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Global Semi-Dry Flue Gas Desulfurization System Market 2016 Market Research, Measurement Activities, Analysis, Scientific Developments & Revolution

This report studies Semi-Dry Flue Gas Desulfurization System 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
Babcock & Wilcox Company
Siemens
Flsmidth & Co. A/S
Hamon
Clyde Bergemann Power Group
Burns & Mcdonnell Inc.
Marsulex Environmental Technologies
Mitsubishi Electric Corporation
Thermax

View full report at http://globalqyresearch.com/global-semi-dry-flue-gas-desulfurization-system-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 Semi-Dry Flue Gas Desulfurization System 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 Semi-Dry Flue Gas Desulfurization System 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/102401

Table of Contents

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

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

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

4 Global Semi-Dry Flue Gas Desulfurization System Supply (Production), Consumption, Export, Import by Regions (2011-2016)
4.1 Global Semi-Dry Flue Gas Desulfurization System Consumption by Regions (2011-2016)
4.2 North America Semi-Dry Flue Gas Desulfurization System Production, Consumption, Export, Import by Regions (2011-2016)
4.3 Europe Semi-Dry Flue Gas Desulfurization System Production, Consumption, Export, Import by Regions (2011-2016)
4.4 China Semi-Dry Flue Gas Desulfurization System Production, Consumption, Export, Import by Regions (2011-2016)
4.5 Japan Semi-Dry Flue Gas Desulfurization System Production, Consumption, Export, Import by Regions (2011-2016)
4.6 Southeast Asia Semi-Dry Flue Gas Desulfurization System Production, Consumption, Export, Import by Regions (2011-2016)
4.7 India Semi-Dry Flue Gas Desulfurization System Production, Consumption, Export, Import by Regions (2011-2016)

5 Global Semi-Dry Flue Gas Desulfurization System Production, Revenue (Value), Price Trend by Type
5.1 Global Semi-Dry Flue Gas Desulfurization System Production and Market Share by Type (2011-2016)
5.2 Global Semi-Dry Flue Gas Desulfurization System Revenue and Market Share by Type (2011-2016)
5.3 Global Semi-Dry Flue Gas Desulfurization System Price by Type (2011-2016)
5.4 Global Semi-Dry Flue Gas Desulfurization System Production Growth by Type (2011-2016)

6 Global Semi-Dry Flue Gas Desulfurization System Market Analysis by Application
6.1 Global Semi-Dry Flue Gas Desulfurization System Consumption and Market Share by Application (2011-2016)
6.2 Global Semi-Dry Flue Gas Desulfurization System 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 Semi-Dry Flue Gas Desulfurization System Manufacturers Profiles/Analysis
7.1 Babcock & Wilcox Company
7.1.1 Company Basic Information, Manufacturing Base and Its Competitors
7.1.2 Semi-Dry Flue Gas Desulfurization System Product Type, Application and Specification
7.1.2.1 Type I
7.1.2.2 Type II
7.1.3 Babcock & Wilcox Company Semi-Dry Flue Gas Desulfurization System Production, Revenue, Price and Gross Margin (2015 and 2016)
7.1.4 Main Business/Business Overview
7.2 Siemens
7.2.1 Company Basic Information, Manufacturing Base and Its Competitors
7.2.2 Semi-Dry Flue Gas Desulfurization System Product Type, Application and Specification
7.2.2.1 Type I
7.2.2.2 Type II
7.2.3 Siemens Semi-Dry Flue Gas Desulfurization System Production, Revenue, Price and Gross Margin (2015 and 2016)
7.2.4 Main Business/Business Overview
7.3 Flsmidth & Co. A/S
7.3.1 Company Basic Information, Manufacturing Base and Its Competitors
7.3.2 Semi-Dry Flue Gas Desulfurization System Product Type, Application and Specification
7.3.2.1 Type I
7.3.2.2 Type II
7.3.3 Flsmidth & Co. A/S Semi-Dry Flue Gas Desulfurization System Production, Revenue, Price and Gross Margin (2015 and 2016)
7.3.4 Main Business/Business Overview
7.4 Hamon
7.4.1 Company Basic Information, Manufacturing Base and Its Competitors
7.4.2 Semi-Dry Flue Gas Desulfurization System Product Type, Application and Specification
7.4.2.1 Type I
7.4.2.2 Type II
7.4.3 Hamon Semi-Dry Flue Gas Desulfurization System Production, Revenue, Price and Gross Margin (2015 and 2016)
7.4.4 Main Business/Business Overview
7.5 Clyde Bergemann Power Group
7.5.1 Company Basic Information, Manufacturing Base and Its Competitors
7.5.2 Semi-Dry Flue Gas Desulfurization System Product Type, Application and Specification
7.5.2.1 Type I
7.5.2.2 Type II
7.5.3 Clyde Bergemann Power Group Semi-Dry Flue Gas Desulfurization System Production, Revenue, Price and Gross Margin (2015 and 2016)
7.5.4 Main Business/Business Overview
7.6 Burns & Mcdonnell Inc.
7.6.1 Company Basic Information, Manufacturing Base and Its Competitors
7.6.2 Semi-Dry Flue Gas Desulfurization System Product Type, Application and Specification
7.6.2.1 Type I
7.6.2.2 Type II
7.6.3 Burns & Mcdonnell Inc. Semi-Dry Flue Gas Desulfurization System Production, Revenue, Price and Gross Margin (2015 and 2016)
7.6.4 Main Business/Business Overview
7.7 Marsulex Environmental Technologies
7.7.1 Company Basic Information, Manufacturing Base and Its Competitors
7.7.2 Semi-Dry Flue Gas Desulfurization System Product Type, Application and Specification
7.7.2.1 Type I
7.7.2.2 Type II
7.7.3 Marsulex Environmental Technologies Semi-Dry Flue Gas Desulfurization System Production, Revenue, Price and Gross Margin (2015 and 2016)
7.7.4 Main Business/Business Overview
7.8 Mitsubishi Electric Corporation
7.8.1 Company Basic Information, Manufacturing Base and Its Competitors
7.8.2 Semi-Dry Flue Gas Desulfurization System Product Type, Application and Specification
7.8.2.1 Type I
7.8.2.2 Type II
7.8.3 Mitsubishi Electric Corporation Semi-Dry Flue Gas Desulfurization System Production, Revenue, Price and Gross Margin (2015 and 2016)
7.8.4 Main Business/Business Overview
7.9 Thermax
7.9.1 Company Basic Information, Manufacturing Base and Its Competitors
7.9.2 Semi-Dry Flue Gas Desulfurization System Product Type, Application and Specification
7.9.2.1 Type I
7.9.2.2 Type II
7.9.3 Thermax Semi-Dry Flue Gas Desulfurization System Production, Revenue, Price and Gross Margin (2015 and 2016)
7.9.4 Main Business/Business Overview

