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Sunday, 18 January 2015

Lithium iron phosphate battery is a type of lithium ion battery and is used in high power applications, such as EV, HEV, and portable consumer electronic devices. It is a rechargeable battery that consists of iron phosphate that acts as cathode and carbon as anode. 
This battery has good electrochemical performance with low resistance. The advantage of using this battery is that it increases the thermal stability and safety and has high current density and longer lifespan as compared to other lithium ion batteries. This technology has excellent deep-discharge cycle life that shields the battery by cycling it more shallowly.
The report covers the present scenario and the growth prospects of the Global Lithium Iron Phosphate Battery market for the period 2015-2019. The market has been segmented on the basis of the following: end-user industry application (EVs and HEVs, consumer electronics, renewable power, and others) and geography.

TechNavio's report, the Global Lithium Iron Phosphate Battery Market 2015-2019, has been prepared based on an in-depth market analysis with inputs from industry experts. The report covers the Americas, and the APAC and EMEA regions; it also covers the Global Lithium Iron Phosphate Battery  market landscape and its growth prospects in the coming years. The report includes a discussion of the key vendors operating in this market.
Key Regions
·         Americas
·         APAC
·         EMEA       
Key Vendors
·         A123 Systems
·         BYD
·         Electric Vehicle Power System Technology
·         Hi power New Energy Group
·         Shenzhen OptimumNano

Other Prominent Vendors
·         Phostech
·         Pihsiang Energy Technology
·         Pulead Technology Industry
·         Victory Battery Technology
·         K2Energy
·         GAIA
·         LiFeBATT

Key Market Driver
Increased Demand from EVs and HEVs Segments
For a full, detailed list, view our report

Key Market Challenge
Lack of Knowledge about Lithium Iron Phosphate Battery Technology
For a full, detailed list, view our report

Key Market Trend
Growing Demand from China
For a full, detailed list, view our report

Key Questions Answered in this Report
·         What will the market size be in 2019 and what will the growth rate be?
·         What are the key market trends?
·         What is driving this market?
·         What are the challenges to market growth?
·         Who are the key vendors in this market space?
·         What are the market opportunities and threats faced by the key vendors?
·         What are the strengths and weaknesses of the key vendors?
Key Questions Answered in this Report
What will the market size be in 2019 and what will the growth rate be? What are the key market trends? What is driving this market? What are the challenges to market growth? Who are the key vendors in this market space? What are the market opportunities and threats faced by the key vendors? What are the strengths and weaknesses of the key vendors?
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Sunday, 11 January 2015

The report firstly reviews the basic information of 1,2,3,4-Butanetetracarboxylic Dianhydride Industry including its classification, application and manufacturing technology; The report then explores global and Chinas top manufacturers of 1,2,3,4-Butanetetracarboxylic Dianhydride listing their product specification, capacity, Production value, and market share etc.

The report further analyses quantitatively 2009-2014 global and Chinas total market of 1,2,3,4-Butanetetracarboxylic Dianhydride by calculation of main economic parameters of each company; The breakdown data of 1,2,3,4-Butanetetracarboxylic Dianhydride market are presented by company, by country, and by application; The report also estimates 2014-2019 market development of 1,2,3,4-Butanetetracarboxylic Dianhydride Industry.

Browse Complete Report with TOC: http://www.marketresearchstore.com/report/global-and-chinese--butanetetracarboxylic-dianhydride--industry-2458

The report then analyses the upstream raw materials, downstream clients, and current market dynamics of 1,2,3,4-Butanetetracarboxylic Dianhydride Industry. In the end, the report makes some proposals for a new project of 1,2,3,4-Butanetetracarboxylic Dianhydride Industry and a new project of 1,2,3,4-Butanetetracarboxylic Dianhydride Industry before evaluating its feasibility. Overall, the report provides an in-depth insight of 2009-2014 global and China 1,2,3,4-Butanetetracarboxylic Dianhydride industry covering all important parameters.

