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Preparation of PVDF hollow fiber ultrafiltration membrane via phase inversion/chemical treatment method

机译:相转化/化学处理法制备PVDF中空纤维超滤膜

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Poly(vinylidene fluoride) (PVDF) hollow fiber membranes were prepared via a phase inversion/chemical treatment method, using N,N-dimethylacetamide (DMAc) as solvent, Calcium carbonate as inorganic additive, and water and HCl as coagulation media. Effects of external coagulation bath and bore fluid composition on membrane performance were investigated by using scanning electron microscopy, mechanical properties, porosity, average bubble point pressure, and permeation performance. The results show that: ⑴ The cross-section morphology of membranes have no significant change, exhibiting a two-layer finger-like structure extended to the middle of the cross-section. ⑵ The roughness of the external surface increased considerably and the number of the surface pores increased as well when we introduced HCl as the second coagulation. The permeation experiments reveal that acid treatment had no impact on fibers which had precipitated completely. ⑶ The number and pore size underlying the inner skin layer increased when bore fluid changed from DI water to 10% acetic acid, leading to the decrease of porosity and tensile strength. Moreover, the pure water flux increased from 360 to 580 L/(m~2h) without the significant change of BSA rejection. The PVDF/CaCO_3 membranes prepared from the dope with 10% acetic acid as the bore fluid and 1 mol/L HCl as second coagulation bath had the best ultrafiltration performance.
机译:采用N,N-二甲基乙酰胺(DMAc)作为溶剂,碳酸钙作为无机添加剂,水和HCl作为凝聚介质,通过相转化/化学处理方法制备了聚偏二氟乙烯(PVDF)中空纤维膜。通过使用扫描电子显微镜,机械性能,孔隙率,平均泡点压力和渗透性能,研究了外部混凝浴和孔液组成对膜性能的影响。结果表明:⑴膜的横截面形态无明显变化,呈现出两层手指状结构,延伸至横截面的中部。 when当我们引入HCl作为第二次凝固时,外表面的粗糙度显着增加,表面孔的数量也增加。渗透实验表明酸处理对完全沉淀的纤维没有影响。 ⑶当钻孔液从去离子水变成10%的乙酸时,内表层下层的数量和孔径增加,导致孔隙率和拉伸强度降低。此外,纯净水通量从360 L /(m〜2h)增加到580 L /(m〜2h),而BSA截留率没有明显变化。由浓液制备的PVDF / CaCO_3膜具有最佳的超滤性能,该浓液以10%的乙酸为孔液,以1 mol / L HCl作为第二凝固浴。

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