8 Semi-Dry Flue Gas Desulfurization System Manufacturing Cost Analysis
8.1 Semi-Dry Flue Gas Desulfurization 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 Expenses
8.3 Manufacturing Process Analysis of Semi-Dry Flue Gas Desulfurization System

9 Industrial Chain, Sourcing Strategy and Downstream Buyers
9.1 Semi-Dry Flue Gas Desulfurization System Industrial Chain Analysis
9.2 Upstream Raw Materials Sourcing
9.3 Raw Materials Sources of Semi-Dry Flue Gas Desulfurization 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 Semi-Dry Flue Gas Desulfurization System Market Forecast (2016-2021)
12.1 Global Semi-Dry Flue Gas Desulfurization System Production, Revenue Forecast (2016-2021)
12.2 Global Semi-Dry Flue Gas Desulfurization System Production, Consumption Forecast by Regions (2016-2021)
12.3 Global Semi-Dry Flue Gas Desulfurization System Production Forecast by Type (2016-2021)
12.4 Global Semi-Dry Flue Gas Desulfurization System Consumption Forecast by Application (2016-2021)
12.5 Semi-Dry Flue Gas Desulfurization System Price Forecast (2016-2021)

13 Research Findings and Conclusion

14 Appendix

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Global Wet Flue Gas Desulfurization System Market Research Report 2016 Sales & Revenues have rapidly increased Worldwide due to gigantic Demands from all corners of the Globe

This report studies Wet Flue Gas Desulfurization System 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
Babcock & Wilcox Company
Siemens
Flsmidth & Co. A/S
Hamon
Clyde Bergemann Power Group
Burns & Mcdonnell Inc.
Marsulex Environmental Technologies
Mitsubishi Electric Corporation
Thermax

View full report at http://globalqyresearch.com/global-wet-flue-gas-desulfurization-system-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 Wet Flue Gas Desulfurization System 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 Wet Flue Gas Desulfurization System 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/102405

Table of Contents

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

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

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

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

5 Global Wet Flue Gas Desulfurization System Production, Revenue (Value), Price Trend by Type
5.1 Global Wet Flue Gas Desulfurization System Production and Market Share by Type (2011-2016)
5.2 Global Wet Flue Gas Desulfurization System Revenue and Market Share by Type (2011-2016)
5.3 Global Wet Flue Gas Desulfurization System Price by Type (2011-2016)
5.4 Global Wet Flue Gas Desulfurization System Production Growth by Type (2011-2016)