Buy Copy of Report: http://www.marketresearchstore.com/checkout/reportId/2458/reportType/0

Table of Contents
Chapter One Introduction of 1,2,3,4-Butanetetracarboxylic Dianhydride Industry
1.1 Brief Introduction of 1,2,3,4-Butanetetracarboxylic Dianhydride
1.2 Development of 1,2,3,4-Butanetetracarboxylic Dianhydride Industry
1.3 Status of 1,2,3,4-Butanetetracarboxylic Dianhydride Industry

Chapter Two Manufacturing Technology of 1,2,3,4-Butanetetracarboxylic Dianhydride
2.1 Development of 1,2,3,4-Butanetetracarboxylic Dianhydride Manufacturing Technology
2.2 Analysis of 1,2,3,4-Butanetetracarboxylic Dianhydride Manufacturing Technology
2.3 Trends of 1,2,3,4-Butanetetracarboxylic Dianhydride Manufacturing Technology

Chapter Three Analysis of Global Key Manufacturers (Including Company Profile, Product Specification, 2009-2014 Production Information etc.)
3.1 Eastman
3.2 Solvay
3.3 Solvay
3.4 Celanese
3.5 Company E
3.6 Company F
3.7 Company G
3.8 Company H
3.9 Company I
3.10 Company J

Chapter Four 2009-2014 Global and China Market of 1,2,3,4-Butanetetracarboxylic Dianhydride
4.1 2009-2014 Global and China Capacity, Production and Production Value of 1,2,3,4-Butanetetracarboxylic Dianhydride Industry
4.2 2009-2014 Global and China Cost and Profit of 1,2,3,4-Butanetetracarboxylic Dianhydride Industry
4.3 Market Comparison of Global and China 1,2,3,4-Butanetetracarboxylic Dianhydride Industry
4.4 2009-2014 Global and China Supply and Consumption of 1,2,3,4-Butanetetracarboxylic Dianhydride
4.5 2009-2014 China Import and Export of 1,2,3,4-Butanetetracarboxylic Dianhydride

Chapter Five Market Status of 1,2,3,4-Butanetetracarboxylic Dianhydride Industry
5.1 Market Competition of 1,2,3,4-Butanetetracarboxylic Dianhydride Industry (By Company)
5.2 Market Competition of 1,2,3,4-Butanetetracarboxylic Dianhydride Industry (By Country: Including Europe, U.S., Japan, China etc.)
5.3 Market Analysis of 1,2,3,4-Butanetetracarboxylic Dianhydride Industry (By Application)

Chapter Six Market Forecast of 2014-2019 Global and China 1,2,3,4-Butanetetracarboxylic Dianhydride Industry
6.1 2014-2019 Global and China Capacity, Production, and Production Value of 1,2,3,4-Butanetetracarboxylic Dianhydride
6.2 2014-2019 1,2,3,4-Butanetetracarboxylic Dianhydride Industry Cost and Profit Estimation
6.3 2014-2019 Global and China Market Share of 1,2,3,4-Butanetetracarboxylic Dianhydride
6.4 2014-2019 Global and China Supply and Consumption of 1,2,3,4-Butanetetracarboxylic Dianhydride
6.5 2014-2019 China Import and Export of 1,2,3,4-Butanetetracarboxylic Dianhydride


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The report firstly reviews the basic information of 1,2,3,4-Butanetetracarboxylic Acid Industry including its classification, application and manufacturing technology; The report then explores global and Chinas top manufacturers of 1,2,3,4-Butanetetracarboxylic Acid listing their product specification, capacity, Production value, and market share etc.

The report further analyses quantitatively 2009-2014 global and Chinas total market of 1,2,3,4-Butanetetracarboxylic Acid by calculation of main economic parameters of each company; The breakdown data of 1,2,3,4-Butanetetracarboxylic Acid market are presented by company, by country, and by application; The report also estimates 2014-2019 market development of 1,2,3,4-Butanetetracarboxylic Acid Industry.

Browse Complete Report with TOC: http://www.marketresearchstore.com/report/global-and-chinese--butanetetracarboxylic-acid--industry-2460

The report then analyses the upstream raw materials, downstream clients, and current market dynamics of 1,2,3,4-Butanetetracarboxylic Acid Industry. In the end, the report makes some proposals for a new project of 1,2,3,4-Butanetetracarboxylic Acid Industry and a new project of 1,2,3,4-Butanetetracarboxylic Acid Industry before evaluating its feasibility. Overall, the report provides an in-depth insight of 2009-2014 global and China 1,2,3,4-Butanetetracarboxylic Acid industry covering all important parameters.

