitors
7.2.2 Inverter Generators Product Type, Application and Specification
7.2.2.1 Type I
7.2.2.2 Type II
7.2.3 Honda Inverter Generators Production, Revenue, Price and Gross Margin (2015 and 2016)
7.2.4 Main Business/Business Overview
7.3 Hyundai
7.3.1 Company Basic Information, Manufacturing Base and Its Competitors
7.3.2 Inverter Generators Product Type, Application and Specification
7.3.2.1 Type I
7.3.2.2 Type II
7.3.3 Hyundai Inverter Generators Production, Revenue, Price and Gross Margin (2015 and 2016)
7.3.4 Main Business/Business Overview
7.4 Champion
7.4.1 Company Basic Information, Manufacturing Base and Its Competitors
7.4.2 Inverter Generators Product Type, Application and Specification
7.4.2.1 Type I
7.4.2.2 Type II
7.4.3 Champion Inverter Generators Production, Revenue, Price and Gross Margin (2015 and 2016)
7.4.4 Main Business/Business Overview
7.5 Schumacher Electric
7.5.1 Company Basic Information, Manufacturing Base and Its Competitors
7.5.2 Inverter Generators Product Type, Application and Specification
7.5.2.1 Type I
7.5.2.2 Type II
7.5.3 Schumacher Electric Inverter Generators Production, Revenue, Price and Gross Margin (2015 and 2016)
7.5.4 Main Business/Business Overview
7.6 Ryobi
7.6.1 Company Basic Information, Manufacturing Base and Its Competitors
7.6.2 Inverter Generators Product Type, Application and Specification
7.6.2.1 Type I
7.6.2.2 Type II
7.6.3 Ryobi Inverter Generators Production, Revenue, Price and Gross Margin (2015 and 2016)
7.6.4 Main Business/Business Overview
7.7 Lifan
7.7.1 Company Basic Information, Manufacturing Base and Its Competitors
7.7.2 Inverter Generators Product Type, Application and Specification
7.7.2.1 Type I
7.7.2.2 Type II
7.7.3 Lifan Inverter Generators Production, Revenue, Price and Gross Margin (2015 and 2016)
7.7.4 Main Business/Business Overview
7.8 Westinghouse
7.8.1 Company Basic Information, Manufacturing Base and Its Competitors
7.8.2 Inverter Generators Product Type, Application and Specification
7.8.2.1 Type I
7.8.2.2 Type II
7.8.3 Westinghouse Inverter Generators Production, Revenue, Price and Gross Margin (2015 and 2016)
7.8.4 Main Business/Business Overview
7.9 Generac Power Systems
7.9.1 Company Basic Information, Manufacturing Base and Its Competitors
7.9.2 Inverter Generators Product Type, Application and Specification
7.9.2.1 Type I
7.9.2.2 Type II
7.9.3 Generac Power Systems Inverter Generators Production, Revenue, Price and Gross Margin (2015 and 2016)
7.9.4 Main Business/Business Overview
7.10 Briggs & Stratton
7.10.1 Company Basic Information, Manufacturing Base and Its Competitors
7.10.2 Inverter Generators Product Type, Application and Specification
7.10.2.1 Type I
7.10.2.2 Type II
7.10.3 Briggs & Stratton Inverter Generators Production, Revenue, Price and Gross Margin (2015 and 2016)
7.10.4 Main Business/Business Overview
7.11 AIMS Power
7.12 Whistler
7.13 Energizer
7.14 Porta Source
7.15 Cobra

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

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

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

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

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

13 Research Findings and Conclusion

14 Appendix
Author List
Disclosure Section
Research Methodology
Data Source

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Corrosion inhibitors market size to exceed USD 8.8 billion by 2023: Global Market Insights, Inc.

Global corrosion inhibitors market size was estimated at 5.12 million tons in 2015, as per the latest research report by Global Market Insights, Inc. Growing wastewater treatment chemicals demand for owing to rapid industrialization is expected key trend to drive market growth. Unregulated discharge of industrial and domestic contaminants has increased the need for water treatment.

