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首页> 外文期刊>Journal of Applied Polymer Science >Preparation of polypropylene microfiltration membranes via thermally induced (solid-liquid or liquid-liquid) phase separation method
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Preparation of polypropylene microfiltration membranes via thermally induced (solid-liquid or liquid-liquid) phase separation method

机译:通过热诱导(固液或液液)相分离法制备聚丙烯微滤膜

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Polypropylene (PP) hollow fiber microfiltration membranes with excellent performance were successfully prepared from the PP-binary diluent system via thermally induced liquid-liquid (L-L) phase separation method. The binary diluent consisted of myristic acid and diphenyl carbonate. The effects of the binary diluent on phase separation and membrane structure were systematically investigated. With the decrease in the weight ratio of myristic acid to diphenyl carbonate, the Flory-Huggins interaction parameter between PP and the binary diluent became more positive, and the mechanism of phase separation changed from solid-liquid (S-L) to L-L. This resulted in the membrane structure changing from spherulitic to bicontinuous. Moreover, as the weight ratio of myristic acid to diphenyl carbonate decreased from 11/9 to 2/3, the L-L phase separation region kept enlarging while the viscosity of the whole system became higher. The pore size of the cross-section increased due to the longer coarsening time while the surface pore size decreased due to the higher viscosity of the system. The bulk porosity of resultant PP membranes was mostly higher than 70% and pure water flux were generally larger than 650 L m(-2) h(-1). In addition, the PP hollow fiber microfiltration membrane possessed excellent mechanical properties (tensile strength of 3.47 MPa and elongation of 118%) and good separation performance (rejection to PEO (M-w = 1000 kDa) of 94.6%) when the weight ratio of myristic acid to diphenyl carbonate was 2/3. (C) 2015 Wiley Periodicals, Inc.
机译:通过热诱导液-液(L-L)相分离方法,由PP-二元稀释剂系统成功制备了性能优异的聚丙烯(PP)中空纤维微滤膜。二元稀释剂由肉豆蔻酸和碳酸二苯酯组成。系统研究了二元稀释剂对相分离和膜结构的影响。随着肉豆蔻酸与碳酸二苯酯重量比的降低,PP与二元稀释剂之间的Flory-Huggins相互作用参数变得更正,并且相分离的机理从固液(S-L)变为L-L。这导致膜结构从球状变为双连续。此外,随着肉豆蔻酸与碳酸二苯酯的重量比从11/9降低至2/3,L-L相分离区域保持扩大,而整个系统的粘度变高。由于更长的粗化时间,横截面的孔径增大,而由于体系的较高粘度,表面孔径减小。所得PP膜的整体孔隙率大多高于70%,纯净水通量通常大于650 L m(-2)h(-1)。此外,当肉豆蔻酸的重量比为14时,PP中空纤维微滤膜具有优异的机械性能(3.47 MPa的拉伸强度和118%的伸长率)和良好的分离性能(对PEO(Mw = 1000 kDa)的排斥率为94.6%)。碳酸二苯酯的比为2/3。 (C)2015年Wiley Periodicals,Inc.

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