Buy Copy of Report: http://www.marketresearchstore.com/checkout/reportId/2460/reportType/0

Table of Contents
Chapter One Introduction of 1,2,3,4-Butanetetracarboxylic Acid Industry
1.1 Brief Introduction of 1,2,3,4-Butanetetracarboxylic Acid
1.2 Development of 1,2,3,4-Butanetetracarboxylic Acid Industry
1.3 Status of 1,2,3,4-Butanetetracarboxylic Acid Industry

Chapter Two Manufacturing Technology of 1,2,3,4-Butanetetracarboxylic Acid
2.1 Development of 1,2,3,4-Butanetetracarboxylic Acid Manufacturing Technology
2.2 Analysis of 1,2,3,4-Butanetetracarboxylic Acid Manufacturing Technology
2.3 Trends of 1,2,3,4-Butanetetracarboxylic Acid Manufacturing Technology

Chapter Three Analysis of Global Key Manufacturers (Including Company Profile, Product Specification, 2009-2014 Production Information etc.)
3.1 Eastman
3.2 Solvay
3.3 Solvay
3.4 Celanese
3.5 Company E
3.6 Company F
3.7 Company G
3.8 Company H
3.9 Company I
3.10 Company J

Chapter Four 2009-2014 Global and China Market of 1,2,3,4-Butanetetracarboxylic Acid
4.1 2009-2014 Global and China Capacity, Production and Production Value of 1,2,3,4-Butanetetracarboxylic Acid Industry
4.2 2009-2014 Global and China Cost and Profit of 1,2,3,4-Butanetetracarboxylic Acid Industry
4.3 Market Comparison of Global and China 1,2,3,4-Butanetetracarboxylic Acid Industry
4.4 2009-2014 Global and China Supply and Consumption of 1,2,3,4-Butanetetracarboxylic Acid
4.5 2009-2014 China Import and Export of 1,2,3,4-Butanetetracarboxylic Acid

Chapter Five Market Status of 1,2,3,4-Butanetetracarboxylic Acid Industry
5.1 Market Competition of 1,2,3,4-Butanetetracarboxylic Acid Industry (By Company)
5.2 Market Competition of 1,2,3,4-Butanetetracarboxylic Acid Industry (By Country: Including Europe, U.S., Japan, China etc.)
5.3 Market Analysis of 1,2,3,4-Butanetetracarboxylic Acid Industry (By Application)

Chapter Six Market Forecast of 2014-2019 Global and China 1,2,3,4-Butanetetracarboxylic Acid Industry
6.1 2014-2019 Global and China Capacity, Production, and Production Value of 1,2,3,4-Butanetetracarboxylic Acid
6.2 2014-2019 1,2,3,4-Butanetetracarboxylic Acid Industry Cost and Profit Estimation
6.3 2014-2019 Global and China Market Share of 1,2,3,4-Butanetetracarboxylic Acid
6.4 2014-2019 Global and China Supply and Consumption of 1,2,3,4-Butanetetracarboxylic Acid
6.5 2014-2019 China Import and Export of 1,2,3,4-Butanetetracarboxylic Acid


Read more/Request for Sample: http://www.marketresearchstore.com/report/global-and-chinese--butanetetracarboxylic-acid--industry-2460

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Saturday, 10 January 2015

WinterGreen Research announces that it has a new study on Language Translation Software Market Shares and Forecasts, Worldwide, 2011-2017. The 2011 study has 712 pages, 256 tables and figures.

Hybrid machine translation is evolving more sophisticated software that actually works well enough to be useful, The hybrid systems provide dramatic improvement, creating the ability to use machine translation in a wide variety of situations.

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Hybrid machine translation combines the features of statistical and rules based approaches. Human language technology solution combines the strengths of rule-based and statistical systems. The term hybrid in this context means statistical MT (SMT) systems use examples and apply statistical techniques to a large body of language data to perform translations combined with rules based approaches.

Statistical SMT systems learn from text alignment rather than in depth grammatical knowledge as with rules based RBMT systems. Machine translation takes into account the grammatical structure of each language and uses contextual rules to select among multiple meanings, in order to transfer sentences from the source language (to be translated) into the target language (translation).

Rule-based machine translation (RBMT) uses linguistic rules. This means that words and phrases are translated based on an in-depth knowledge of the language. That is, the most suitable words of the target language replace the ones in the source language. RBMT provides more of a human element to the translation because the rules are user-defined based on an understanding of the target language.

Rule-based methods parse a text, usually creating an intermediary, symbolic representation from which the text in the target language is generated. These methods require extensive vocabulary along with word meanings, how words are formed and how words are arranged to create meaning, all governed by large sets of rules.

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RBMT programs are highly advanced and allow a native speaker of the target language to comprehend what is written by the native speaker of the source language. The advantage of rule based translation is that it accommodates fairly abstract text and the informative aspects of the translation.

