醋酸纤维素-聚丁二酸酯(CA-PBS)/单溶剂/水体系脱盐膜的动力学和热力学研究

Eksergi Pub Date : 2023-03-02 DOI:10.31315/e.v20i1.8820
R. D. Nyamiati, S. Nurkhamidah, Y. Rahmawati, W. Meka
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引用次数: 0

摘要

膜合成过程中使其具有所需孔隙的最重要部分是膜的固化过程,该过程从一个液相变为两个液相(液-液脱混)开始。在脱混过程的某一时期,富聚合物相凝固;这样就形成了致密的膜基质。决定膜形成机理的参数基于热力学,包括溶剂-聚合物-非溶剂的相分离,并通过相图(Flory-Huggins理论)进行解释。本研究旨在确定最佳体系中不同溶剂和非溶剂变化对CA-PBS膜形成的初步预测,并通过其特性和性能在应用于脱盐膜时得到证明,其中包括使用云点数据的三元图,溶解度参数与汉森溶解度,利用Tyn Calus方程计算了溶剂-非溶剂的扩散系数,并通过SEM照片对膜进行了形态验证,并通过盐截留和渗透通量对所得膜的性能进行了验证。溶解度参数差异的结果可以预测,在CA-PBS膜上使用DMF溶剂可以减小膜的孔径,消除膜形态上的空隙和大空隙。
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Kinetic and Thermodynamic Studies in Cellulose Acetate-Polybutylene Succinate(CA-PBS)/Single Solvent/Water System for Desalination Membrane
The most important part of the membrane synthesis process so that it has the desired pores is the solidification process of the membrane, the process begins with a change from one liquid phase into two liquid phases (liquid-liquid demixing). At a certain period during demixing, the polymer-rich phase solidifies; thus, a dense membrane matrix is formed. Parameters that determine the mechanism of membrane formation are based on thermodynamics including phase separation of Solvent-Polymer-Non-solvent which is explained through a phase diagram (Flory-Huggins Theory). This study aims to determine the initial prediction of the formation of CA-PBS membranes with various solvents used and variations of non-solvents in the best system, which is proven by its characteristics and performance when applied to desalination membranes which include ternary diagrams using cloud point data, solubility parameters with Hansesn solubility, the solvent-non-solvent diffusivity using the Tyn Calus Equation approach and the morphological proofing of the membrane through SEM photos, and the performance of the resulting membrane through salt rejection and permeate flux. The results of the difference in solubility parameters are can be predicted that using DMF solvent on the CA-PBS membrane can reduce the pore size and eliminate voids and macrovoids in the membrane morphology.
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