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首页> 外文期刊>Journal of Hazardous Materials >A new approach for modelling and optimization of Cu(Ⅱ) biosorption from aqueous solutions using sugar beet shreds in a fixed-bed column
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A new approach for modelling and optimization of Cu(Ⅱ) biosorption from aqueous solutions using sugar beet shreds in a fixed-bed column

机译:利用甜菜丝在固定床色谱柱中建模和优化水溶液中Cu(Ⅱ)生物吸附的新方法

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摘要

The potential use of sugar beet shreds for copper ions removal from aqueous solution in a fixed-bed column was investigated. Experiments were performed using Box-Behnken experimental design on three levels and three variables: concentration of the inlet solution (50-150 mg L-1), adsorbent dosage (8-12 g) and pH of the inlet solution (4.0-5.0). The obtained breakthrough curves were fitted with two common empirical models, Bohart-Adams and dose-response. Observing the asymmetric shape of the breakthrough curves, the new mathematical model was proposed. The new model proposes the breakthrough curve composed of two parts, sum of which gives the asymmetrical S-shaped curve, accurately matching experimental data. Regarding the lowest SSer (7.8.10(-4)) and highest R-2 (0.9998), new model exhibited the best fit comparing to the commonly used models. RSM and ANN modelling were employed for process variables evaluation and optimization. The most influential parameter exhibiting negative influence on target response (critical time) was concentration of the inlet solution, while the adsorbent dosage exhibited positive influence. Optimization procedure revealed that the highest critical time (341.4 min) was achieved at following conditions: C-0 = 50 mg.L-1, m(a) = 12 g and pH 4.53 by ANN, while RSM considered pH as insignificant factor and obtained 314.8 min as the highest response.
机译:研究了甜菜切丝在固定床色谱柱中从水溶液中去除铜离子的潜在用途。使用Box-Behnken实验设计在三个级别和三个变量上进行了实验:入口溶液的浓度(50-150 mg L-1),吸附剂剂量(8-12 g)和入口溶液的pH值(4.0-5.0) 。所获得的突破曲线与两个常见的经验模型Bohart-Adams和剂量反应拟合。观察突破曲线的不对称形状,提出了新的数学模型。新模型提出了由两部分组成的突破曲线,其总和给出了不对称的S形曲线,与实验数据精确匹配。关于最低SSer(7.8.10(-4))和最高R-2(0.9998),与常用模型相比,新模型显示出最佳拟合。 RSM和ANN建模用于过程变量评估和优化。对目标响应(临界时间)产生负面影响的最有影响的参数是入口溶液的浓度,而吸附剂剂量则表现出正面的影响。优化程序显示,在以下条件下达到了最高临界时间(341.4分钟):C-0 = 50 mg.L-1,m(a)= 12 g,ANN的pH为4.53,而RSM将pH视为无关紧要的因素,获得314.8分钟作为最高响应。

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