Rules based translation provides high coverage of a greater number of domains and types of texts. Rules support information being transferred from the source to the target language in an intelligent manner. Adequacy refers to the quality of the information that was transferred from the source to the target language.

Globalization of the economy is occurring with the advent of the integrated enterprise. As companies position to sell goods and services worldwide, globalization becomes a fact of life. Teams of people work together from many different countries sharing workload and marketing efforts.

The globalization of the economy has brought into existence 1,000 globally integrated enterprises that sustain operations in 160 countries. These commercial organizations generally have more money than most countries, all but the largest countries. As such the commercial enterprise has become a global force, changing the nature of combat by their very existence.

Even war is changing. Negotiated settlements are a result of the shift of military to peace keeping law enforcement. There is a fundamental shift in the nature of combat as military robots and unmanned vehicles get adopted.

Cell phone ubiquity, the globally integrated enterprise, the Internet, automated software translation all complement military robots to change the nature of combat. Armed intervention needs to have automated process, and the unmanned ground vehicles provide efficiency in the context of this changed war environment.

As people have more in common with each other, the world becomes a melting pot, with people within nations dependent on and interacting with people of other nations. Communication has become facilitated worldwide. Nationalistic passion has become an anachronism in this context.

Prime figures in the globalization of crime are emerging, that change the nature of combat. The new type of organized crime is evolved by people who are educated, have international ties, and operate with the support of the state. It is not large countries like Germany, Russia, North Korea, China and India that are the foe; it is globally integrated terrorist organizations pushing drugs and other illegal activities that are the enemy. Large and mid size UGVs provide the ability to quickly and with relative safety, track and capture these rogue bands of bad guys.

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Military unmanned ground vehicles support a shift in the very fundamental goal of military action. Military action has become a matter of protecting a nations’s own borders. The US is not in Iraq or Afghanistan for any other reason than to protect the US borders, prevent bad guys from blowing up buildings or otherwise creating havoc in the internal borders of the US.

Language Translation Software markets are growing because business is expanding in a manner that provides enterprise presence all over the world. Markets at $575.5 million in 2010 are anticipated to reach$3 billion by 2017.

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Telepresence Market Shares and Forecasts, Worldwide, 2010-2016. Telepresence is useful as a system to support unified communications systems. Telepresence is used to create collaboration a cross geographical boundaries. The study has 602 pages and 182 tables and figures. Telepresence is considered to be any video communication system that leverages HD, high definition.

Virtually every video collaboration system does leverage HD these days. Telepresence supports consistent contact with a group f distributors or customers. Telepresence provides a way to keep in touch with clients and the line of business.


It is HD TV that provides the essence of telepresence. Broadcast quality images are available from a lot of different technologies. It is the life size screen that is so compelling.

Telepresence provides a consistency in the remote relationships. Significant sales calls need to be done face to face. Telepresence provides a way to supplement the face to face calls, to provide a continuity to marketing and management efforts that is not replicable in any other way. Telepresence is like a drum beat, it is regular.

Major drivers include increased productivity as well as cost savings. Video conferencing market drivers are indicative of significant, changing ways of implementing presence communications capability. Technology has improved working relationships, it reduces costs of doing business, and it improves responsiveness.
Telepresence is next generation high definition TV videoconferencing. Telepresence leverages high definition video and high definition audio to support collaboration across distance. People located remotely can communicate effectively because of the compelling experience provided by HD TV.

According to Susan Eustis principal author of the study, “The bigger screens, the audio clarity, the visual clarity of telepresence are compelling. The technology components are positioned to work together to provide a more lifelike communication experience. Collaboration is facilitated by enabling sharing of documents and power point presentations as if people were in the same room.”
Telepresence is an emerging market segment driven by the need for geographically dispersed groups to communicate as if they are all in the same room. 

The telepresence solutions provide an immersive collaboration experience where remote participants are lifelike in size and voice and visual clarity. Telepresence solutions are standards-based and are available in a wide array of configurations that include full eight or 16-foot high definition cinematic views, high definition sound, and eye connect technology that places the camera at eye level for more natural face-to-face interaction.

The telepresence solutions are available in multiple configurations accommodating from four to 28 people. Complete telepresence solutions have list prices ranging from US$199,999 to US$695,000. Systems are available for as low as $100. HD is what defines telepresence. TelePresence digital communications creates life size representations of people and documents located remotely in a conference room. Robots are being used as security systems that create remote communication experiences. 

