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Hybrid membrane/cryogenic separation of oxygen from air for use in the oxy-fuel process

机译:用于氧气-燃料过程的空气中氧气的混合膜/低温分离

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摘要

The process of oxy-fuel combustion requires the separation of oxygen from air on a large scale for use in the combustion chamber. This separation is currently done through energy intensive cryogenic distillation. To reduce the overall energy requirements for air separation it is examined whether a hybrid membrane and cryogenic process be utilized instead. The examined process uses an O_2/N_2 permeable membrane to create oxygen enriched air. This enriched air is then turned into high purity oxygen using cryogenic distillation. Several arrangements of such a system are investigated and compared on a practical and thermodynamic level to the current cryogenic process in use. It is found that using a vacuum pump arrangement to draw air through the membrane has potential to reduce energy requirements from the current standard. It is also found that the hybrid system is more productive in small to medium scale applications than in large scale applications because of the increased irreversibilities in the cryogenic process at smaller scales.
机译:氧-燃料燃烧的过程需要从空气中大规模分离氧气以用于燃烧室。目前,这种分离是通过能量密集型低温蒸馏进行的。为了减少空气分离的总能量需求,研究了是否使用混合膜和低温工艺代替。所检查的过程使用O_2 / N_2渗透膜产生富氧空气。然后,使用低温蒸馏将富集的空气转化为高纯度氧气。研究了这种系统的几种布置,并在实用和热力学水平上将其与当前使用的低温工艺进行了比较。已经发现,使用真空泵装置将空气抽吸通过膜具有从当前标准降低能量需求的潜力。还发现,由于在较小规模的低温过程中不可逆性增加,因此该混合系统在中小型规模的应用中比在大规模应用中的生产率更高。

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