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Collation Efficiency of Poly(Vinyl Alcohol) and Alginate Membranes with Iron-Based Magnetic Organic/Inorganic Fillers in Pervaporative Dehydration of Ethanol

机译:聚(乙烯醇)与铁基磁性有机/无机填料的抗藻酸盐膜的融合效率乙醇脱水

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摘要

Hybrid poly(vinyl alcohol) and alginate membranes were investigated in the process of ethanol dehydration by pervaporation. As a filler, three types of particles containing iron element, i.e., hematite, magnetite, and iron(III) acetyloacetonate were used. The parameters describing transport properties and effectiveness of investigated membranes were evaluated. Additionally, the physico-chemical properties of the resulting membranes were studied. The influence of polymer matrix, choice of iron particles and their content in terms of effectiveness of membranes in the process of ethanol dehydration were considered. The results showed that hybrid alginate membranes were characterized by a better separation factor, while poly(vinyl alcohol) membranes by a better flux. The best parameters were obtained for membranes filled with 7 wt% of iron(III) acetyloacetonate. The separation factor and pervaporative separation index were equal to 19.69 and 15,998 g⋅m−2⋅h−1 for alginate membrane and 11.75 and 14,878 g⋅m−2⋅h−1 for poly(vinyl alcohol) membrane, respectively.
机译:通过渗透蒸发研究乙醇脱水过程中的杂化聚(乙烯醇)和藻酸盐膜。作为填料,使用含有铁元素,即赤铁矿,磁铁矿和铁(III)乙酰丙酮的三种类型的颗粒。评估描述传输性能和所研究膜的有效性的参数。另外,研究了所得膜的物理化学性质。考虑了聚合物基质,铁颗粒的选择及其在乙醇脱水过程中膜的有效性中的含量的影响。结果表明,杂化藻酸盐膜的特征在于通过更好的分离因子,而聚(乙烯醇)膜通过更好的助焊剂。获得最佳参数,用于填充有7wt%铁(III)乙酰丙酮酸酯的膜。分离因子和抗腐蚀性分离指数分别等于藻酸盐膜的19.69和15,998g-1,分别用于聚(乙烯醇)膜的11.75和14,878g-2 1 -1。

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