Corrosion inhibitors market size is forecast to hit USD 8.8 billion in revenue, by 2023. EPA and REACH norms will play significant role in developing water treatment chemicals demand, thereby boosting product demand.

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The Safe Drinking Water Act and its amendments establish the basic framework for protecting the drinking water used by public water systems in the U.S. Organic corrosion inhibitor market generated over USD 4 billion in revenue in 2015.

                      MEA corrosion inhibitors market size, by end-use, (USD Million) 2012-2023

MEA corrosion inhibitors market size, by end-use, (USD Million) 2012-2023

Power generation industry dominated the demand with overall consumption close to 1.5 million tons in 2015. Rising energy requirements due to rapid industrialization in APAC & LATAM is forecast to drive demand.

Planned and unplanned plant shutdown can result in degradation of pumps, gas turbines and switch gears used in power generation industry, where humidity & condensation can be reasons for the cause.

Key raw materials chromium, oxygen atoms, phosphorous, zinc and nitrogen, have associated health hazards and are a matter of concern for inhibitor disposal. Associated environmental hazards through inappropriate disposal along with imbalance in raw material supply could impact cost.

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Increasing research focus to develop green corrosion inhibitors from natural sources like potato, onion, seeds and gelatin is underway, which may present growth opportunity for industry participants.

Key insights from the report include:

  • Global corrosion inhibitors market size is predicted to grow at 4.7% CAGR and reach 7.39 million tons by 2023.
  • Water based corrosion inhibitors market size was dominant and accounted for over 77% of the total 2015 demand. Solvent/oil based applications may witness sluggish growth rates with 4% CAGR from 2016 to 2023.
  • APAC, led by India and China corrosion inhibitors market size, was dominant regional industry and accounted for close to 38% of the total volume in 2015. FDI policies by governments of India and China are encouraging investors to set up metal and chemical processing plants in the region, which may boost demand.
  • APAC oil & gas industry may consume approximately 700 kilo tons by 2023, with expected significant gains at 6.4% up to 2023.
  • Europe metal processing industry based on the product demand was valued close to USD 180 million in 2015 and is forecast to grow at significant rate up to 2023.
  • Global corrosion inhibitors market share is fragmented, with GE, Ecolab, BASF and Ashland catering to below 50% of the total demand in 2015.
  • AkzoNobel, Lubrizol, Henkel, Cytec, Champion Technologies, Cortec, Daubert and Dai-Ichi are among notable companies competing in the market.

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

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

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

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

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

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

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

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

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

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Key insights from the report include:

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

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Worldwide Nuclear Steam Generator Market: Facts, Figures and Analytical Insights 2020, PMR Report

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Steam generator is a device which is used to create steam by boiling water. Steam generators are also referred as heat exchangers used to convert water particles into steam from heat produced in a nuclear reactor plant. Nuclear steam generator is used in high pressure water reactor having primary loop (piping system that contains coolant) and secondary loops (have separate piping system, here water is converted to steam to rotate turbines which generate electricity) attached to the water reactor. The primary loop is usually at very high temperature and pressure. Nuclear steam generator is a device which is used to transfer heat between the two loops from primary loop to the secondary loop attached to the generator. Nuclear steam generator which is attached between the primary and secondary loop generate electricity from the nuclear plant. Water flowing between the primary and secondary loops never mixes with each other. Materials which are used to manufacture turbine and piping system of a nuclear steam generator have special features to withstand heat and radiation of the reactor. Normal nuclear plant steam generator take the dimension up to 70 feet (approximately 21 meter) in length and around 800 tons in weight.

On the bases of dimensions, the global nuclear steam generator market can be divided into horizontal and vertical steam generator. Countries such as Canada, Japan, France and Germany use vertical form of nuclear steam generators to generate electricity from nuclear power plant, whereas Russian nuclear plants majorly use horizontal form of nuclear steam generator to generate electricity.

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Europe has the largest market share for nuclear steam generator, followed by Asia Pacific and North America. Russia is the largest consumer for nuclear steam generator globally. Europe is expected to dominate in the forecasted period with North America showing average growth. However, Asia Pacific is expected to witness highest growth in the coming years. Increasing number of nuclear power plant in the countries such as China, Japan, and India are expected to boost the Asia Pacific market in forecasted period.

