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Investigation of effective parameters on the performance of NF membrane in simultaneous removal of Cr (VI) and Cu from contaminated water

机译:纳滤膜同时去除污水中六价铬和铜的有效参数研究

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The present study investigates an NF process for removal of copper and hexavalent chromium, studying the effect of pH (5, 7, 9) as well as contaminants' concentration (50, 500, 5000 μg/L) at a constant pressure of 8 bar; with the recovery rate, regulated at 75±2%. To determine the main factors, affecting the system performance, and evaluate the interaction effects among the factors, the experiment is designed via RSM Method. The chrome shows a higher rejection, compared with Copper, all over the range of investigated factors. As Copper concentration grows, Cu removal efficiency drops while, the Cr (VI) removal efficiency ascends. Also by increasing chrome concentration, the Cu removal efficiency decreases, while Cr (VI) removal efficiency increases. Results show that with an increase in pH, the Cu removal drops and Cr removal is increased. The pH is the main parameter, influencing the removal rate. It has been found that the maximum removal efficiency is up to 99% and 73% for Cr (VI) and Cu, respectively. There is an adequate agreement between real data and that obtained from the models (R2 was found to be 0.9889 and 0.9664, for Cu and Cr (VI) rejection, respectively).
机译:本研究研究了在8 bar的恒定压力下用于去除铜和六价铬的NF工艺,研究了pH(5、7、9)和污染物浓度(50、500、5000μg/ L)的影响;回收率控制在75±2%。为了确定影响系统性能的主要因素,并评估这些因素之间的相互作用,通过RSM方法设计了该实验。在所有研究的因素范围内,与铜相比,铬的排阻率更高。随着铜浓度的增加,Cu的去除效率下降,而Cr(VI)的去除效率则上升。同样通过增加铬浓度,Cu去除效率降低,而Cr(VI)去除效率提高。结果表明,随着pH值的增加,Cu的去除量下降,Cr的去除量增加。 pH是主要参数,影响去除率。已经发现,对于Cr(VI)和Cu,最大去除效率分别高达99%和73%。真实数据与从模型获得的数据之间有足够的一致性(对于铜和六价铬(VI)截留率,R2分别为0.9889和0.9664)。

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