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Membrane manufacture for peptide separations

机译:膜生产用于肽分离

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摘要

Nanostructured polymeric membranes are key tools in biomedical applications such as hemodialysis, protein separations, in the food industry, and drinking water supply from seawater. Despite of the success in different separation processes, membrane manufacture itself is at risk, since the most used solvents are about to be banned in many countries due to environmental and health issues. We propose for the first time the preparation of polyethersulfone membranes based on dissolution in the ionic liquid 1-ethyl-3-methylimidazolium dimethylphosphate ([EMIM]DEP). We obtained a series of membranes tailored for separation of solutes with molecular weight of 30, 5, 1.3, and 1.25 kg mol-1 with respective water permeances of 140, 65, 30 and 20 Lm-2h-1bar-1. We demonstrate their superior efficiency in the separation of complex mixtures of peptides with molecular weights in the range of 800 to 3500 gmol-1. Furthermore, the thermodynamics and kinetics of phase separation leading to the pore formation in the membranes were investigated. The rheology of the solutions and the morphology of the prepared membranes were examed and compared to those of polyethersulfone in organic solvents currently used for membrane manufacture.
机译:纳米结构的聚合物膜是生物医学应用中的关键工具,例如血液透析,蛋白质分离,食品工业和海水饮用水。尽管在不同的分离过程中取得了成功,但由于环境和健康问题,许多国家将禁止使用最常用的溶剂,因此膜制造本身仍处于危险之中。我们首次提出了基于溶解在离子液体1-乙基-3-甲基咪唑二甲基磷酸二甲酯([EMIM] DEP)中的聚醚砜膜的制备方法。我们获得了一系列专为分离分子量分别为30、5、1.3和1.25 kg mol-1的溶质而分别具有140、65、30和20 Lm-2h-1bar-1的水渗透率的膜。我们证明了它们在分离分子量范围为800至3500 gmol-1的肽的复杂混合物中的卓越效率。此外,研究了导致膜中孔形成的相分离的热力学和动力学。检查溶液的流变性和制得的膜的形态,并与目前用于制膜的有机溶剂中的聚醚砜的流变学和形态进行比较。

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