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Chemical Looping Technologies For H2 Production With CO2 Capture: Thermodynamic Assessment And Economic Comparison

机译:CO2捕获的H2生产技术循环技术:热力学评估和经济比较

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This work addresses the techno-economic assessment of two chemical looping technologies for H2 production from natural gas fully integrated with CO2 capture. In the first configuration, chemical looping combustion operated with a dual circulating fluidized bed system at atmospheric pressure is used as furnace for the reforming reaction. In the second configuration, a chemical looping reforming system at pressurized conditions is used for the production of the reformed syngas. Both configurations have been designed and compared with reference technologies for H2 production based on conventional fired tubular reforming with and without CO2 capture. The results of the analysis show that both new concepts can achieve higher H2 reforming efficiency than a conventional plant when integrated with CO2 capture (+8-10% higher). The improvement in the performance of the plant is accompanied with an efficiency penalty of 4-6% and the cost of CO2 avoidance varies from 20-85 ?/ton_(CO2).
机译:这项工作解决了从天然气与二氧化碳捕获完全集成的天然气生产的两种化学循环技术的技术经济评估。在第一配置中,在大气压下用双循环流化床系统操作的化学环燃烧用作重整反应的炉。在第二种构型中,加压条件下的化学环循环重整系统用于制备重整的合成气。基于常规烧制的管状重整和无二氧化碳捕获,两种配置都与参考技术进行了设计并与参考技术进行了设计。分析结果表明,当与二氧化碳捕获(+ 8-10%更高)集成时,两种新概念都可以比常规植物实现更高的H2重整效率。植物性能的改善伴随着4-6%的效率惩罚,二氧化碳避免的成本从20-85次变化?/吨(二氧化碳)。

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