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Optimization of process parameters for electrochemical nitrate removal using Box-Behnken design

机译:使用Box-Behnken设计优化电化学去除硝酸盐的工艺参数

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Electrochemical reduction of nitrate in an undivided cell was studied in the present experiments. The optimization of the influencing factors on electrochemical reduction of nitrate by response surface methodology (RSM) was also studied. An ideal condition of performing both cathodic reduction of nitrate and anodic oxidation of the formed by-product in the presence of NaCl was achieved in the present experiment. The Box-Behnken design can be employed to develop mathematical models for predicting electrochemical nitrate removal geometry. The removal is sensitive to the current density and time in the present study. The value of R~2 > 0.99 for the present mathematical model indicates the high correlation between observed and predicted values. The optimal NaCl dosage, current density and electrolysis time for nitrate removal in the present experiment are 0.47 g L~(-1), 26.06 mA cm~(-2), and 111.88 min, respectively, at which the nitrate nitrogen (nitrate-N) and ammonia nitrogen (ammonia-N) concentration in the treated solution are 9.80 and 0 mg L~(-1), respectively, which will meet the standards for drinking water.
机译:在本实验中研究了未分裂细胞中硝酸盐的电化学还原。还研究了响应面法(RSM)优化硝酸盐电化学还原反应的影响因素。在本实验中,获得了在NaCl存在下进行硝酸盐的阴极还原和副产物的阳极氧化的理想条件。 Box-Behnken设计可用于开发数学模型,以预测电化学硝酸盐去除的几何形状。在本研究中,去除对电流密度和时间很敏感。对于本数学模型,R〜2> 0.99的值表明观测值与预测值之间具有高度相关性。在本实验中,用于去除硝酸盐的最佳NaCl剂量,电流密度和电解时间分别为0.47 g L〜(-1),26.06 mA cm〜(-2)和111.88 min,此时硝酸盐氮(硝酸盐- N)和处理后溶液中的氨氮(氨氮)浓度分别为9.80和0 mg L〜(-1),符合饮用水标准。

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