Rising number of nuclear power plant around the globe especially in countries such as Russia, China and India is driving the global nuclear steam generator market. Additionally, to increase the electric generating capacity many nuclear plant are changing their generating system, this is further expected to increase the demand for nuclear steam generator in coming years. Also, shortage of electricity in the countries such as India is further expected to increase the electricity demand from the nuclear power plants. This may increase the demand for nuclear steam generator to generate electricity to some extent. However, high cost of installation associated with the nuclear steam generator is expected to hamper the global nuclear steam generator market, but at very niche level.

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Increasing investment by the governments of the Asian countries to increase generation of electricity from the nuclear plants is propelling the global nuclear steam generator manufacturers to invest more in the developing countries of Asia Pacific. Some of the major companies operating in the global nuclear steam generator market are Mitsubishi Heavy Industries, Westinghouse Electric, Atomic Energy of Canada, Bharat Heavy Electricals, Korea Electric Power Corporation and GE Hitachi Nuclear Energy.

 

Key points covered in the report

 

  • Report segments the market on the basis of types, application, products, technology, etc (as applicable)
  • The report covers geographic segmentation

 

  • North America
  • Europe
  • Asia
  • RoW

 

  • The report provides the market size and forecast for the different segments and geographies for the period of 2010 to 2020
  • The report provides company profiles of some of the leading companies operating in the market
  • The report also provides porters five forces analysis of the market.

 

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To support companies in overcoming complex business challenges, we follow a multi-disciplinary approach. At PMR, we unite various data streams from multi-dimensional sources. By deploying real-time data collection, big data, and customer experience analytics, we deliver business intelligence for organizations of all sizes.

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Smart Water Metering Market Size Analysis Report, 2024

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Smart Water Metering Market size is projected to expand at an exponential rate owing to increase in construction spending in both residential and commercial.

Smart water metering is internet capable measuring device used for water, energy and natural gas utilization for commercial and residential areas. These systems comprise of an electric meter, control unit, and water meter in one particular package. Traditional meters measure only water consumption whereas smart water meters record total resource consumption for daily use, including waste water used in industries and many others applications. Mart meters gather and use information with the help of information and communications technology (ICT) and by real time data generation. The reason behind installation of smart meters is to manage efficiency and increase operations in commercial areas, industrial zone, and residential area to reduce overall expenditures and carbon foot print.

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The support system of this advanced metering infrastructure (AMI) technology provides constant two ways data bond between utilities, consumers meters and technologies used to deliver the communication. Power line communication (PLC), broadband, telephony, optical fiber cable, cellular transmissions, and wireless radio frequency are generally used to operate the water meters. Introduced communication patterns will design and construct consumption pattern, and accurate billings at various area levels, to update other functional software’s such as geographic information systems (GIS), supervisory control and data acquisition (SCADA), followed by the departments includes customer services, reservoir, and pumping stations. Smart water meters also monitors current water consumption, by contributing data towards hydraulic modeling to predict changes and outcome in water distribution.
Smart water metering market introduces new approach for groundwater management with different parameters such as billing, control, data processing/collection, and measurement.  As estimated one third of the total costs is associated with treatment of water, therefor minimum water wastage will result into decrease in overall cost and energy. Engagement of smart water metering will help to identify performance problem, managing operating cost and challenges, which will help to improve and prioritize customer services infrastructure spending.

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These meters also help to detect water loss both in customer end point and distribution networks, which helps to maximize the savings. The ability to prevent and detect leakages which is main sources of water loss can be prevented by strategic data generated by AMI, which may positively impact on smart water metering market size growth during the forecast period. Growing construction spending in both residential and commercial area will increase demand and drive the smart water metering market during the forecast period.

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Nuclear turbine generator market to reach US$15,616.7 million by 2020: TMR

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Transparency Market Research (TMR) has published a research study on the global nuclear turbine generators market estimating it to report an impressive CAGR of 12.0% during the period from 2014 to 2020 and reach US$15.61 billion by the end of the forecast period. The market report, titled “Nuclear Turbine Generator Market – Global Industry Analysis, Size, Share, Growth, Trends and Forecast 2014 – 2020”, states that the worldwide nuclear turbine generator market had reached a value of US$7.0 billion in 2013.