6 Global Wet Flue Gas Desulfurization System Market Analysis by Application
6.1 Global Wet Flue Gas Desulfurization System Consumption and Market Share by Application (2011-2016)
6.2 Global Wet Flue Gas Desulfurization System 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 Wet Flue Gas Desulfurization System Manufacturers Profiles/Analysis
7.1 Babcock & Wilcox Company
7.1.1 Company Basic Information, Manufacturing Base and Its Competitors
7.1.2 Wet Flue Gas Desulfurization System Product Type, Application and Specification
7.1.2.1 Type I
7.1.2.2 Type II
7.1.3 Babcock & Wilcox Company Wet Flue Gas Desulfurization System Production, Revenue, Price and Gross Margin (2015 and 2016)
7.1.4 Main Business/Business Overview
7.2 Siemens
7.2.1 Company Basic Information, Manufacturing Base and Its Competitors
7.2.2 Wet Flue Gas Desulfurization System Product Type, Application and Specification
7.2.2.1 Type I
7.2.2.2 Type II
7.2.3 Siemens Wet Flue Gas Desulfurization System Production, Revenue, Price and Gross Margin (2015 and 2016)
7.2.4 Main Business/Business Overview
7.3 Flsmidth & Co. A/S
7.3.1 Company Basic Information, Manufacturing Base and Its Competitors
7.3.2 Wet Flue Gas Desulfurization System Product Type, Application and Specification
7.3.2.1 Type I
7.3.2.2 Type II
7.3.3 Flsmidth & Co. A/S Wet Flue Gas Desulfurization System Production, Revenue, Price and Gross Margin (2015 and 2016)
7.3.4 Main Business/Business Overview
7.4 Hamon
7.4.1 Company Basic Information, Manufacturing Base and Its Competitors
7.4.2 Wet Flue Gas Desulfurization System Product Type, Application and Specification
7.4.2.1 Type I
7.4.2.2 Type II
7.4.3 Hamon Wet Flue Gas Desulfurization System Production, Revenue, Price and Gross Margin (2015 and 2016)
7.4.4 Main Business/Business Overview
7.5 Clyde Bergemann Power Group
7.5.1 Company Basic Information, Manufacturing Base and Its Competitors
7.5.2 Wet Flue Gas Desulfurization System Product Type, Application and Specification
7.5.2.1 Type I
7.5.2.2 Type II
7.5.3 Clyde Bergemann Power Group Wet Flue Gas Desulfurization System Production, Revenue, Price and Gross Margin (2015 and 2016)
7.5.4 Main Business/Business Overview
7.6 Burns & Mcdonnell Inc.
7.6.1 Company Basic Information, Manufacturing Base and Its Competitors
7.6.2 Wet Flue Gas Desulfurization System Product Type, Application and Specification
7.6.2.1 Type I
7.6.2.2 Type II
7.6.3 Burns & Mcdonnell Inc. Wet Flue Gas Desulfurization System Production, Revenue, Price and Gross Margin (2015 and 2016)
7.6.4 Main Business/Business Overview
7.7 Marsulex Environmental Technologies
7.7.1 Company Basic Information, Manufacturing Base and Its Competitors
7.7.2 Wet Flue Gas Desulfurization System Product Type, Application and Specification
7.7.2.1 Type I
7.7.2.2 Type II
7.7.3 Marsulex Environmental Technologies Wet Flue Gas Desulfurization System Production, Revenue, Price and Gross Margin (2015 and 2016)
7.7.4 Main Business/Business Overview
7.8 Mitsubishi Electric Corporation
7.8.1 Company Basic Information, Manufacturing Base and Its Competitors
7.8.2 Wet Flue Gas Desulfurization System Product Type, Application and Specification
7.8.2.1 Type I
7.8.2.2 Type II
7.8.3 Mitsubishi Electric Corporation Wet Flue Gas Desulfurization System Production, Revenue, Price and Gross Margin (2015 and 2016)
7.8.4 Main Business/Business Overview
7.9 Thermax
7.9.1 Company Basic Information, Manufacturing Base and Its Competitors
7.9.2 Wet Flue Gas Desulfurization System Product Type, Application and Specification
7.9.2.1 Type I
7.9.2.2 Type II
7.9.3 Thermax Wet Flue Gas Desulfurization System Production, Revenue, Price and Gross Margin (2015 and 2016)
7.9.4 Main Business/Business Overview

8 Wet Flue Gas Desulfurization System Manufacturing Cost Analysis
8.1 Wet Flue Gas Desulfurization 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 Expenses
8.3 Manufacturing Process Analysis of Wet Flue Gas Desulfurization System

9 Industrial Chain, Sourcing Strategy and Downstream Buyers
9.1 Wet Flue Gas Desulfurization System Industrial Chain Analysis
9.2 Upstream Raw Materials Sourcing
9.3 Raw Materials Sources of Wet Flue Gas Desulfurization 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 Wet Flue Gas Desulfurization System Market Forecast (2016-2021)
12.1 Global Wet Flue Gas Desulfurization System Production, Revenue Forecast (2016-2021)
12.2 Global Wet Flue Gas Desulfurization System Production, Consumption Forecast by Regions (2016-2021)
12.3 Global Wet Flue Gas Desulfurization System Production Forecast by Type (2016-2021)
12.4 Global Wet Flue Gas Desulfurization System Consumption Forecast by Application (2016-2021)
12.5 Wet Flue Gas Desulfurization System Price Forecast (2016-2021)

13 Research Findings and Conclusion

14 Appendix

To Purchase this premium Report at http://globalqyresearch.com/checkout-form/0/102405

About Us:

Global QYResearch (http://globalqyresearch.com/ ) is the one spot destination for all your research needs. Global QYResearch holds the repository of quality research reports from numerous publishers across the globe. Our inventory of research reports caters to various industry verticals including Healthcare, Information and Communication Technology (ICT), Technology and Media, Chemicals, Materials, Energy, Heavy Industry, etc. With the complete information about the publishers and the industries they cater to for developing market research reports, we help our clients in making purchase decision by understanding their requirements and suggesting best possible collection matching their needs.