TelePresence systems are enabling a network to change the way people live, work, learn and play. Telepresence brings virtual meetings to a sense of the participants being in the same room. HD TV is the technical breakthrough that makes this happens. Three HD TV screens in a conference room bring a sense of realism that is similar to being there. The reason most people travel for business is to enable ad hoc decision making. Telepresence carries that type of ad hoc decision making forward into the world of virtual meetings.

High quality images and sound, simplicity and tightly integrated service elements enable high quality ad hoc decision making. These features enable users to work productively without experiencing communication fatigue. They can work for longer hours due to the natural feel of the solution. As a result, a large number of existing trials have turned into production environments for telepresence. Users have increased the deployment of telepresence solution across their departmental regions, providing a global reach in many cases.


Polycom has an open collaboration network strategy. This provides an open and interoperable collaboration solution that gives customers greater flexibility and investment protection for their UC environment. 

The worldwide revenue opportunity for telepresence and related services is anticipated to reach US $ 6.7 billion by 2016. Markets are anticipated to grow in response to an increase in the availability of broadband communications, the inherent value of video in supporting collaboration among people located remotely from each other, and the inherent value of sustained, frequent communication when people are located remotely from each other.

Market growth is a result of demand for communication that benefits from controlling connectivity in a manner that will scale and is feasible for use by business units and partners. Systems are useful for implementing the supply chain economics that make the enterprise competitive . New properties of systems are evolving rapidly.

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Friday, 9 January 2015

Direct Methanol Fuel Cell Market Strategy, Market Shares, and Market Forecasts. The 2010 study has 279 pages, 66 tables and figures. Worldwide markets are poised to achieve significant growth as a new generation of portable electronics has need for longer power on times. DMFC is positioned to provide longer power on times with rapid refill of charging liquid. Units are expected to reach cost parity with thin film batteries by the end of the forecast period. Demand for more portable electricity is coming with the increased use of broadband cell phones, laptop computers, and tablet PCs.
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According to Susan Eustis, the lead author of the study, gthe use of DMFC is a breakthrough for portable energy delivery. Throughout the forecast period DMFC miniature fuel cells are expected to be able to enable consumers to talk for up to a month continuously on a cellular phone without recharging.h Fuel cells change the telecommuting world, powering laptops and digital handheld devices. Personal digital devices work for hours. DMFCs run longer than batteries. The fuel is abundant and available.
The single largest direct]methanol fuel cell (DMFCs) market driving force is that devices can be used in airplanes. Approvals came after safety standards were in place. The International Civil Aviation Organization and the US Department of Transportation have allowed methanol fuel cells and their cartridges to be carried in the passenger cabin of airplanes.
This means air travels will start to buy them. The convenience and the longer life for power is a compelling advantage. To keep an executive, manager, or service person working while traveling provides an increase in productivity. Software engineers can work more productively while commuting.
DMFC is a subset of the proton exchange membrane (PEM) fuel cell technology. The direct methanol fuel cell or DMFC is emerging as a significant energy source for some cell phone and laptop applications. DMFC emergence is viable in the portable device sector. Commercialization is driven by consumer demands and desires for a power source that can operate alone or as a supplement synergistically with existing advanced battery technologies.

