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首页> 外文期刊>ACS Omega >Highlighting Thermodynamic Coupling Effects in Alcohol/Water Pervaporation across Polymeric Membranes
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Highlighting Thermodynamic Coupling Effects in Alcohol/Water Pervaporation across Polymeric Membranes

机译:突出显示跨膜的酒精/水渗透过程中的热力学耦合效应。

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The pervaporation of binary alcohol/water mixtures across polymeric membranes is modeled by combining the Maxwell–Stefan (M-S) diffusion formulation with the Flory–Huggins (F-H) description of sorption equilibrium. The combined M-S/F-H model shows that the flux of each penetrant species is coupled to the driving force of its partner penetrant. Two types of coupling contributions can be distinguished: (i) coupling arising out of correlated motions of penetrants in the polymer matrix and (ii) thermodynamic coupling. The focus of this article is on the contribution of thermodynamic coupling, which is quantified by the set of coefficients , where ai, the activity of species i, is dependent on the volume fractions ?i,?j, of both penetrants in the polymeric membrane. Detailed analyses of published experimental data for pervaporation of ethanol/water feed mixtures of varying compositions in both hydrophobic (poly(dimethylsiloxane)) and hydrophilic (cellulose acetate, polyimide, and polyvinyl alcohol/polyacrylonitrile composite) membranes show that in all cases, the cross-coefficients Γij (i ≠ j) are negative and may attain large magnitudes in relation to the diagonal elements Γii. The net result is that the permeation fluxes of each penetrant are suppressed by its partner, resulting in mutual slowing down of permeation fluxes. If thermodynamic coupling effects are ignored, significantly higher fluxes are anticipated than those that are experimentally observed.
机译:通过将麦克斯韦-斯特凡(M-S)扩散公式与弗洛里-哈金斯(F-H)的吸附平衡描述相结合,可以模拟二元醇/水混合物在聚合物膜上的全蒸发。 M-S / F-H组合模型表明,每种渗透剂的通量都与其伙伴渗透剂的驱动力有关。可以区分两种类型的偶联作用:(i)由渗透剂在聚合物基质中的相关运动引起的偶联,以及(ii)热力学偶联。本文的重点是热力学偶合的贡献,其通过系数集来量化,其中ai,物种i的活性取决于聚合物膜中两种渗透剂的体积分数Δi,Δj。 。在疏水性(聚(二甲基硅氧烷))和亲水性(醋酸纤维素,聚酰亚胺和聚乙烯醇/聚丙烯腈复合材料)膜中,对不同成分的乙醇/水进料混合物进行全蒸发的已发表实验数据的详细分析表明,在所有情况下,交叉-系数ijij(i≠j)为负,相对于对角线元素iiii可以达到较大的幅值。最终结果是每种渗透剂的渗透通量都被其伙伴抑制,导致渗透通量相互减慢。如果忽略了热力学耦合效应,则预计通量将比实验观察到的通量高得多。

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