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首页> 外文期刊>International Journal of Greenhouse Gas Control >Comparison of the efficiency of carbon dioxide capture by sorption-enhanced water-gas shift and palladium-based membranes for power and hydrogen production
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Comparison of the efficiency of carbon dioxide capture by sorption-enhanced water-gas shift and palladium-based membranes for power and hydrogen production

机译:吸附增强的水煤气变换和钯基膜用于发电和制氢的二氧化碳捕获效率的比较

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摘要

Pre-combustion capture of carbon dioxide requires the industrial separation of carbon dioxide from hydrogen-rich streams. The present study analyses the thermodynamic efficiency penalty of this separation step and the achievable carbon capture ratio, with particular focus on high-temperature separation technologies: sorption-enhanced water-gas shift (SEWGS) and palladium membranes. Twelve different cases have been simulated, starting from coal-derived syngas or from natural gas derived reformate, using carbon dioxide capture by conventional absorption, SEWGS, and palladium membranes, and producing hydrogen-rich fuel for power production or pure hydrogen. For the production of decarbonised fuel from coal syngas, SEWGS always yields the lowest efficiency penalty per unit of carbon dioxide captured. For the production of pure hydrogen from coal syngas, SEWGS has a significantly higher carbon capture ratio than the alternatives while palladium membranes yield the lowest efficiency penalty per unit of carbon dioxide captured. For the production of decarbonised fuel from natural gas reformate, SEWGS is the most efficient technology in terms of efficiency penalty. For the production of pure hydrogen from natural gas syngas, palladium membranes yield the lowest efficiency penalty. (C) 2016 Elsevier Ltd. All rights reserved.
机译:燃烧前捕获二氧化碳需要工业上从富氢流中分离出二氧化碳。本研究分析了该分离步骤的热力学效率损失和可实现的碳捕集率,特别侧重于高温分离技术:吸附增强水煤气变换(SEWGS)和钯膜。模拟了十二种不同的情况,从煤制合成气或天然气重整产品开始,使用通过常规吸收膜,SEWGS和钯膜捕获的二氧化碳,生产用于发电的富氢燃料或纯氢。对于使用煤合成气生产脱碳燃料,SEWGS始终将捕获的每单位二氧化碳的效率损失降至最低。对于用煤合成气生产纯氢,SEWGS具有比其他替代品高得多的碳捕获率,而钯膜每捕获一单位二氧化碳的效率损失最低。对于使用天然气重整产品生产脱碳燃料,就效率损失而言,SEWGS是最高效的技术。为了从天然气合成气生产纯氢,钯膜的效率损失最低。 (C)2016 Elsevier Ltd.保留所有权利。

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