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DMFC technology is used to power consumer]portable devices. Applications are achieved through continuing research and innovation. Micro fuel cells are being developed. These are showing efficiency rates close to 40 percent.
Methanol is the type of material used in the fuel cell stack to generate the chemical reaction (electrolyte) needed to make electricity. DMFC fuel cells emit fewer pollutants than other forms of energy generation, they have the potential to use 50 % less energy than internal combustion engines and 30 % less energy than conventional gas]fired power plants.
Nanotechnology improves fuel cells. Nanotechnology is used for making fuel cell catalysts. Catalysts are used with fuels such as hydrogen or methanol to produce hydrogen ions. Platinum, which is very expensive, is the catalyst typically used in this process. Companies are using nanoparticles of platinum to reduce the amount of platinum needed, or using nanoparticles of other materials to replace platinum entirely and thereby lower costs.
Nanotechnology is providing significant breakthroughs in catalysts that provide improvements in capability. Through extensive catalyst development and use of superior membrane materials, QuantumSphere has developed MEA technology that allows the direct methanol fuel cell to operate with up to 10X higher methanol fuel concentrations, without a sacrifice in power, which can directly lead to as much as a ten times reduction in size and weight of the fuel tank.
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QSI’s catalyst solution uses lower cost metals, engineered at the nano scale, to replace platinum. Palladium is one example, as it resembles platinum chemically, is extracted from copper]nickel ore, and is already used as a catalyst material in the catalytic converters of automobiles. Palladium is also about 70% less expensive than platinum, and when used at the nano scale in direct methanol fuel cells, it has demonstrated an increased power density of 45%.
Fuel cells run on methanol, an inexpensive alcohol used in windshield wiper fluid. This DMFC market has as the earliest adapters users of laptop computers, particularly for the military. These users are dependent on mobile electronics. Electronics needs to operate in the field for long times and needs rapid recharging. Military applications, enhanced cell phones and other hand held devices lead adoption of DMFCs into the consumer markets.
Small portable devices are well suited, in terms of storage, safety, and energy density, to use of methanol as a fuel for fuel cells. Direct hydrogen feed for fuel cells requires complicated storage and would take much more space in small portable devices. There is also the safety issue of compressed hydrogen being allowed on airplanes. Cartridges of methanol can fit into existing retail channels or be available from OEMs. Methanol cartridges could be available through any number of delivery channels and accepted without difficulty into the consumer market.
Direct Methanol Fuel Cell (DMFC) market forecasts indicate markets at $65.6 million in 2009 are anticipated to reach $1.1 billion by 2016. DMFC will account for 85% of the portable fuel cell market by the end of the forecast period.
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The 2010 study has 269 pages, 83 tables and figures. Worldwide markets are poised to achieve significant growth as wind electricity generation has reached cost parity with fossil fuels and demand for more electricity generation is coming with the increased use of electric vehicles.

According to Susan Eustis, the lead author of the study, “the use of utility scale wind generators represents an emerging high growth market. New technologies have increased the efficiency of wind based electricity generation and of systems installations both onshore and off shore.

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The evolution of hydrogen campus fuel cell systems will introduce electricity storage that makes the wind generation systems even more cost efficient. Thin film battery storage of electricity in the electric vehicles and in hardened cases on the ground will increase the efficiency and consistency of wind generated electricity delivery”.

The wind turbine renewable energy accounted for 62% (17 GW) of the new electricity generation capacity installed in the European Union (EU) in 2009. Rural economic development has had a focus on wind generated electricity. Wind turbines contribute to energy price stability. Wind generated energy helps address global climate change.

Every energy technology is supported by federal governments. 

Wind energy is gaining increasing recognition that a higher proportion of subsidies are needed as leaders begin to realize the need for a sustainable energy policy. The visibility into the oil drilling companies brought by the BP oil spill has had what promises to be a long term impact on the market.
The availability of hydrogen storage and electricity generation in the form of stationary fuel cells that work in campus and substation environments is going to impact wind generated electricity. Hydrogen turns out to be a good way to store excess electricity generated by wind.

The US the government accountability office (GAO) looked at federal incentives for electricity between Fiscal Year (FY) 2002 and FY 2007 and noticed that tax expenditures largely go to fossil fuels. About $13.7 billion was provided to fossil fuels and $2.8 billion to renewables. With the BP oil spill in the Gulf of Mexico, this policy ratio is likely to change, tilting more toward renewable energy. Wind is the most economically viable of the renewable energy sources.

Wind power systems have proved that they can readily be accommodated into existing fossil fuel and nuclear electric system operations reliably and economically. Wind Turbines are achieving combination with natural gas systems to create a hybrid unit that operates continuously. The natural gas generator uses the wind turbines grid systems to create an efficiently operating unit. Similar designs are evolving as hybrid wind turbines that operate in combination with solar energy systems.

Bye Global Utility Scale Wind Turbine Market Report @ http://www.marketresearchstore.com/checkout/reportId/2558/reportType/0

Electric vehicles provide a significant market thrust to the need for wind generated electricity. Electric vehicles will depend on curbside and garage based metered delivery of electricity. Electricity generated from renewable sources will replace gasoline in the future.
Utility scale wind turbine markets at $35.6 billion in 2009 are anticipated to reach $130 billion by 2016. 

The enormous size of the existing market gives a significant market thrust going forward, because the major vendors and their customers have access to capital markets. This access is needed to achieve the significant growth that will be achieved as wind and solar energy replace the fossil fuel industry. Only natural gas will compete with the renewable sources of energy for utilities as new capacity is put in place and aging existing facilities are retired, to be replaced with more modern facilities.

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