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Selectivity as a function of membrane thickness: Gas separation and pervaporation

机译:选择性与膜厚度的关系:气体分离和渗透汽化

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AbstractIn this article, the pervaporation selectivity as a function of the membrane thickness is studied for the dehydration of acetic acid. From this study, it appeared that the selectivity of polysulfone (PSF), poly(vinyl chloride) (PVC), and polyacrylonitrile (PAN) decreases with decreasing membrane thickness, below a limiting value of about 15 μm. However, in the case of gas separation, the selectivity of PSF membranes is independent of the membrane thickness. This phenomenon could not be explained by a difference in membrane morphology, sorption resistance, thermodynamic interaction, or coupling. It is believed that the decrease in selectivity for thin membranes has to be attributed to defects induced during pervaporation. These defects, crazes (and cracks), result from a reduced value of the critical strain, due to sorption of acetic acid/water and stresses between the polymer chains, due to a concentration gradient across the membrane. © 1994 John WileySons, In
机译:摘要本文研究了乙酸脱水过程中渗透汽化选择性与膜厚度的关系。从这项研究中可以看出,聚砜(PSF)、聚氯乙烯(PVC)和聚丙烯腈(PAN)的选择性随着膜厚度的减小而降低,低于约15 μm的极限值。然而,在气体分离的情况下,PSF膜的选择性与膜厚度无关。这种现象不能用膜形态、吸附阻力、热力学相互作用或偶联的差异来解释。据信,薄膜选择性的降低必须归因于渗透汽化过程中诱导的缺陷。这些缺陷、裂纹(和裂纹)是由于醋酸/水的吸附和聚合物链之间的应力以及由于膜上的浓度梯度而导致临界应变值降低造成的。© 1994 John Wiley&Sons, 印第安纳州

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