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Fuelcell Energy Inc FCEL

FuelCell Energy, Inc. is engaged in delivering environmentally responsible distributed baseload energy platform solutions through its fuel cell technology. The Company is a global manufacturer of stationary fuel cell and electrolysis platforms that decarbonize power and produce hydrogen. Its commercial technology produces electricity, heat, hydrogen, and water while separating carbon for utilization and/or sequestration. Its product portfolio is based on two electrochemical platforms, carbonate, and solid oxide. Both platforms can support power generation and combined heat and power applications using a variety of fuels, including natural gas, renewable biogas, and hydrogen. Its Carbonate platforms use a mixture of reforming and electrolysis, while solid oxide platforms can be used for pure hydrogen electrolysis. Its solid oxide platform operates on pure hydrogen fuel. Its commercial platforms include SureSource 1500, SureSource 3000, SureSource 4000 and SureSource Hydrogen.


NDAQ:FCEL - Post by User

Post by 3.1417on Apr 23, 2024 4:27pm
66 Views
Post# 36003962

Exhibition & Conference Booth # 98

Exhibition & Conference Booth # 98Wednesday April 24; 8:00 a.m. - 5:00 p.m.

Solid Oxide Electrolyzer Cell - Produce up to 600kg of H2 per day
Produce hydrogen
Solid oxide electrolysis uses less electricity to produce hydrogen and can reduce energy costs and consumption.
 
FuelCell Energy’s Solid Oxide Electrolyzer Cell (SOEC) produces hydrogen at nearly 90 percent electrical efficiency without excess heat and can reach 100 percent efficiency when using excess heat. Hydrogen produced from electrolysis can be stored long term and transported, allowing energy from wind, solar, and nuclear to be available on demand.
 
Low-cost hydrogen production
The largest factor in the cost of electrolysis-produced hydrogen is the cost of electricity. Consequently, efficiency is one of the most effective ways to lower cost. We believe FuelCell Energy’s solid oxide platform is among the most efficient available electrolysis technologies. This is expected to translate to a 20 to 30 percent lower cost of hydrogen compared to lower efficiency and low-temperature electrolysis.
 
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