Contact Us:

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Strong manufacturing output indicators and rapid industrialization may further compliment industry growth.

Industrial Boilers Market size is projected to expand at over 2.5% CAGR. Government initiatives to promote clean energy and reduce its dependency on fossil fuels energy source would drive growth.

Strong manufacturing output indicators and rapid industrialization may further compliment industry growth. Globally, more than 50% of boilers use natural gas as primary fuel in industrial applications. In addition, availability of low cost & abundant natural gas, regulatory standards on account of emissions, high manufacturing output, and rising clean energy demand is likely to drive global industrial boilers market size from 2016 to 2024

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Global industrial boiler market report segregates the industry on the basis of its capacity (> 10 MMBtu/hr, 10-50 MMBtu/hr, 50-100 MMBtu/hr, 100-250 MMBtu/hr, and < 250 MMBtu/hr). This segment is categorised in terms of application scale. Major design parameters to determine boiler size and power includes pressure, temperature, and steam mass flow rate. For instance, refining industry requires boilers with extensive capacity, whereas, food processing may need limited capacity.

The industry is classified on technology basis (Water Tube, Fire Tube). In Water tube, water or steam is produced by combusting gas flowing outside in tube. Whereas, in fire tube technology, hot water or stream is produced by combusting gas flowing inside the tube. Also, water tube boilers comprise large share over fire tube boilers mainly due to its operational ability at higher pressure and temperature.

Global industrial boilers market share is further segmented on the basis of its application such as food processing, paper, textiles, chemicals, refining, metals, and others to produce high pressure steam. Increasing energy storage residential, industrial, and manufacturing sector such as food, paper, chemicals, and refining is anticipated to positively impact industry growth from 2016 to 2024. Packaging, Deaerators, super heater, safety valves, and water treaters are some features and accessories which are considered before industrial boilers installation.

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The industry is witnessing technological improvements focussing on efficiency and minimum cost design along with attention to reduce air pollutant emissions. Emission norms differs by fuel type, load factor, and size. Extensive use of natural gas and biomass as primary fuel in boilers application is anticipated to positively impact on industry growth.

About Global Market Insights:

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

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

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

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

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

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

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

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

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

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

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Key insights from the report include:

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

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

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

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

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

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

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

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

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

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

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

Key insights from the report include:

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

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

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

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

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

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

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

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

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

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

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Key insights from the report include:

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

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

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

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

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

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

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

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

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

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

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

Key insights from the report include:

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

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Fluorotelomers market size worth $700 million by 2023

Fluorotelomers Market size was 26.5 kilo tons in 2015, as per the latest research report by Global Market Insights, Inc. Rising safety concerns over fire hazards in oil & gas, chemical and textile industry have increased the importance of prevention measures and technologies for reducing such risks.
As a result, fire fighting foams may gain importance as a safety measure in manufacturing industry particularly oil & gas and chemical, which will stimulate global fluorotelomers market growth.

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These products are majorly used in treatment of textiles for increasing stain resistance caused by dust, solvents and chemicals. Telomers have the ability to provide protective surface finish to textile products which include gowns & surgical drapes, and provide protection to patients and healthcare workers from fluid based pathogens.

                    MEA fluorotelomers market size, by application, 2015 (USD Million)

MEA fluorotelomers market size, by application, 2015 (USD Million)

Asia Pacific, with China and India fluorotelomers market share leading the industry, saw regional consumption rise to over 12 kilo tons in 2015. Strong growth outlook for the textile industry, especially in India, China, Bangladesh, and Pakistan, will be critical for telomere demand evolution.
FTOH (Fluorotelomer alcohol) products continue to dominate global consumption, with USD 114 million in revenue for 2015. FTOH is used as an intermediate to manufacture home furnishings, fire fighting foams, surfactants, paper packaging, textiles, stone and tile and leather.
Strong growth in domestic manufacturing across South East Asia has led to a steady rise in the industrial production index. This should translate into significant gains for firefighting foam applications as a critical aspect of regulatory compliance.

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Increasing hydraulic fracturing, driven by U.S. shale gas and tight oil exploration and extraction may drive fire will influence fluorotelomer demand throughout the forecast timeframe. Stringent regulations by the U.S. EPA towards reducing PFCA and PFOA levels in FTOH and acrylate may hamper product demand and affect fluorotelomers market price trend.
Technology innovation and development of niche applications including metal plating, magazine paper, semiconductors and photography will pave opportunities for fluorotelomers market size growth.
Key insights from the report include:

