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Fuel flexibility in power generation by solid oxide fuel cells

open access: yesFuel flexibility in power generation by solid oxide fuel cells
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Fuel-flexible, fuel processing technology

Fuel Cells Bulletin, 1999
Hydrogen Burner Technology (HBT), established in 1992, has developed and patented a unique method of generating hydrogen from common infrastructure fuels. This non-catalytic process, known as the Under-Oxidised Burner (UOB TM ) technology, is convenient, inexpensive, flexible and virtually emission-free.
Scott Stell, John Cuzens
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Exploring the Fuel Flexibility of Microbial Fuel Cells

ECS Meeting Abstracts, 2006
Abstract not Available.
Orianna Bretschger   +5 more
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Importance of P-Series Fuels for Flexible-Fuel Vehicles (FFVs) and Alternative Fuels

Energy Sources, Part A: Recovery, Utilization, and Environmental Effects, 2006
As engine fuels, the most popular alternative fuels are bioetanol, biodiesel, and hydrogen. Recently, in addition to these, there are intensive researches on methyl-, and ethylalcohols, natural gas, liquefied petroleum gas, P-series, electricity, and solar fuels.
Kar, Yakup, Deveci, Huseyin
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Fuel-Flexible, Fuel Processors (F3P) - Reforming Infrastructure Fuels for Fuel Cells

SAE Technical Paper Series, 2001
<div class="htmlview paragraph">Fuel cells will undoubtedly be a part of the next generation of power supply technology. The gap that prevents fuel cells from entering into wide spread service is the lack of a hydrogen infrastructure, but fuel reformers can bridge that gap.
Shawn Barge, Richard Woods
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