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首页> 外文期刊>Journal of Water Resource and Protection >Removal of Copper Ions from Acid Mine Drainage Wastewater Using Ion Exchange Technique: Factorial Design Analysis
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Removal of Copper Ions from Acid Mine Drainage Wastewater Using Ion Exchange Technique: Factorial Design Analysis

机译:离子交换技术从酸性矿山废水中去除铜离子的因素设计分析

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A factorial experimental design method was used to examine the “Cu2+” removal from acid mine drainage wastewater by ion exchange technique. Ion Exchange technique is preferred because of reduced sludge generation compared to conventional treatment techniques and better decontamination efficiency from highly diluted solutions. Factorial design of experiments is employed to study the effect of four factors pH (3, 5, and 6), flow rate (5, 10, 15 L/hr), resin bed height (20, 40 and 60 cm) and initial concentration of the metal (100, 150 and 200 mgl-1) at three levels. The efficiency of metal removal was determined after 100 min of treatment. Main effects and interaction effects of the four factors were analyzed using statistical techniques. A regression model was recommended and it was found to fit the experimental data very well. The results were analyzed statistically using the Student’s t-test, analysis of variance, F-test and lack of fit to define most important process variables affecting the percentage “Cu2+” removal. In this study , pH was thus found to be the most important variable.
机译:采用析因实验设计方法研究了通过离子交换技术从酸性矿山排水废水中去除“ Cu2 +”的方法。离子交换技术是优选的,因为与传统的处理技术相比,污泥的产生减少了,并且从高度稀释的溶液中获得了更高的去污效率。实验的因子设计用于研究四个因子pH(3、5和6),流速(5、10、15 L / hr),树脂床高度(20、40和60 cm)和初始浓度的影响三种水平的金属(100、150和200 mgl-1)。在处理100分钟后确定金属去除效率。使用统计技术分析了这四个因素的主要作用和相互作用作用。建议使用回归模型,发现该模型非常适合实验数据。使用学生的t检验,方差分析,F检验和缺乏拟合来统计分析结果,以定义影响“ Cu2 +”去除百分比的最重要的过程变量。因此,在这项研究中,pH是最重要的变量。

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