  • Global fluorotelomers market size will see 12.7% CAGR, as per industry expectations, with 68.9 kilo tons by 2023.
  • Europe, dominated by UK, France and Germany fluorotelomers market share, may register close to 8.7 kilo tons by 2023 with expectation of below industry average growth throughout the forecast timeframe.
  • North America food packaging application, led by the U.S. consumer base, may grow at 7.5% CAGR and register close to USD 17 million by 2023.
  • Europe fluorotelomers iodide products may witness highest gains at 9.1% CAGR and register over USD 19.5 million by 2023. Asia Pacific fires fighting foam applications can expected gains at over 12% CAGR and may register over 10 kilo tons by 2023.
  • Latin America, led by Brazil, may expect significant gains throughout the forecast timeframe. Latin America textile applications may gain 8.5% CAGR and over USD 26 million by 2023.
  • MEA, led by petrochemical industry growth in Qatar, Saudi Arabia and UAE, is predicted to gain over 8.2% CAGR and register over USD 50 million by 2023.
  • Global fluorotelomers market share is highly regularized and driven by technology innovation. Notable industry players include Fluoryx, Daikin America, TCI, Dynax, AGC Chemicals and Wilshire Technologies.
  • Industry participants are characterized by integration across numerous stages of the value chain. Some of the companies are integrated and captively consume raw material for product manufacturing.

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Possible Expansion of Emission Control Areas (ECAs) to Propel LNG Bunkering Demand, reports TMR

tmr-160x160

The global LNG bunkering market is still in the initial phase of development. As a result, there are only a few notable players in this growing market. This market is capital intensive as building LNG bunkering terminals at trading ports requires significant capital investment. Moreover, port locations may act as an entry barrier for some companies, states a new report by Transparency Market Research (TMR). This is compounded by the fact that nearly all LNG suppliers offer standard fuel grades, leaving little room for achieving product differentiation. LNG bunkering companies usually enter into long-term LNG supply agreements with plant operators, thereby making it difficult for them to switch to any other LNG supplier for a fixed period of time.

The consumption of LNG is restricted to a few ports. LNG producers are collaborating with ship operating companies to develop LNG bunkering facilities at major international ports. The bargaining power of suppliers is expected to be medium in the coming years owing to an increase in the supply of LNG as a bunker fuel in major shipping centers of the world. Some of the companies operating in the industry are: Harvey Gulf International Marine LLC, Gasnor AS, Korea Gas Corporation, Royal Dutch Shell plc, and Gazpromneft Marine Bunker LLC.

Emphasis on Lower Emissions Drives Demand for LNG Bunkering Fuel

LNG bunkering is the only feasible option available that not only complies with MARPOL regulations but also meets the NOx emission control area (NECA) and sulfur emission control area (SECA) requirements. LNG fuel offers lower ship emissions as compared to traditional bunker fuels. The International Maritime Organization (IMO) also assists international ports in building the infrastructure for LNG bunkering.

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LNG is more economical than marine gas. Several new LNG plants are being constructed, which is creating a positive outlook for the market. The demand for LNG bunkering fuel is exceptionally high from offshore support vessels and ferries, says TMR. Since the exploration sector is growing, the consumption of LNG bunker fuel is also increasing.

Lack of Bunkering Infrastructure Restricts Market Growth

LNG is supplied as a bunker fuel in a limited number of ports. LNG bunkering facilities are not even available in major ports of the world. Thus, the inadequate bunkering infrastructure restricts the adoption of LNG bunker fuels. Additionally, the bunkering infrastructure required for using MDO/MGO as marine fuel is already present in all major ports of the world. The availability of these fuel grades in all the bunkering ports of the world is expected to threaten the global LNG bunkering market. The IMO has enforced the energy efficiency design index, which sets minimum energy efficiency requirements for ships constructed after 2013. Since these ships are specifically designed to consume less marine fuel, the demand for bunker fuel is expected to slow down.

The large bunker storage requirements in LNG fueled vessels require double the on-board space as compared to conventional diesel engine fuels. Many safety requirements need to be met while LNG bunkering is done. As LNG bunkering is still in its initial stages of development, companies have to spend significant amount of time and capital in training crew members. All these factors could considerably hamper the growth of the market.

Expansion of ECAs Create New Growth Opportunities in LNG Bunkering Market

The rising concerns regarding sulfur emissions are expected to result in a possible declaration of new ECAs. “The Gulf of Mexico, Turkish Straits, Sea of Japan, and Strait of Malacca are anticipated to be declared as ECAs in the near future,” states a TMR analyst. This is expected to propel the demand for LNG bunkering, creating new growth opportunities in the market.

According to the report, the global market opportunity in LNG bunkering is expected to rise to US$11.77 bn by 2025 in terms of revenue. In terms of volume, the global LNG bunkering market is projected to cross the 22,500 kilo tons mark by 2025. On the basis of end use, the tankers segment is expected to lead and account for 33.1% of the market by 2025. Europe, followed by Asia Pacific is expected to lead in the global LMG bunkering market by 2025.

This information is based on the findings of a report published by Transparency Market Research titled “LNG Bunkering Market – Global Industry Analysis, Size, Share, Growth, Trends, and Forecast 2014 – 2025.”

The global LNG bunkering market is segmented as follows:

End-Users:

  • Container Vessels
  • Tankers Vessels
  • Bulk & General Cargo Vessels
  • Ferries and OSV

Geography:

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

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About TMR

Transparency Market Research (TMR) is a market intelligence company driven by high-pedigree consultants and researchers. TMR leverages its Syndicated Research, Custom Research, and Market Consulting expertise to help businesses make accurate decisions. TMR’s exclusive blend of quantitative forecasting and trends analysis draws on proprietary data sources and techniques, while their data repository is continuously updated to reflect the latest trends.

