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Time-dependent permeance of gas mixtures through zeolite membranes

机译:混合气体透过沸石膜的时间依赖性渗透

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The time-dependent permeation behavior of binary gas mixtures through a ZSM-5 zeolite membrane was studied. Although steady-state permeation rates were indistinguishable for CO2 and N-2 or for cis- and trans-2-butene in binary mixtures, differences in the rate of approach to steady state: allowed component distinction. In "normal" systems, one component is initially enriched in the permeate following application of a pulse of analyte gas to the membrane, and then disappears more quickly upon termination of the pulse. Mixtures of cis- and trans-2-butene exhibit qualitatively different behavior; the permeate is enriched in cis-2-butene during both the leading and trailing edges of a sample pulse (though not at steady state). These differences in permeation behavior reflect different balances among multiple transport mechanisms through the zeolite membrane, thought to reflect a combination of selective component sorption and intracrystalline diffusion; in the case of cis- and trans-2- butene, these two factors oppose one another. It is known that this mechanistic complexity can engender synergistic effects, wherein the presence of one component can affect the permeation of another. These may limit applicability to true "unknowns", but resulting complications should be less problematic in well-defined process applications. [References: 24]
机译:研究了二元混合气通过ZSM-5沸石膜的随时间的渗透行为。尽管二元混合物中的CO2和N-2或顺式和反式-2-丁烯的稳态渗透率无法区分,但达到稳态的速率不同:允许组分区分。在“常规”系统中,在将分析物气体脉冲施加到膜上之后,一种成分最初会富集在渗透液中,然后在脉冲终止时会更快消失。顺式和反式-2-丁烯的混合物在性质上表现出不同。在采样脉冲的上升沿和下降沿期间,渗透液均富含顺式-2-丁烯(尽管不是处于稳定状态)。渗透行为的这些差异反映了通过沸石膜的多种传输机制之间的平衡,被认为反映了选择性组分吸附和晶体内扩散的结合。就顺式和反式-2-丁烯而言,这两个因素相互对立。已知这种机械复杂性可以产生协同效应,其中一种组分的存在可以影响另一种组分的渗透。这些可能将适用性限制在真正的“未知数”上,但是由此产生的复杂性在定义明确的过程应用程序中应较少出现问题。 [参考:24]

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