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1984
The steam reforming process converts hydrocarbons into mixtures of hydrogen, carbon monoxide, carbon dioxide, and methane $$C_n H_m + nH_2 O \to nCO + \left( {n + \frac{m}{2}} \right)H_2 \left( { - \Delta H_{298}^0 < 0} \right) $$ (1) $$ CO + H_2 O \rightleftarrows CO_2 + H_2 \left( { - \Delta H_{298}^0 = 41.2kJ\,mol^{ - 1} } \right) $$
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The steam reforming process converts hydrocarbons into mixtures of hydrogen, carbon monoxide, carbon dioxide, and methane $$C_n H_m + nH_2 O \to nCO + \left( {n + \frac{m}{2}} \right)H_2 \left( { - \Delta H_{298}^0 < 0} \right) $$ (1) $$ CO + H_2 O \rightleftarrows CO_2 + H_2 \left( { - \Delta H_{298}^0 = 41.2kJ\,mol^{ - 1} } \right) $$
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Steam reforming of hydrocarbon fuels
Catalysis Today, 2002InnovaTek has developed a proprietary catalyst formulation for the fuel processor that is being developed for use with polymer electrolyte membrane fuel cells. The catalyst has been tested for the steam reforming of various hydrocarbons such as natural gas, iso-octane, retail gasoline, and hexadecane. A 300 h continuous test has shown that the catalyst
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Steam Reforming and Dry Reforming of Methane
In this chapter, steam reforming of methane and dry reforming of methane processes have been taken into consideration from the perspective of sustainable H2 production. In this framework, thermodynamics and the side reactions are discussed in order to understand the general picture.openaire +1 more source
Catalysts for methanol steam reforming—A review
Applied Catalysis B: Environmental, 2010Hugo Silva +2 more
exaly
Steam and CO2 reforming of ethanol over Rh/CeO2 catalyst
Applied Catalysis B: Environmental, 2011Katia R De Souza +2 more
exaly

