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首页> 外文期刊>Materials Sciences and Applications >Optimization Study of the Removal of Atrazine from Aqueous Solution on to Composite Activated Carbon-Silver Using Response Surface Methodology
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Optimization Study of the Removal of Atrazine from Aqueous Solution on to Composite Activated Carbon-Silver Using Response Surface Methodology

机译:用响应面法从水溶液中除去阿特拉嗪的优化研究

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Activated carbon based oil palm shells were prepared by physical activation using steam which was further grafted with silver. The Response Surface Methodology (Doehlert design) was used to optimize both the impregnation of silver and the atrazine removal. The effects of three variables of preparation conditions of the composite activated Carbon-Silver (AC-Ag): Concentration of silver, impregnation temperature and impregnation time on the atrazine removal (Y1) was investigated on one hand. In another hand, three variables of atrazine removal from liquid phase: Temperature, pH and ratio of Atrazine/CaCl2 (r(Atraz/CaCl2)) on the adsorption capacity of atrazine (Y2) were also investigated. Based on the Doehlert designs, the quadratic models were developed to correlate the preparation variables and the adsorption variables to the response. The optimum conditions of preparation of AC-Ag were found to be: Concentration of silver of 0.063 mol/L, impregnation temperature of 223°C, impregnation time of 1.3 hand atrazine removal of 384.62 mg/g. The optimum conditions of atrazine adsorption were found to be: Temperature of 25.0°C, pH of 7.7 and r(Atraz/CaCl2) of 0.37 which gave 209 mg/g of atrazine adsorption capacity. These results demonstrated that the preparation and adsorption conditions have a significant influence on the removal of atrazine.
机译:通过使用蒸汽的物理活化制备活性碳基油棕榈壳,其进一步用银接枝。响应面方法(道尔设计)用于优化银的浸渍和亚津山的去除。三手化合物制备条件的三种变量的制备条件的影响:在一方面研究了阿特拉津除去(Y1)上的银,浸渍温度和浸渍时间的浓度。在另一只手中,还研究了来自液相的三种阿特拉嗪去除的亚特津(R(阿特拉兹/ CaCl2)的温度,pH和(r(atraz / cacl2)的比例)上取代了阿特拉嗪(Y2)的吸附能力。基于道光源设计,开发了二次模型以将准备变量和吸附变量与响应相关联。发现AC-AG的最佳条件是:0.063mol / L的浓度,浸渍温度为223℃,浸渍时间为1.3手尿嘧啶去除384.62mg / g。发现亚唑嗪吸附的最佳条件是:温度为25.0℃,pH为7.7和R(atraz / cacl2),为0.37,其产生209mg / g的尿嘧啶吸附能力。这些结果表明,制备和吸附条件对除去尿嘧啶的除去具有显着影响。

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