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A hybrid process combining oxygen enriched air combustion and membrane separation for post-combustion carbon dioxide capture

机译:混合工艺结合富氧空气燃烧和膜分离,用于燃烧后二氧化碳捕获

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摘要

For carbon dioxide capture and storage (CCS), similar to a large majority of industrial processes, the separation (i.e. capture) step dominates the costs of the technological chain. Based on a concept of minimal work of concentration, the evaluation of a tentative capture framework which combines an oxygen enrichment step before combustion and a CO2 capture step from flue gas has been investigated through a simulation study. The performances of a cryogenic oxygen production process have been used for the upstream part, while a membrane separation process based on CO2 selective materials has been investigated for CO2 capture. The potentialities of this hybrid process from the energy requirement point of view are discussed. It is shown that the hybrid process can lead to a 35% decrease of the energy requirement (expressed in GJ per ton of recovered CO2) compared to oxycombustion, providing optimal operating conditions are chosen.
机译:对于二氧化碳捕集与封存(CCS),与大多数工业过程相似,分离(即捕集)步骤主导着技术链的成本。基于最小工作量的概念,通过模拟研究,对结合燃烧前的富氧步骤和烟气中的CO2捕获步骤的暂定捕获框架进行了评估。低温氧气生产过程的性能已用于上游部分,而基于CO2选择性材料的膜分离过程已被研究用于CO2捕集。从能源需求的角度讨论了这种混合工艺的潜力。结果表明,与氧燃烧相比,如果选择了最佳的操作条件,则混合工艺可以使能量需求降低35%(以每吨回收的CO2的GJ表示)。

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