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Optimization of Pb(II) adsorption onto modified walnut shells using factorial design and simplex methodologies

机译:使用析因设计和单纯形方法优化对改性核桃壳的Pb(II)吸附

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摘要

The removal of Pb(II) ions from aqueous solutions by chemically modified walnut shells was studied. A 2~4 full factorial design analysis was performed to screen the variables affecting Pb(II) removal efficiency. The effects of solution pH, adsorbent dose, initial concentration of Pb(II) ions, and temperature on metal removal efficiency were examined in a batch system. Using the experimental results, a linear mathematical model representing the influence of the different variables and their interactions was obtained. Analysis of variance (ANOVA), F-test and Student's t-test showed that Pb(II) ions adsorption is only slightly temperature dependent, but markedly increases with adsorbent dose and solution pH. The initial concentration of Pb(II) ions had a relatively small negative effect on removal efficiency. The optimization of the statistically significant factors was carried out using a modified simplex method. The recommended optimum conditions were: adsorbent dosage of 13.5 g/L, solution pH of 6.3, initial metal concentration of 45.3 mg/L, with the Pb(II) removal efficiency of 98.2%.
机译:研究了用化学修饰的核桃壳从水溶液中去除Pb(II)离子的方法。进行了2〜4个全因子设计分析以筛选影响Pb(II)去除效率的变量。在分批系统中检查了溶液的pH值,吸附剂剂量,Pb(II)离子的初始浓度和温度对金属去除效率的影响。利用实验结果,获得了代表不同变量及其相互作用的线性数学模型。方差分析(ANOVA),F检验和St​​udent t检验表明,Pb(II)离子的吸附仅与温度​​密切相关,但随吸附剂剂量和溶液pH的增加而显着增加。 Pb(II)离子的初始浓度对去除效率具有相对较小的负面影响。使用改良的单纯形法对统计上重要的因素进行优化。推荐的最佳条件是:吸附剂剂量为13.5 g / L,溶液pH为6.3,初始金属浓度为45.3 mg / L,Pb(II)去除效率为98.2%。

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