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Pressure-vacuum swing permeation: A novel process mode for membrane separation of gases

机译:压力-真空摆动渗透:用于气体膜分离的新工艺模式

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摘要

A novel process mode for gas separation by means of membranes was presented. It involved cyclic pressure-vacuum swings for feed pressurization and permeate evacuation, thereby increasing the transmembrane pressure difference and the feed to permeate pressure ratio. The feed pressurization and permeate evacuation were preferably done using a single pump capable of pressurization and suction. Unsteady-state permeation associated with the pressure-vacuum swing permeation was analyzed to elucidate the working principle of the process, and a parametric study was carried out to evaluate the effects of design and operating parameters on the separation performance. To exemplify the feasibility and effectiveness of the process, air separation for oxygen enrichment was investigated as a model application. It was shown that the separation efficiency was enhanced by means of the pressure-vacuum swing, and both product purity and product throughput higher than those from conventional steady-state permeation could be obtained.
机译:提出了一种通过膜进行气体分离的新工艺模式。它涉及循环压力-真空摆幅,用于进料加压和渗透液排空,从而增加了跨膜压差和进料与渗透液的压力比。进料加压和渗透排空优选使用能够加压和抽吸的单个泵进行。分析了与压力-真空摆动渗透相关的非稳态渗透,以阐明该工艺的工作原理,并进行了参数研究,以评估设计和操作参数对分离性能的影响。为了证明该方法的可行性和有效性,研究了空气分离富氧作为模型应用。结果表明,通过压力-真空摆动提高了分离效率,并且可以获得比常规稳态渗透更高的产物纯度和产物通量。

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