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An empirical model for treatment of arsenic contaminated underground water by electrocoagulation process employing a bipolar cell configuration with continuous flow

机译:采用双极池结构连续流动电凝法处理砷污染地下水的经验模型

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Arsenic (As) was removed electrochemically from underground water (GW) by electrocoagulation (EC) process employing a bipolar cell configuration with continuous flow using iron electrodes. A kinetic model derived from the Lagergren equation was applied to specify the kinetics of the arsenic removal reaction. Elucidation of the effect of the liquid flow rate on the treatment time and on the simulation results of the model was achieved. The results showed that treatment times decreased from 10.50 min to 0.75 min as the flow rate decreased from 3.500 to 0.875L min(-1) and the current density varied from 15 to 45A m(-2) respectively. The used sorption kinetic model successfully describes the arsenic removal by this process. The coefficients of determination were found to be very high in all cases (R-2 > 0.99) indicating a good fit of the experimental data to Lagergren model.
机译:通过电凝(EC)工艺,采用双极电池结构并使用铁电极连续流动,从地下水(GW)中电化学去除砷(As)。应用从Lagergren方程得出的动力学模型来指定除砷反应的动力学。阐明了液体流速对处理时间和模型模拟结果的影响。结果表明,处理时间从10.50分钟减少到0.75分钟,流量从3.500减少到0.875L min(-1),电流密度分别从15到45A m(-2)。所使用的吸附动力学模型成功地描述了此过程中的砷去除。发现在所有情况下测定系数都很高(R-2> 0.99),表明实验数据非常适合Lagergren模型。

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