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Preparation of aminated microfiltration membranes by degradable functionalization using plain PEI membranes with various morphologies

机译:使用具有各种形态的普通PEI膜通过可降解的功能化制备胺化微滤膜

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The work describes the functionalization of microporous poly(ether imide) membranes with ultrafiltration separation profile by degradative functionalization using a two-step treatment process, which leads to strongly aminated membranes with microfiltration properties. Membranes with different morphology and ultrafiltration separation profile were prepared. In the first step, the pore system was opened by treatment with diethylenetriamine (DETA) which was followed by a treatment with high molecular poly(ethylene imine) to increase the amount of amine groups. Results verify that macrovoidal structures are more beneficial than sponge-like structures because of their strongly opened pores while only a small reduction in membrane thickness occurred. The separation properties of the virgin membrane have only a marginal influence on the pore opening process because of the leveling off the separation properties after a short treatment time. The number of covalently bound amine functions could be strongly increased by a second step functionalization process using a high-molar volume polyamine as a modifier which indicates the presence of residual imide groups of the basic polymer after the primary DETA treatment. Moreover the prepared membranes are suited for steam sterilization. These characteristics suggest a beneficial application in adsorptive separation processes.
机译:这项工作描述了使用两步处理工艺通过降解功能化对具有超滤分离特性的微孔聚醚酰亚胺膜进行功能化,从而得到具有微滤特性的强胺化膜。制备了具有不同形态和超滤分离特性的膜。在第一步中,通过用二亚乙基三胺(DETA)处理打开孔系统,然后用高分子聚亚乙基亚胺处理以增加胺基的数量。结果证明,大孔隙结构比海绵状结构更有利,因为它们的孔非常开放,而膜厚度只有很小的减小。由于在短的处理时间后分离性能趋于稳定,因此原始膜的分离性能对开孔过程仅具有很小的影响。共价结合的胺官能团的数目可以通过使用高摩尔体积的多胺作为改性剂的第二步官能化过程来大大增加,这表明在初级DETA处理之后碱性聚合物中残留的酰亚胺基团的存在。而且,所制备的膜适用于蒸汽灭菌。这些特征表明在吸附分离过程中的有益应用。

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