Membrane gas separations and energy efficiency: Exploring the selective membrane-piston concept

IF 4.9 Q1 ENGINEERING, CHEMICAL
Mathilde Lafont, Christophe Castel, Romain Privat, Eric Favre
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Abstract

A new process call Membrane Piston is proposed to investigate the possible energy efficiency improvement by combining compression and gas separation under unsteady state. The membrane on the piston-head acts as a permeable moving barrier between the two compartments. The movement of the membrane initiates the compression, triggering the mass transfer. The decreasing amount of substance at high pressure leads to lower work requirement. A model based on mass and energy balances provides the temporal evolution of the parameters. This new concept is presented through an air separation case study, operated in isothermal and non-isothermal modes. Compared to a steady-state classical membrane separation at identical purity in N2 and pressure ratio, this process shows breakthrough energy efficiency improvements, such as 33 to 63 % decrease for 95 to 97 % N2 purity.

Abstract Image

膜气体分离与能源效率:探索选择性膜活塞概念
提出了一种新的膜活塞工艺,研究非稳态下压缩与气体分离相结合可能提高的能效。活塞头上的膜在两个隔室之间充当可渗透的移动屏障。膜的运动引起压缩,从而引发传质。高压下物质量的减少导致工作要求的降低。基于质量和能量平衡的模型提供了参数的时间演化。这个新概念是通过在等温和非等温模式下操作的空气分离案例研究提出的。在氮气纯度和压力比相同的情况下,与传统的稳态膜分离方法相比,该方法的效率有了突破性的提高,当氮气纯度为95 ~ 97%时,效率降低了33% ~ 63%。
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