 

According to the report, the rising demand for energy is the key factor driving the global nuclear turbine generator market substantially. The increasing focus of economies on the expansion of their nuclear power capabilities has triggered the installation of new nuclear reactors, stimulating the demand for nuclear turbines and nuclear generators in the global arena. However, the anti-nuclear energy policy, followed by several countries, is hampering the growth of this market to a significant extent. The negative public opinion over the development of nuclear power after the Fukushima Daiichi nuclear disaster is also anticipated to limit this market, states the report.

 

The report analyzes the global market for nuclear turbine generators on the basis of product and its regional distribution. Based on product, the markets for nuclear turbines and nuclear generators are the main segments of the global market. The rise in the installation of new nuclear reactors across the world has propelled the demand for nuclear turbines in the global arena. Currently, there are approximately 435 operational nuclear reactors around the world, whereas the installation of 71 new nuclear reactors is just round the corner, notes the study.

 

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On the regional front, the report segments the global nuclear turbine generator market into North America, Asia Pacific, Europe, and the Rest of the World. Of these, Europe has emerged as the leading regional market. Analysts anticipate this market to exhibit a significant growth rate over the forecast period owing to the expected installation of new nuclear turbine generators, especially in Russia.

 

Asia Pacific holds the second position in this market and is closely followed by North America. The increasing installation of new nuclear turbine generators in India, South Korea, and China is stimulating the Asia Pacific nuclear turbine generators market significantly.

 

North America has also shown impressive growth in the global market for nuclear turbine generators in recent times. At present, the U.S. leads the North America nuclear turbine generators market in terms of demand. However, the decline in gas prices has negatively impacted some of the existing as well as new nuclear turbine generator projects in North America, causing the market’s growth to plummet, says the study.

 

The global market for nuclear turbine generators is concentrated in nature. Some of the major players operating in this market are Westinghouse Electric Co. LLC, Toshiba Corp., The Babcock & Wilcox Co., OJSC Power Machines, Mitsubishi Heavy Industries Ltd., Hitachi Ltd., General Electric, Doosan Heavy Industries & Construction Co. Ltd., Bharat Heavy Electricals Ltd., and Alstom Power, states the research report.

 

The global nuclear turbine generator market is segmented into:

 

By Product

 

  • Nuclear Turbine
  • Nuclear Generator

 

By Region

 

  • North America
  • Europe
  • Asia Pacific
  • Rest of the World (RoW)

 

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Transparency Market Research (TMR) is a global market intelligence company providing business information reports and services. The company’s exclusive blend of quantitative forecasting and trend 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.

 

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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Increasing shale gas exploration and production activities would drive the market during the forecast period.

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North America, led by the U.S. coil tubing market size was dominant regional industry in 2015 owing to high exploration and production activity of shale gas. Middle East and Africa should witness a substantial growth in future owing to increasing demand for innovative technology in oil and gas application. The development of new oil and gas fields such as Sub-Sahara Africa will also drive Middle East and Africa coil tubing market.

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Also known as flexible tubing, it has a long metallic pipe, normally 25 to 83 mm in diameter wound on spool is mainly used in upstream activities. It is used to perform drilling, milling operations, logging and perforating, well intervention operation, circulation, fracturing process, removal of wax, hydrate plug and hydrocarbon, fishing, gas lifting, stimulation and enhance oil recovery processes such as acid fracturing and hydraulic etc. It helps to reduce exploration cost, transportation cost, tabular trip time, reservoir damage and ensure operation safety. These tubing are preferred over conventional straight tubing as it can be inserted into well during production and it is cost effective and used on high pressure wells.

Coil tubing unit includes injector head, drum, guider, blowout prevention system, control system and power system. Injector head is the main component and used to lift coil tubing during operation. The guider is used to inject and eject out of injector head. Drum is used to decide transport dimension and winding capacity of the unit. Power system is used to provide power to the unit. Blowout prevention system is used to sealing pressure in well to prevent blowout.

