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Preparation of Organic Solvent-Soluble Proteins and Their Application: Solute Permeabilities and Dyeing Properties of Polyacrylonitrile/Modified Protein Composite Membranes

机译:有机溶剂可溶蛋白的制备及其应用:聚丙烯腈/修饰蛋白复​​合膜的溶质渗透性和染色性能

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摘要

To understand the structure of composite membranes prepared from polyacrylonitrile (PAN) and modified milk whey (MMW ) or egg white (MEW ), obtained by reacting with 2,4-tolylen diisocyanate, we have investigated the membrane potential, solute permeability, and dyestuff adsorption. The membrane potential measurements confirm that at least some parts of modified protein components in composite membranes with high modified protein contents are incorporated by passing through the membranes. Solute permeability, equilibrium adsorption, and the adsorption rate of some dyestuffs through/on the composite membranes increase with increased modified protein content in the membrane. The properties of MMW/PAN and MEW/PAN are quite different because their characteristic structures are different: the shape of "island" MMW in "sea" PAN is elliptical, and that of "island" MEW is flat and oriented parallel to the membrane. Furthermore, equilibrium Methylene Blue (MB) adsorption on the composite membranes indicates that there are some interactions between PAN and MMW up to a ratio of about 6.5 g(MMW)/100 g(PAN), and the interacted MMW parts have no affinity for MB.
机译:为了了解由聚丙烯腈(PAN)和改性乳清(MMW)或蛋清(MEW)与2,4-甲苯二异氰酸酯反应制得的复合膜的结构,我们研究了膜电位,溶质渗透性和染料吸附。膜电势测量证实,具有高修饰蛋白含量的复合膜中的修饰蛋白成分的至少某些部分通过穿过膜而被掺入。溶质的渗透性,平衡吸附和某些染料通过/在复合膜上的吸附速率随膜中修饰蛋白含量的增加而增加。 MMW / PAN和MEW / PAN的特性差异很大,因为它们的特征结构不同:“海” PAN中的“岛” MMW的形状为椭圆形,而“岛” MEW的形状为扁平且平行于膜取向。此外,复合膜上的亚甲基蓝(MB)平衡吸附表明PAN和MMW之间存在一些相互作用,比例高达6.5 g(MMW)/ 100 g(PAN),并且相互作用的MMW部分对MB。

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