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Fabrication of polybenzimidazole (PBI) nanofiltration hollow fiber membranes for removal of chromate

机译:聚苯并咪唑(PBI)纳滤中空纤维膜的制备用于去除铬酸盐

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The feasibility of employing nanofiltration for the removal of chromate from wastewater was investigated. Polybenzimidazole (PBI) was used to fabricate nanofiltration hollow fiber membrane with outstanding mechanical strength and chemical stability through the phase-inversion technique. The PBI NF membranes have a mean effective pore size of 0.348 nm in radius, the molecular weight cut off of 525 Da, and pure water permeability of 1.86 x 10(-5) 1m-2 h(-1) Pa-1 (1.861 m(-2) h(-1) bar(-1)). The PBI membranes showed different rejection to electrolytes in the order of R-MgCl2 > RmgSO(4) > R-Na2SO4 > R-NaCl. The surface charge properties were clarified by filtering NaCl solution and the PBI membranes showed a V-shape trend of NaCI rejection with an increase in pH. In addition, higher separation ratios of (SO42-/Cl-) and (Mg2+/Na+) were obtained from investigating the ion fractionation performance of the PBI membranes when using binary model solutions of NaCl/Na2SO4 and NaCl/MgCl2. Effect of pH on the chromate rejection was rationalized based on an equilibrium diagram of the Cr(VI)-H2O system. It is concluded that chromates can be effectively separated from their basic solutions by the PBI NF hollow fibers while maintaining their chemical and mechanical stability under high pressures and alkalinity. (c) 2006 Elsevier B.V. All rights reserved.
机译:研究了采用纳米过滤去除废水中铬酸盐的可行性。通过相转化技术,使用聚苯并咪唑(PBI)制备具有出色机械强度和化学稳定性的纳滤中空纤维膜。 PBI NF膜的平均有效孔径为半径0.348 nm,截留分子量为525 Da,纯水渗透率为1.86 x 10(-5)1m-2 h(-1)Pa-1(1.861) m(-2)h(-1)bar(-1))。 PBI膜对电解质的排阻程度不同,依次为R-MgCl2> RmgSO(4)> R-Na2SO4> R-NaCl。通过过滤NaCl溶液来澄清表面电荷性质,并且PBI膜显示出随着pH的增加NaCl截留的V形趋势。此外,通过使用NaCl / Na2SO4和NaCl / MgCl2的二元模型溶液研究PBI膜的离子分级性能,可以获得更高的(SO42- / Cl-)和(Mg2 + / Na +)分离比。根据Cr(VI)-H2O系统的平衡图,合理地考虑了pH对铬酸盐截留率的影响。结论是,PBI NF中空纤维可以有效地将铬酸盐从其碱性溶液中分离出来,同时在高压和碱度下保持其化学和机械稳定性。 (c)2006 Elsevier B.V.保留所有权利。

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