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首页> 外文期刊>International Journal of Environmental Science and Technology >Response surface methodology optimization of nickel (II) removal using pigeon pea pod biosorbent
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Response surface methodology optimization of nickel (II) removal using pigeon pea pod biosorbent

机译:木豆荚生物吸附剂去除镍(II)的响应面方法优化

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摘要

Pod of pigeon pea (Cajanus cajan), a cellulose-rich agricultural residue, was investigated for its nickel binding efficiency. The influence of key physicochemical parameters such as contact time, initial metal ion concentration, adsorbent dosage and pH on nickel (II) removal was studied. The equilibrium time was found to be 45 min. The optimum Ni (II) removal was obtained at an initial metal ion concentration of 80 mg/l, pH of 9.0 and an adsorbent dose of 400 mg/100 ml. A search for optimal combination of key variables was studied by response surface methodology for maximum removal of nickel. The experiment encompassing 17 runs was established with the aid of Box-Behnken design. Owing to the reasonable agreement between predicted and adjusted R (2) value (0.9714), the corresponding quadratic model gives the most appropriate relationship between the variables and response. The optimal point obtained was located in the valid region and the optimum adsorption parameters were predicted as an initial Ni (II) concentration of 60 mg/l, pH value of 9.0 and contact time of 75 min. Under these adsorption conditions, a maximum removal of 96.54 % of initial metal concentration was demonstrated.
机译:研究了木豆荚(Cajanus cajan)(一种富含纤维素的农业残留物)的镍结合效率。研究了接触时间,初始金属离子浓度,吸附剂用量和pH值等关键物理化学参数对镍(II)去除的影响。发现平衡时间为45分钟。在初始金属离子浓度为80 mg / l,pH为9.0和吸附剂剂量为400 mg / 100 ml时,可以获得最佳的Ni(II)去除率。通过响应面方法研究了关键变量的最佳组合,以最大程度地去除镍。借助Box-Behnken设计,建立了包含17个运行的实验。由于预测和调整后的R(2)值(0.9714)之间存在合理的一致性,因此相应的二次模型给出了变量与响应之间的最适当关系。获得的最佳点位于有效区域内,并且预测的最佳吸附参数为初始Ni(II)浓度为60 mg / l,pH值为9.0和接触时间为75分钟。在这些吸附条件下,最大去除了初始金属浓度的96.54%。

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