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LNG Bunkering Market size is expected to expand over 20% CAGR.

new_march_final_logo_FB(1)

Stringent government rules and regulation of limiting sulfur emission is anticipated to drive the global LNG Bunkering market.

Natural gas is inflammable, colorless and cleanest as compared to other burning fuel such as coal and crude oil. It is a mixture of hydrocarbon gas predominantly methane and used for electricity generation, refueling vehicle as CNG, as fuel for boilers and air conditioners, for making ammonia, fertilizer and marine fuel as LNG etc. Lack of infrastructure, high initial investment in ships propulsion, dynamic price of LNG, high labor cost associated with the operation will act as a restraint for LNG bunkering Market size in the near terms.

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The ability of LNG to reduce emissions of harmful greenhouse gases would act as an opportunity for LNG bunkering Market. Liquefied Natural Gas is obtained by converting natural gas from its gaseous stage to liquefied stage at -161 degree Celsius (atmospheric pressure) so that natural gas is easy to ship and store when pipeline transport is not feasible. By converting natural gas into LNG its volume decreased by 1/600 factors. LNG is having higher heating value and lower density i.e. 458-463 Kg/m3 (depending on composition) so roughly on a volumetric basis 1.8 times more LNG needs to be bunkered compare to bunkering heavy fuel oil.
The process for loading LNG into fuel tanks is required special handling from loading Heavy fuel oil owing to some different fuel characteristics such as, LNG is a cryogenic liquid and is hazardous when it came into contact with any personnel and piping or conventional steel structure even a small spill of LNG can also cause a serious problem, LNG vapors can form explosive cloud in confined space. To reduce the risk of any property or personnel safety, it is necessary to set up security or safety zone around bunkering operation.

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The hull or deck structure, made up of material suitable for cold temperature is constructed in areas where LNG spills or drips may occur. Generally drip trays are used to enclose LNG leakage and prevent damage to the ship’s structure. Cryogenic equipments and pipes thermally insulated from structure of ship are required to construct at bunker station where LNG leaks are most probably to occur. The filling limit of LNG tank is expressed as a percentage of the total tank volume. The maximum filling limit of LNG tank is 98 percent at reference temperature.
Stringent government rules and regulation of limiting sulfur emission, in some countries price of natural gas and LNG has lower heating value basis over heavy marine oil, vessel transition from traditional bunkers to LNG propulsion will boost the demand of LNG Bunker during the forecast period. Global LNG bunkering market size has been segmented into end user and region. The end user includes bulk and general cargo vessels, container vessels, ferries and tankers vessels.

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Dimer Acid Market size is expected to reach USD 2.26 billion by 2023

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Global Dimer Acid Market size is expected to reach USD 2.26 billion by 2023; according to a new research report by Global Market Insights, Inc.

Polyamide resin consumption due to strong construction spending particularly in BRICS nations may drive product demand. Nonreactive polyamide resins dominated the application landscape by accounting over 40% of global dimer acid market share in 2015. Strong solvent demand from adhesives and printing inks will drive non-reactive polyamide resin applications.

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Oilfield chemical applications may witness significant gains at 4.5% CAGR. Increasing production across OPEC countries, U.S. and Russia will stimulate dimer acid demand. Increasing application scope in new avenges such as surfactants, alkyd resins, adhesives and oil additives may complement product demand.

Europe Dimer Acid Market size, by application, 2012-2023 (Kilo Tons)

Europe Dimer Acid Market size, by application, 2012-2023 (Kilo Tons)

Europe Dimer Acid Market size, by application, 2012-2023 (Kilo Tons)

APAC, led by China dimer acid market size, was largest regional industry and accounted for over 38% of global volume in 2015. Increasing infrastructure spending in China, Indonesia and India may drive regional demand. China’s push for shale gas exploration and oil production will drive demand in the region.

Increasing presence of small scale dimer acid producers in China coupled with capacity expansions by major overseas companies in the region should benefit industrial production. Raw material availability along with low manufacturing costs is one of the major factors aiding the production landscape in the region.
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Regulatory support by EPA & REACH owing to its non-toxic nature will favor industry growth. Raw material supply bottleneck issues for rapeseed oil, tall oil, soy oil and sunflower oil may affect the production and affect dimer acid market price trend.

Key insights from the report include:

Global dimer acid market size may reach 645.1 kilo tons by 2023 with industry gains predicted at 4.4%. Growing oilfield chemical demand due to increasing drilling activities is likely to positively influence market growth.

Reactive polyamide resin may witness highest gains at 4.6% CAGR. Rapidly increasing surface coatings and adhesive demand from construction & marine industry may propel dimer acid market size for reactive polyamide resins.

U.S. dimer acid market size was valued above USD 200 million for 2015 and industry predicts gains at over 6% CAGR up to 2023. Government initiatives in the region to enrich public infrastructure may favor epoxy & adhesives and construction coating agents demand.

Europe may surpass USD 690 million by 2023.  ECB has initiated a strategy for funding private sector afloat in the economy which may stabilize growth rates in major industries which include energy, construction, transportation, foundry and plastics.

