首页> 美国卫生研究院文献>International Journal of Analytical Chemistry >Hexavalent Chromium Removal from Model Water and Car Shock Absorber Factory Effluent by Nanofiltration and Reverse Osmosis Membrane
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Hexavalent Chromium Removal from Model Water and Car Shock Absorber Factory Effluent by Nanofiltration and Reverse Osmosis Membrane

机译:纳滤和反渗透膜去除模型水和汽车减震器厂废水中的六价铬

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摘要

Nanofiltration and reverse osmosis are investigated as a possible alternative to the conventional methods of Cr(VI) removal from model water and industrial effluent. The influences of feed concentration, water recovery, pH, and the coexisting anions were studied. The results have shown that retention rates of hexavalent chromium can reach 99.7% using nanofiltration membrane (NF-HL) and vary from 85 to 99.9% using reverse osmosis membrane (RO-SG) depending upon the composition of the solution and operating conditions. This work was also extended to investigate the separation of Cr(VI) from car shock absorber factory effluent. The use of these membranes is very promising for Cr(VI) water treatment and desalting industry effluent. Spiegler-Kedem model was applied to experimental results in the aim to determine phenomenological parameters, the reflection coefficient of the membrane (σ), and the solute permeability coefficient (Ps). The convective and diffusive parts of the mass transfer were quantified with predominance of the diffusive contribution.
机译:研究了纳滤和反渗透作为从模型水和工业废水中去除Cr(VI)的常规方法的可能替代方法。研究了进料浓度,水回收率,pH值和共存阴离子的影响。结果表明,根据溶液的组成和操作条件,使用纳滤膜(NF-HL)时六价铬的保留率可以达到99.7%,使用反渗透膜(RO-SG)时可以从85%保留至99.9%。这项工作还扩展到研究汽车减震器工厂废水中六价铬的分离。这些膜的使用对于六价铬水处理和工业废水脱盐非常有前景。将Spiegler-Kedem模型应用于实验结果,以确定现象学参数,膜的反射系数(σ)和溶质渗透系数(Ps)。传质的对流和扩散部分以扩散贡献为主。

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