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Optimization of phosphate removal from drinking water with activated carbon using response surface methodology (RSM)

机译:使用响应面法(RSM)优化使用活性炭从饮用水中去除磷酸盐的方法

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The presence of phosphate in water has become a worldwide problem because of improving eutrophication and decreasing the quality of water. In this work, phosphate (PO43-) removal from water using activated carbon was studied and main process parameters such as initial phosphate concentration (C-0), adsorbent dosage, and pH of solution have been optimized to obtain maximum removal. Central composite design in response surface methodology (RSM) package has been used to perform the experimental design according to RSM analysis, the phosphate removal model proved to be highly significant with very low probability value (<0.0001). Based on the developed predictive model, the optimum conditions were 0.53 (g/50 mL) adsorbent dosage, pH 4, and C-0 = 11.62 (mg/L) for having 95.41% of phosphate removal. This optimum predicted result was investigated by performing the corresponding experiment, and it was observed that the experiment and model result were fitted well. Kinetic data were analyzed using pseudo-first-order, pseudo-second-order, and intraparticle diffusion equations. According to the results, adsorption of phosphate onto activated carbon is an effective approach and economical alternative process in comparison with common applications.
机译:由于改善了富营养化并降低了水的质量,水中磷酸盐的存在已成为一个世界性的问题。在这项工作中,研究了使用活性炭从水中去除磷酸盐(PO43-)的过程,并优化了主要工艺参数(例如初始磷酸盐浓度(C-0),吸附剂剂量和溶液的pH)以获得最大去除率。根据RSM分析,采用响应表面方法(RSM)软件包的中央复合设计进行了实验设计,事实证明磷酸盐去除模型具有很高的显着性,且概率值非常低(<0.0001)。基于已开发的预测模型,最佳条件为0.53(g / 50 mL)吸附剂剂量,pH 4和C-0 = 11.62(mg / L),以去除95.41%的磷酸盐。通过进行相应的实验研究了最佳的预测结果,并观察到实验和模型结果吻合良好。使用伪一级,伪二级和粒子内扩散方程分析动力学数据。根据结果​​,与普通应用相比,将磷酸盐吸附到活性炭上是一种有效的方法,也是一种经济的替代方法。

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