Reactive polyamide resins demand in APAC may observe significant gains at 5.6% CAGR and surpass 90 kilo tons by 2023.

Global dimer acid market share is moderately consolidated with major industry players contributing over 35% of global industry demand. Major companies include Croda, Arizona Chemicals, BASF and Oleon.

Major companies are actively involved in M&A and joint venture agreements with small scale producers in order to strengthen their market presence. Emergence of large number of dimer acid producers in China may further increase competitiveness among market participants. Key companies are uplifting their production capacities in APAC in order to serve growing regional demand.

Global Market Insights has segmented the dimer acid industry on the basis of application and region:

Dimer acid application Analysis (Volume: Kilo Tons; Revenue: USD Million; 2012 – 2023)

Nonreactive polyamide resins

Reactive polyamide resins

Oilfield chemicals

Others

Dimer acid Regional Analysis (Volume: Kilo Tons; Revenue: USD Million; 2012 – 2023)

North America

U.S.

Europe

Germany

UK

Asia Pacific

China

India

Latin America

MEA

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

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Global compressed natural gas market to exhibit 12.30% CAGR due to the strict implementation of emission norms

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Compressed natural gas (CNG) as a clean alternative to gasoline or diesel has strengthened the argument for CNG as a transportation fuel. Strict emission control mandates imposed by governments across the world has made CNG one of the most viable clean fuels. The global CNG market was worth US$56.32 billion in 2013. Price incentives and government initiatives are expected to fuel the market growth at a CAGR of 12.3% during the period between 2014 and 2020. The global CNG market is estimated to be worth US$126.19 billion by 2020.

 

Why an Average Consumer is Hesitant to Shift to CNG?

 

Despite the compelling arguments in favor of CNG as a transportation fuel, consumers have not yet switched to the cleaner fuel as expected. Lack of adequate refueling infrastructure is one of the main reasons behind the slower adoption of CNG. For example, in the U.S., there are merely over 1,300 public and private natural gas stations that are clearly not sufficient for a country where CNG powers more than 150,000 vehicles. There are countless stretches of highway spanning hundreds of miles without any CNG refueling station. The situation is pretty much same in other countries as well.

 

Especially in rural areas, CNG is not easily available. The lack of refueling infrastructure can be traced to the high cost and operating expenses of compression equipment. Though a natural gas compression station should be ideally connected to a high pressure interstate pipe, the reality is different. The operating expenses further increase with lower natural gas inlet pressure. All these factors have led to the concentration of CNG refueling stations in urban areas only.

 

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CNG Refueling Station Development: A Cost Intensive Effort

 

According to the U.S. Department of Energy, in 2010, the cost of installing a CNG fueling station could scale up to US$2 million. The cost depends on factors such as daily required throughput and the speed of fueling (time-fill or fast-fill stations). Time-fill fueling stations require smaller compression equipment, which reduces the cost significantly but at the expense of prolonged fueling duration. Fast-fill stations utilize powerful compression equipment and high-pressure storage system that raises the overall cost.

 

Lack of public or private CNG refueling stations presents a daunting challenge especially to fleet operators for whom the fuel cost savings are lucrative. It has been observed that the development of CNG fueling infrastructure is based on four models: On-site private fueling, off-site private fueling, on-site fueling for fleets with public access, and off-site public fueling. Development of private fueling station at a fleet’s operating site compels a fleet operator to sign a long-term contract with adequate volume commitments to cover the cost of constructing the station. Though many third parties have come forward to build CNG refueling stations, it will take some time to gain the confidence of fleet operators as well as individual consumers regarding adoption of CNG.

 

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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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Biocides Market size worth $12 billion by 2022: Global Market Insights, Inc.

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Biocides Market size is expected to reach USD 12.01 billion by 2022; according to a new research report by Global Market Insights, Inc.

Central & South America biocides market share, by product, 2012 – 2022 (USD Million)

Central & South America biocides market share, by product, 2012 - 2022 (USD Million)
Increasing waste water treatment system coupled with stringent environmental regulations will drive global biocides market size growth. Increased health awareness related to bacterial growth and pathogens particularly in Asia Pacific and Latin America will stimulate product growth.

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North America, led by Mexico, Canada and U.S biocides market size, dominated demand, with U.S. set to surpass USD 3.7 billion by 2023.  may boost product demand paints & coatings applications. U.S government has invested significant amount of revenue to infrastructural development factor which may drive paints & coatings demand. VoC emission norms have led to paint manufacturers focusing on low emission formaldehyde free products. However, low emission paints are more susceptible to microbial activity which may promote biocides market size growth in paints to curb their activity.

Halogen compound based biocides market size dominates the product landscape, with growth set at 4.7% by 2022. Increasing application scope in municipal and industrial waste-water treatment with cooling systems has led to slower market growth owing to stringent regulations regarding halogen emissions. Halogen compounds are deployed as biocides in light of easy availability and low cost.

