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首页> 外文期刊>Journal of Applied Polymer Science >Mass transfer dynamics of the evaporation step in membrane formation by phase inversion
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Mass transfer dynamics of the evaporation step in membrane formation by phase inversion

机译:相转化膜形成过程中蒸发步骤的传质动力学

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摘要

A ternary diffusion model has been developed for the evaporation step of the phase inversion process. The model is applied to the analysis of mass transfer dynamics of the evaporation step for the methanol-acetone-cellulose acetate (CA) ternary casting system. The combined analysis of quantitatively computational results from the ternary evaporation model and qualitative dynamic results during the quench process has shown that the evaporation step is essentially necessary to prepare the defect-free, ultrathin skinned asymmetric CA membrane for the separation of CO2/CH4. The skin layer of high CA concentration obtained by evaporation has an ability to suppress liquid-liquid phase separation. And the skin layer with high tensile strength can resist the interfacial tension caused by spinodal decomposition from the substructure. Although the CA concentration in the skin layer increases considerably because of the evaporation step and the following delay time during the quench process, the substructure can still induce the spinodal decomposition because the strong coagulant, methanol, can diffuse rapidly across the ultrathin skin layer. Hence the defect-free, ultrathin-skinned as asymmetric membrane for gas separation con be prepared from methanolacetone-CA casting system by evaporation step and the wet phase inversion. (C) 2002 Wiley Periodic, Inc. [References: 36]
机译:已经为相转化过程的蒸发步骤开发了三元扩散模型。该模型用于分析甲醇-丙酮-醋酸纤维素(CA)三元浇铸系统蒸发步骤的传质动力学。三元蒸发模型的定量计算结果与淬火过程中定性动力学结果的组合分析表明,蒸发步骤对于制备无缺陷,超薄表皮的不对称CA膜对于分离CO2 / CH4而言是必不可少的。通过蒸发获得的高CA浓度的表层具有抑制液-液相分离的能力。具有高抗拉强度的表皮层可以抵抗由子结构的旋节线分解引起的界面张力。尽管由于蒸发步骤和淬火过程中随后的延迟时间,表皮层中的CA浓度显着增加,但由于强的凝结剂甲醇可在超薄表皮层中迅速扩散,因此子结构仍会诱导旋节线分解。因此,采用甲醇丙酮-CA浇铸系统,通过蒸发步骤和湿相转化法制备了无缺陷,超薄的不对称气体分离膜。 (C)2002 Wiley Periodic,Inc. [参考:36]

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