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首页> 外文期刊>Journal of Applied Polymer Science >Effects of Mixed Solvents and PVDF Types on Performances of PVDF Microporous Membranes
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Effects of Mixed Solvents and PVDF Types on Performances of PVDF Microporous Membranes

机译:混合溶剂和PVDF类型对PVDF微孔膜性能的影响

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摘要

Polyvinylidene fluoride (PVDF) microporous flat membranes were cast with different kinds of PVDFs and four mixed solvents [trimethyl phosphate (TMP)–N,N-dimethylacetamide (DMAc), triethyl phosphate (TEP)–DMAc, tricresyl phosphate (TCP)–DMAc, and tri-nbutyl phosphate (TBP)–DMAc]. The effects of different commercial PVDFs (SolefVR 1015, FR 904, Kynar 761, Kynar 741, Kynar 2801) on membrane morphologies and membrane performances of PVDF/TEP–DMAc/PEG200 system were investigated. The membrane morphologies were examined by scanning electron microscopy (SEM). The membrane performances in terms of pure water flux, rejection, porosity, and mean pore radius were measured. The membrane had the high flux of 143.0 0.9 L m~2 h~1 when the content of TMP in the TMP–DMAc mixed solvent reached 60 wt %, which was 2.89 times that of the membrane cast with DMAc as single solvent and was 3.36 times that of the membrane cast with TMP as single solvent. Using mixed solvent with different solvent solubility parameters, different morphologies of PVDF microporous membranes were obtained. TMP–DMAc mixed solvent and TEP–DMAc mixed solvent indicated the stronger solvent power to PVDF due to the lower solubility parameter difference of 1.45 MPa1/2 and the prepared membranes showed the faster precipitation rate and the higher flux. The less macrovoids of the membrane prepared with TEP (60 wt %)–DMAc (40 wt %) as mixed solvent contributed to the higher elongation ratio of 96.61% 0.41%. Therefore, using TEP(60 wt %)–DMAc (40 wt %) as mixed solvent, the casting solution had the better solvent power to PVDF, and the membrane possessed the excellentmechanical property. The microporous membranes prepared from casting solutions with different commercial PVDFs exhibited similar morphology, but the water flux increased with the increment of polymer solution viscosity.
机译:聚偏二氟乙烯(PVDF)微孔平膜采用不同种类的PVDF和四种混合溶剂浇铸而成[磷酸三甲酯(TMP)–N,N-二甲基乙酰胺(DMAc),磷酸三乙酯(TEP)–DMAc,磷酸三甲苯酯(TCP)–DMAc ,以及磷酸三正丁酯(TBP)–DMAc]。研究了不同商业PVDF(SolefVR 1015,FR 904,Kynar 761,Kynar 741,Kynar 2801)对PVDF / TEP–DMAc / PEG200系统的膜形态和膜性能的影响。通过扫描电子显微镜(SEM)检查膜的形态。测量了纯水通量,截留率,孔隙率和平均孔径的膜性能。当TMP–DMAc混合溶剂中TMP的含量达到60 wt%时,该膜具有143.0 0.9 L m〜2 h〜1的高通量,是使用DMAc作为单一溶剂流延的膜的2.89倍,是3.36是TMP作为单一溶剂浇铸的膜的两倍。使用具有不同溶剂溶解度参数的混合溶剂,可获得不同形态的PVDF微孔膜。 TMP–DMAc混合溶剂和TEP–DMAc混合溶剂表明,由于1.45 MPa1 / 2的溶解度参数差较小,对PVDF的溶解能力更强,制备的膜显示出更快的沉淀速率和更高的通量。用TEP(60 wt%)– DMAc(40 wt%)作为混合溶剂制备的膜的大孔较少,导致96.61%0.41%的较高伸长率。因此,使用TEP(60 wt%)– DMAc(40 wt%)作为混合溶剂,流延溶液对PVDF具有更好的溶剂作用,并且膜具有优异的机械性能。由具有不同市售PVDF的流延溶液制备的微孔膜表现出相似的形态,但水通量随聚合物溶液粘度的增加而增加。

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