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Biobased polyhydroxyalkanoate (PHA) membranes: Structure/performances relationship

机译:Biobased聚羟基烷烷(PHA)膜:结构/性能关系

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摘要

Within the current increasing environmental restrictions, biopolymers tend to replace common materials in many applications, from daily life items to process engineering facilities. Synthetic filtration membranes are also of concern. Herein, biopolymer based microfiltration (MF) membranes were produced with a polyhydroxyalkanoate (PHA), the poly(hydoxybutyrate-co-hydroxyvalerate) (PHBHV). The membranes were made by evaporation induced phase separation (EIPS) and the influence of the dope solution composition was studied by adding additives, polyvinylpyrrolidones (PVPs) and polyethylene glycols (PEGs). The nature, molecular weight and concentration of the additives were linked to the obtained microstructures. Both types of additives can increase membrane porosity by acting as pore former agent. However, interesting opposite effects were obtained in case of PEGs from 300 to 4000 g mol(-1) where the additives were observed to act as plasticizers. The membranes performances were evaluated with pure water permeability and E. coli bacteria rejection and correlated to the microstructure analyses. The performances were greatly improved by selecting the proper additive. This study leads to promising results for the consideration of PHA as new potential biomaterial intended for membrane fabrication.
机译:在当前的环境限制内,生物聚合物倾向于在许多应用中取代普通材料,从日常生活中处理工程设施。合成过滤膜也是关注的。这里,用多羟基烷烷(PHA),聚(瓦乙酰丁酸酯 - 羟基羟基戊烯)(PHBHV)制备基于生物聚合物的微滤(MF)膜。通过蒸发诱导的相分离(EIP)制备膜,并通过加入添加剂,聚乙烯吡咯烷酮(PVP)和聚乙二醇(PEG)来研究掺杂溶液组合物的影响。添加剂的性质,分子量和浓度与所得的微观结构连接。两种类型的添加剂可以通过用作孔前剂来增加膜孔隙率。然而,在从300至4000g mol(-1)的PEG的情况下获得有趣的相反效果,其中观察到添加剂作为增塑剂。用纯净的水渗透性和大肠杆菌细菌排斥并与微观结构分析相关评估膜性能。通过选择适当的添加剂,大大改善了性能。该研究导致对PHA作为用于膜制造的新潜在生物材料的有前途的结果。

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