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Franklin Electric Co., Inc. is a manufacturer and distributor of products and systems focused on the movement and management of water and energy. The company offers pumps, motors, drives, and controls for use in a variety of residential, commercial, agricultural, industrial, and municipal applications.
Stationary fuel-cell applications (or stationary fuel-cell power systems) are applications for fuel cells that are either connected to the electric grid (distributed generation) to provide supplemental power and as emergency power system for critical areas, or installed as a grid-independent generator for on-site service.
PAFC have been used for stationary power generators with output in the 100 kW to 400 kW range and are also finding application in large vehicles such as buses. [5] Major manufacturers of PAFC technology include Doosan Fuel Cell America Inc. [6] (formerly ClearEdge Power & UTC Power [7]) and Fuji Electric.
The power density of the FeAc/Phen/ZIF-8-catalyst was found to be 0.75 W cm −2 at 0.6 V. This value is a significant improvement over the maximal 0.37 W cm −2 power density of previous M/N/C-catalysts and is much closer to matching the typical value of 1.0–1.2 W cm −2 for Pt-based catalysts with a Pt loading of 0.3 mg cm −2.
A stationary engine is an engine whose framework does not move. They are used to drive immobile equipment, such as pumps, generators, mills or factory machinery, or cable cars. The term usually refers to large immobile reciprocating engines, principally stationary steam engines [1] and, to some extent, stationary internal combustion engines.
The Department of Energy Solid State Energy Conversion Alliance found that, as of January 2011, stationary fuel cells generated power at approximately $724 to $775 per kilowatt installed. [204] In 2011, Bloom Energy, a major fuel cell supplier, said that its fuel cells generated power at 9–11 cents per kilowatt-hour, including the price of ...
Bloom sells the power from the units for 5-15% less than buying power from the grid, rather than selling the units themselves. [4] [25] The generators are normally used for large buildings, manufacturing facilities, or data centers to produce power on-site. [18] [25] The fuel cells are housed in metal cabinets. [12]
Solid oxide fuel cells have a wide variety of applications, from use as auxiliary power units in vehicles to stationary power generation with outputs from 100 W to 2 MW. In 2009, Australian company, Ceramic Fuel Cells successfully achieved an efficiency of an SOFC device up to the previously theoretical mark of 60%.