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Application of Response Surface Methodological Approach to Optimize Removal of Cr Ions From Industrial Wastewater

机译:响应面方法论方法的应用优化工业废水中Cr离子的去除

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In the present study, the adsorption of chromium (Cr) onto clay using response surface methodology (RSM) was investigated as an efficient approach for examining predictive model building and optimization. To optimize experimental variables and predictive regression models, statistical design models were carried out. A five-level four-factor central composite design (CCD) combined with RSM was performed with synthetic aqueous solutions on natural clay. The experimental variables included pH and agitation speed and were selected for optimization. The Cr ions ideal removal conditions were obtained using pH 5.0, contact time 23.0 minutes, adsorbent dosage of 69.4 mg, and agitation speed of 135 rpm. Chromium removal efficiency was found at 23.16 mg g(-1). The independent variables significance and their interactions were verified by means of the analysis of variance (ANOVA). These results were justified by the relatively high correlation coefficients (R-2 = 0.9902) of the statistical prediction. Clay and Cr loaded clay were characterized by X-ray diffractometer (XRD) and energy dispersive spectroscopy (EDS). The proposed adsorption process efficiently removed the Cr ions present in various aqueous media and was also applied to various industrial wastewaters.
机译:在本研究中,研究了使用响应表面方法(RSM)将铬(Cr)吸附到粘土上,作为研究预测模型建设和优化的有效方法。为了优化实验变量和预测回归模型,进行了统计设计模型。用自然粘土的合成水溶液进行五级四因素中央复合设计(CCD)与RSM相结合。实验变量包括pH和搅拌速度,并选择优化。 Cr离子理想的去除条件是使用pH 5.0获得的,接触时间23.0分钟,吸附剂剂量为69.4mg,搅拌速度为135rpm。在23.16mg g(-1)中发现铬去除效率。通过对方差分析(ANOVA)验证了独立变量的显着性及其相互作用。这些结果通过统计预测的相对高的相关系数(R-2 = 0.9902)是合理的。粘土和Cr负载粘土的特征在于X射线衍射仪(XRD)和能量分散光谱(EDS)。所提出的吸附过程有效地除去各种含水介质中存在的Cr离子,并应用于各种工业废水器。

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