Oil & gas applications are likely to witness strong gains, with strong O&G exploration & production indicators providing significant growth opportunities. Primary uses include optimizing production rates, curb corrosion, and keep away functional fluids from getting spoiled. Storage areas and wells have certain bacteria that produce hydrogen sulfide which can be flammable and explosive.

Stringent regulation regarding product authorization before placing an order along with active substances such as carcinogens, mutagens and reprotoxic substances may hinder demand and affect biocides market price trend. In the U.S., biocides are regulated under the Federal Insecticide, Fungicide, and Rodenticide Act (FIFRA). This act aims at providing federal control over distribution, sale and use of all pesticides.

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Key insights from the report include:

  • Growth in healthcare industry owing to technology advancement and low cost medical facilities is expected to fuel phenolic biocides demand in APAC.
  • Copper biocides market size may surpass USD 1.75 billion by 2022 with expected gains at above 4.5% CAGR.
  • APAC personal care application may witness significant gains and surpass USD 550 million by 2022. Increasing application scope to inhibit fungus & bacteria growth to improve self-life of liquid soap and shower gels may drive product demand in APAC.
  • China organic acid based biocides are expected to witness above industry growth at 7.5% CAGR and surpass USD 170 million by 2022. Germany biocide market demand for HVAC applications is poised to exceed USD 25 million by 2022.
  • Wood preservation application market share is set to grow at 4.5% CAGR up to 2022. Furniture industry growth in India and China on account of positive housing sector outlook at domestic level is expected to have a favourable impact on biocides market.
  • Organosulfur market share in Brazil is set to grow at over 5.8% CAGR by 2022. Global biocides market share is concentrated. Ashland, Troy, Dow, Arch Chemicals and Thor Specialties are among notable industry players. Other participants include BASF, AkzoNobel, Lanxess, Albemarle and Champion Technologies.

Floating Liquefied Natural Gas (FLNG) Industry Research Review 2015/2016 & Outlook to 2023 – Transparency Market Research

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Natural gas has always been considered one of the most efficient fossil fuels and has witnessed rising demand in the last few decades. Natural gas extraction and production (E&P) infrastructure has also expanded accordingly and natural gas now counts as one of the most important types of fuel used around the world. However, despite significant expansion of offshore petroleum E&P undertakings, offshore natural gas E&P has traditionally consisted of transporting LNG in the gaseous form to onshore facilities, where it could be liquefied and supplied to further end users.

 

While this system has worked well so far, the construction costs of onshore liquefaction facilities are rising, leading to a need for more cost-effective solutions. This has given rise to the idea of constructing offshore LNG liquefaction facilities. This saves costs not only by eliminating the need for onshore liquefaction, but also by allowing petroleum companies to extract isolated reserves of natural gas. While transporting gaseous LNG from such isolated patches to onshore facilities can be prohibitively expensive, utilizing floating liquefaction and storage will allow companies to make the most of offshore LNG reserves.

 

The high amount of savings that can be gained from this system and widespread support in the oil and gas industry are the major drivers expected to propel the global liquefied natural gas market in the coming years.

 

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Global Floating Liquefied Natural Gas Market: Drivers and Restraints

 

The dramatic fall in oil prices in 2014 and 2015 has had a severe impact on the dynamics of the oil and gas industry. The price reduction has resulted in onshore natural gas liquefaction facilities becoming too expensive for most oil and gas players. This has had a positive effect on R&D into innovating floating natural gas liquefaction units.

 

The instability in the oil and gas market at present has also helped the floating liquefied natural gas market, since oil and gas players have become more cautious about investing in expensive onshore facilities. This has allowed floating liquefaction of natural gas to emerge as a potential solution, since floating natural gas liquefaction units can comfortably outperform onshore facilities, leading to a higher profit margin.

 

Since liquefied natural gas takes up less space than gaseous natural gas, it is drastically more economical for oil and gas companies to utilize offshore natural gas liquefaction units rather than transport gaseous natural gas in storage vessels.

 

The time required to construct an onshore natural gas liquefaction facility is also quite high. This has also led to rising acknowledgement of the benefits of using floating liquefaction vessels, which can be built quicker and do not require any long-term commitment.

 

Global Floating Liquefied Natural Gas Market: Competitive Dynamics

 

As of 2015, there were no floating liquefaction vessels in use in the global natural gas industry. Floating regasification vessels, which allow for efficient transport of LNG, are currently the dominant type of vessel in the offshore natural gas E&P scenario. Despite the expected rise of floating liquefaction vessels, floating regasification vessels will remain in production, since they are relatively cheap to build and can be bought or leased for a particular duration according to the demand. Among floating regasification vessels, Höegh LNG, Excelerate Energy, and Golar LNG have emerged as major players in the global market.

 

As for floating natural gas liquefaction vessels, there are three major projects expected to become operational in the coming months and years. The oil-rich waters off the northern coast of Colombia will see Exmar and Pacific Rubiales establish a floating natural gas liquefaction facility with a capacity of 0.5 MMTPA. PETRONAS is expected to produce 1-2 MMTPA liquefied natural gas from its floating liquefied natural gas unit in Malaysia, while Shell is expected to enter the floating liquefied natural gas market with its 3-MMTPA unit in West Australia, expected to become operational by 2017.

 

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