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Separation of saturated fatty acids and fatty acid methyl esters with epoxy nanofiltration membranes

机译:用环氧纳米过滤膜分离饱和脂肪酸和脂肪酸甲酯

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Epoxy nanofiltration membranes were fabricated by the step polymerization of a primary diamine and a diepoxide or triepoxide conomomer. Membrane selectivity and flux were tuned by changing the identity of the diepoxides and by increasing the concentration of triepoxides in the polymerization. The membranes were used to separate even chain length saturated fatty acids (FAs) and saturated fatty acid methyl esters (FAMEs) that possessed molecular weights between 80-300 g mar(-1). Our membranes show excellent selectivities of up to 100: 1 for the separation of the C-4-C-18 FAMEs. The flux of the FAMEs through the membranes showed an exponential dependence based on the number of carbons. Fabrication of thin epoxy membranes with thicknesses of 150 nm allowed for an increase in flux of FAMEs through the membrane and demonstrated that these separations can be used under industrially relevant conditions.
机译:通过初级二胺和二聚氧化物或串氧化物同胞的步骤聚合制备环氧纳米滤膜。 通过改变模脂氧化物的同一性并通过增加聚合中的红氧化物的浓度来调节膜选择性和助熔剂。 膜用于分离均匀的链长饱和脂肪酸(FAS)和饱和脂肪酸甲酯(FAME),其具有80-300g MAR(-1)之间的分子量。 我们的膜显示出高达100:1的优异选择性,用于分离C-4-C-18名。 通过膜的FAME的通量显示了基于碳的数量的指数依赖性。 厚度为150nm的薄环氧膜的制备允许通过膜的增加的源增加,并证明这些分离可以在工业上相关的条件下使用。

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