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首页> 外文期刊>Soil & Sediment Contamination >Application of Box-Behnken Design to Hybrid Electrokinetic-Adsorption Removal of Mercury from Contaminated Saline-Sodic Clay Soil
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Application of Box-Behnken Design to Hybrid Electrokinetic-Adsorption Removal of Mercury from Contaminated Saline-Sodic Clay Soil

机译:Box-Behnken设计在混合动力吸附去除盐碱土中汞的应用

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摘要

A hybrid electrokinetic-adsorption (HEKA) technique using uniform electric field and granular activated carbon (GAC) produced from date palm pits was investigated for the removal of mercury from natural saline-sodic clay heavily contaminated with heavy metals, phenol, and kerosene. Response surface methodology (RSM) was employed to model, optimize, and interpret the results obtained with the aid of Design Expert software. According to the Box-Behnken experimental design, 15 experiments were conducted each with residence time of three weeks. The effects of voltage gradient (0.2-1V/cm), initial Hg concentration (mg/Kg), and polarity reversal interval (0-48hours) on Hg removal efficiency and energy consumed for Hg removal were investigated. Respectively, the responses fitted reduced cubic (R-2 = 99.3%) and quadratic models (R-2 = 92.3%) with the overall relative contributions of the investigated parameters on the responses following the order: voltage gradient > initial Hg concentration > polarity reversal interval based on analysis of variance (ANOVA). The optimal conditions obtained with desirability of 90% aimed at maximizing Hg removal were 24hours polarity reversal interval, 0.2V/cm voltage gradient, and 100mg/kg initial Hg concentration. This optimum operating condition yielded good removal of Hg (99.5%) at reduced energy consumption of 50.1kWh.m(-3)mg(-1). Experimental validation of the models showed good prediction of Hg removal efficiency (0.0368% prediction error). The results presented herein suggest that HEKA technology could be utilized effectively for the removal of Hg from contaminated, low permeable soils under extreme soil and contamination conditions.
机译:研究了一种使用均匀电场和从枣椰核中产生的颗粒状活性炭(GAC)的混合电动吸附(HEKA)技术,用于从重度污染重金属,苯酚和煤油的天然盐水-钠粘土中去除汞。响应面方法(RSM)用于通过Design Expert软件进行建模,优化和解释所获得的结果。根据Box-Behnken实验设计,每个实验进行了15个实验,停留时间为3周。研究了电压梯度(0.2-1V / cm),初始汞浓度(mg / Kg)和极性反转间隔(0-48小时)对除汞效率和除汞能量的影响。响应分别拟合了简化的三次方(R-2 = 99.3%)和二次模型(R-2 = 92.3%),并具有以下参数对响应的总体相对贡献:电压梯度>初始汞浓度>极性基于方差分析(ANOVA)的反转区间。旨在最大程度地去除汞的90%的理想条件是24小时极性反转间隔,0.2V / cm的电压梯度和100mg / kg的初始Hg浓度。该最佳运行条件在降低能耗50.1kWh.m(-3)mg(-1)的情况下,可以很好地除去Hg(99.5%)。模型的实验验证显示了对汞去除效率的良好预测(0.0368%的预测误差)。本文提供的结果表明,在极端土壤和污染条件下,HEKA技术可有效用于从受污染的低渗透性土壤中去除汞。

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