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Carbon Dioxide Recycling by High Temperature Co-electrolysis and Hydrocarbon Synthesis

机译:通过高温协同电解和烃合成的二氧化碳回收

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Carbon dioxide recovered from concentrated sources, such as metallurgical reduction furnaces, cement kilns and fossil power plants can provide a valuable feedstock for a synthetic fuels industry based on energy from nuclear, solar, wind and hydropower sources. High temperature co-electrolysis of CO{sub}2 and steam to produce synthesis gas has been demonstrated using reversible solid oxide fuel cell technology. Where a source of high temperature process heat is available, such as from an advanced high temperature nuclear reactor or solar dish concentrator, the endothermic electrolysis reactions can utilize both thermal and electrical inputs in such a way that the conversion efficiency within the cell is 100%. Synthesis gas produced in a co-electrolysis cell has been further reacted over a catalyst to produce conventional hydrocarbon fuels. Widespread implementation of synfuel production from CO{sub}2 will enable a much larger reliance on intermittent renewable energy than can be accommodated by conventional electric demand profiles.
机译:从浓缩来源中回收的二氧化碳,例如冶金还原炉,水泥窑和化石发电厂可以为基于来自核,太阳能和水电源的能量的合成燃料行业提供有价值的原料。使用可逆固体氧化物燃料电池技术证明了CO {亚} 2和蒸汽以产生合成气的高温协同电解。在高温工艺热源可用的情况下,例如从先进的高温核反应器或太阳能烟剂浓缩器,吸热电解反应可以利用热和电输入,使得细胞内的转化效率为100% 。在共电解槽中产生的合成气体在催化剂上进一步反应以产生常规的烃燃料。来自CO {SUB} 2的SONFUEL生产的广泛实现将使依赖于间歇可再生能源的依赖程度更大,而不是通过传统的电气需求配置文件所容纳。

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