Increasing shale gas exploration and production activities across the globe will drive the coil tubing market share during the forecast period. Investment in oil and gas projects, discovery of new oil and gas reserves, redevelopment of matured oil and gas fields, shift to horizontallateral drilling, gradually increasing demand of oil and gas are some of the drivers which will boost the demand of coil tubing in the near future. Lack of skilled labor, low crude oil prices and competitive prices of alternative equipment such as snubbing units and workover rig acts as a restraint for industry. Increasing offshore drilling activities will be an opportunity for coil tubing market.

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Global coil tubing market size has been segmented on the basis of application, operation, location and region. The application segment includes well intervention, drilling and completion. Well intervention is the process of enhancing productivity of oil and gas well by improving performance of additional hydrocarbon. These tubes are mainly used in well intervention. operation includes drilling, logging, perforation, circulation and pumping and others. location segment includes onshore and offshore.

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Sandblasting Media Market size worth $441.9 Million by 2023: Global Market Insights, Inc.

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Sandblasting Media Market size is expected to reach USD 441.9 million by 2023; according to a new research report by Global Market Insights, Inc. Industry volume was over 750 kilo tons in 2015, with growth expectations of 5.9% CAGR over the forecast timeframe.

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Robotic blasting systems are increasingly adopted in order to enhance the scope of sandblasting media market size in areas where quality control needs are not sufficed by standardized automation solutions. Industries including aerospace, automotive, medical and consumer electronics makes use of this equipment for several applications including material removal, stress relief, mold cleaning, surface preparation, coating removal and shot peening.

Europe Sandblasting Media Market size, by product, 2015 & 2023 (Kilotons)

Europe Sandblasting Media Market size, by product, 2015 & 2023 (Kilotons)

 

Optional features offered such as servo controlled rotary positioner, automated media flow control, automatic blast pressure control, rotary lance capabilities, custom data collection, report generation, automatic recovery is likely to drive demand. U.S. sandblasting media market size is forecast to exceed USD 96 million by 2023.

Sandblasting media market applications include the use of abrasives to cut, roughen, smooth, clean or polish surfaces, or to remove material to modify surface dimensions or shapes. In addition, these abrasive particles are also used in coated and bonded forms for several applications including polishing, cutting, surface finishing, and grinding. Industries such as construction, automotive, aerospace and industrial are the major end-use areas.

In the automotive industry, this technique is majorly used in coating and paint spraying for surface cleaning and improving anti-corrosion ability and adhesion. Growing emphasis on improved manufacturing processes will prove beneficial to sandblasting media market revenue, since it not only requires higher usage per unit, but also correspondingly impacts demand for value-added higher priced products.

China abrasive blasting media market is among the largest regional segments due to considerable demand across application areas. Health hazards associated with silica as an abrasive material is expected to hamper industry demand. Regulatory bodies such as National Institute of Occupational Safety & Health (NIOSH) and Occupational Safety and Health Administration (OSHA) have formed guidelines addressing many aspects of abrasive blasting including parameters such as proper airline length, and quality of breathing air provided to the abrasive blasting respirator.

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Key insights from the report include:

  • Aluminum oxide abrasive blasting market accounted for over 10% of the industry share in 2015 and is forecast to grow at 7.2% CAGR from 2016 to 2023. It is preferred for specialized applications in which a particular surface finish is required that justifies the extra cost.
  • Steel shot and grit are expected to gain significant industry share from 2016 to 2023 owing to extensive usage in the blast cleaning sector for the removal of mill scale, and paint and rust from steel surfaces.
  • Silica sandblasting media market share dominated global consumption in 2015. This demand primarily originates from Asia Pacific, where the material finds extensive use due to absence of regulations similar to those seen in key European countries, as well as lower price point compared to alternative materials.
  • Asia Pacific sandblasting media market share was over 45% in 2015. Significant durable goods sector and growing infrastructure spending is favorable for the region.
  • Key industry participants comprise Barton International, Harsco, ABShot Tecnics, Crystal Mark, Washington Mills, Opta Minerals, TriVitro Corporation, U.S. Silica Holdings, etc.

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