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Stationary Fuel Cell Market at $122.9 Million Will Reach $2.6 Billion in 2017

Market Research Store releases a new market research report "Global Stationary Fuel Cell Market 2011 Forecast to Industry Size, Shares, Strategies, Trends, and Growth 2017" to add to its collection of research reports.

 

Deerfield Beach, FL -- (SBWIRE) -- 05/27/2016 -- a new study on Stationary Fuel Cells. Stationary Fuel Cell markets grow as the technology supports smaller more diverse units. The new study has 469 pages and 175 tables and figures.

These markets are poised to grow based on the creation of new efficiencies available directly to campus environments needing distributed energy that is separate from the grid. New composite materials based on nanotechnology are providing specialized high temperature ceramics catalyst materials to make systems more cost effective are achieving consistent price declines throughout the forecast period.

Distributed generation (DG) refers to power generation at the point of consumption. Generating power on-site, rather than centrally, eliminates the cost, complexity, interdependencies, and inefficiencies associated with transmission and distribution. Like distributed computing (i.e. the PC) and distributed telephony (i.e. the mobile phone), distributed generation shifts control to the consumer.

Distributed energy generation is the core of renewable energy from wind and solar. These intermittent sources of renewable energy are only feasible if there is a reliable way to store the energy for use when the wind is not blowing and when it is dark out. Stationary fuel cells provide that.

The electricity from the renewable energy can be used to manufacture hydrogen in a campus environment. Future generations of stationary fuel cells including Bloom Energy's energy servers offer the unique capacity to operate as an energy storage device, thus creating a bridge to a 100% renewable energy future.

Table Of Content

STATIONARY FUEL CELL MARKET SHARES AND MARKET FORECASTS
Stationary Fuel Cell Market Driving Forces
Stationary Fuel Cell Market Shares
Stationary Fuel Cell Market Forecasts
Vision For The New Electrical Grid
Hydrogen from Renewable Energy Fuels Stationary Fuel Cell

1. STATIONARY FUEL CELL MARKET DYNAMICS AND MARKET DESCRIPTION
1.1 Distributed Power Generation
1.1.1 Distributed Clean and Continuous Power Generation
1.1.2 Benefits of Bloom Energy
1.1.3 Stationary Fuel Cell Technology
1.2 Industrialization Requires Sustainable, Highly Efficient Energy
1.2.1 Fuel Cell Cogeneration
1.2.2 Stationary Fuel Cells Address Global Energy Challenge
1.2.3 Petroleum
1.3 Value Of Export Market Electricity
1.4 Fuel Cell Operation
1.4.1 Fuel Cells Definition
1.4.2 Fuel Cell Insulating Nature Of The Electrolyte
1.4.3 Inconsistency Of Cell Performance
1.4.4 Fuel Cell Performance Improvements
1.4.5 Transition To Hydrogen
1.5 Fuel Environmental Issues
1.5.1 Environmental Benefits Of Using Fuel Cell Technology
1.5.2 Greenhouse Gas Emissions
1.6 Battery Description
1.7 Fuel Cell Functional Characteristics
1.8 Water In A Fuel Cell System
1.9 Power Of A Fuel Cell
1.9.1 Gas Control
1.9.2 Temperature Control
1.10 Fuel Cell Converts Chemical Energy Directly Into Electricity And Heat
1.10.1 Types Of Fuel Cells
1.11 Hydrogen Fuel Cell Technology
1.11.1 Types Of Fuel Cells
1.11.2 Alkaline Fuel Cells
1.11.3 Phosphoric Acid Fuel Cells
1.11.4 Molten Carbonate Fuel Cells
1.11.5 Solid Oxide Fuel Cells
1.11.6 PEM Technology
1.11.7 Proton Exchange Membrane (PEM) Fuel Cells
1.11.8 PEM Fuel Cells
1.11.9 Proton Exchange Membrane (PEM) Fuel Cell
1.11.10 Proton Exchange Membrane (PEM) Membranes And Catalysts
1.11.11 Common Types Of Fuel Cells
1.12 Stationary Power Applications
1.12.1 Traditional Utility Electricity Generation
1.13 On Grid And Off Grid Issues
1.13.1 Stationary Public Or Commercial Buildings Fuel Cell Market
1.13.2 Distributed Power Generation
1.14 Impact Of Deregulation
1.14.1 Excess Domestic Capacity
1.14.2 Power Failures
1.15 Fuel Cell Issues
1.15.1 Solid Oxide Fuel Cells
1.15.2 Fuel Cell Workings
1.15.3 Environmental Benefits Of Fuel Cells
1.15.4 Fuel-To-Electricity Efficiency
1.16 Boilers
1.16.1 Domestic Hot Water
1.16.2 Space Heating Loops
1.16.3 Absorption Cooling Thermal Loads
1.17 Fuel Cell Reliability
1.17.1 Power Quality
1.17.2 Licensing Schedules
1.17.3 Modularity
1.18 Fuel Cell Supply Infrastructure
1.19 Laws And Regulations
1.19.1 National Hydrogen Association
1.19.2 Military Solutions

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