首页> 外文期刊>Polish Journal of Environmental Studies >Optimization and Modelling Using the Response Surface Methodology for Methylene Blue Removal by Electrocoagulation/Hazelnut Shell Adsorption Coupling in a Batch System
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Optimization and Modelling Using the Response Surface Methodology for Methylene Blue Removal by Electrocoagulation/Hazelnut Shell Adsorption Coupling in a Batch System

机译:批量生产中电凝/榛子壳吸附耦合的响应表面方法的优化和建模

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摘要

The present work examined the removal of methylene blue (MB) from aqueous solutions through an electrocoagulation/hazelnut shell (EC/HNS) adsorption coupling process. The process was evaluated using a Box-Behnken design (BBD) under the response surface methodology (RSM). According to the obtained results from BBD-RSM regression analysis, we found that the experimental data are best fitted to the second-order polynomial model with coefficient of determination (R-2) value of 0.9534, adjust coefficient (R-adj(2)) value of 0.9926 and predicted correlation coefficient (R-Pred(2)) value of 0.9973. The maximum MB removal efficiency was obtained under optimized conditions (HNS dosage, 6 g/L; reaction time, 17.75 min; and current density, 2.6 mA/cm(2)). Under the optimum conditions, the MB removal rate reached 99.45%, and the RSM predictive value was 98.71% with a small deviation. These results confirmed that the RSM model accurately and reliably analysed the process of removing MB from wastewater.
机译:本作者通过电凝矿/榛子壳(EC / HNS)吸附偶联方法检测从水溶液中除去亚甲基蓝(MB)。在响应表面方法(RSM)下使用Box-Behnken设计(BBD)进行评估该过程。根据BBD-RSM回归分析的结果,我们发现实验数据最适合于二阶多项式模型,其测定系数(R-2)值为0.9534,调整系数(R-ACJ(2) )值为0.9926,并且预测相关系数(R-PEAT(2))值为0.9973。在优化条件下获得最大MB去除效率(HNS剂量,6g / L;反应时间,17.75分钟;和电流密度,2.6mA / cm(2))。在最佳条件下,MB去除率达到99.45%,RSM预测值为98.71%,偏差小。这些结果证实,RSM模型准确且可靠地分析了从废水中移除MB的过程。

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