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Conditioning of aluminium-based water treatment sludge with Fenton's reagent: Effectiveness and optimising study to improve dewaterability

机译:用Fenton试剂处理铝基水处理污泥:提高脱水性能的有效性和优化研究

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Alternative conditioning of aluminium-based drinking water treatment sludge using Fenton reagent (Fe~(2+)/H_2O_2) was examined in this study. Focuses were placed on effectiveness and factors to affect such novel application of Fenton process. Experiments have demonstrated that considerable improvement of alum sludge dewaterability evaluated by capillary suction time (CST) can be obtained at the relative low concentrations of Fenton reagent. A Box-Behnken experimental design based on the response surface methodology was applied to evaluate the optimum of the influencing variables, i.e. iron concentration, hydrogen peroxide concentration and pH. The optimal values for Fe~(2+), H_2O_2, and pH are 21 mg g~(-1) DS~(-1)(dry solids), 105 mg g~(-1) DS~(-1) and 6, respectively, at which the CST reduction efficiency of 48 ± 3% can be achieved, this agreed with that predicted by an established polynomial model in this study.
机译:本研究研究了使用Fenton试剂(Fe〜(2 +)/ H_2O_2)替代铝基饮用水处理污泥的方法。重点放在有效性和影响Fenton工艺如此新颖应用的因素上。实验表明,在相对较低的Fenton试剂浓度下,通过毛细管抽吸时间(CST)可以评估明矾污泥的脱水性能。基于响应表面方法的Box-Behnken实验设计用于评估影响变量的最佳值,即铁浓度,过氧化氢浓度和pH。 Fe〜(2 +),H_2O_2和pH的最佳值为21 mg g〜(-1)DS〜(-1)(干固体),105 mg g〜(-1)DS〜(-1)和如图6所示,CST降低效率可达到48±3%,这与本研究中建立的多项式模型所预测的结果一致。

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