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首页> 外文期刊>Water Science and Technology >Optimization of leachate treatment using persulfate/H2O2 based advanced oxidation process: case study: Deir El-Balah Landfill Site, Gaza Strip, Palestine
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Optimization of leachate treatment using persulfate/H2O2 based advanced oxidation process: case study: Deir El-Balah Landfill Site, Gaza Strip, Palestine

机译:使用基于过硫酸盐/过氧化氢的高级氧化工艺优化渗滤液的处理:案例研究:巴勒斯坦加沙地带的Deir El-Balah垃圾填埋场

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摘要

The objective of this study was to investigate the performance of employing H2O2 reagent in persulfate activation to treat stabilized landfill leachate. A central composite design (CCD) with response surface methodology (RSM) was applied to evaluate the relationships between operating variables, such as persulfate and H2O2 dosages, pH, and reaction time, to identify the optimum operating conditions. Quadratic models for the following two responses proved to be significant with very low probabilities (<0.0001): chemical oxygen demand (COD) and NH3-N removal. The obtained optimum conditions included a reaction time of 116 min, 4.97 g S2O82-, 7.29 g H2O2 dosage and pH 11. The experimental results were corresponding well with predicted models (COD and NH3-N removal rates of 81% and 83%, respectively). The results obtained in the stabilized leachate treatment were compared with those from other treatment processes, such as persulfate only and H2O2 only, to evaluate its effectiveness. The combined method (i.e., /S2O82-/H2O2) achieved higher removal efficiencies for COD and NH3-N compared with other studied applications.
机译:这项研究的目的是研究在过硫酸盐活化中使用过氧化氢试剂处理稳定的垃圾渗滤液的性能。采用具有响应表面方法(RSM)的中央复合设计(CCD)来评估操作变量之间的关系,例如过硫酸盐和H2O2的剂量,pH值和反应时间,以确定最佳的操作条件。事实证明,以下两个响应的二次模型非常重要,概率很低(<0.0001):化学需氧量(COD)和NH3-N去除。获得的最佳条件包括116分钟的反应时间,4.97 g S2O82-,7.29 g H2O2剂量和pH11。实验结果与预测模型相符(COD和NH3-N去除率分别为81%和83%) )。将稳定渗滤液处理中获得的结果与其他处理方法(例如仅过硫酸盐和仅过氧化氢)的结果进行比较,以评估其有效性。与其他研究应用相比,组合方法(即,/ S2O82- / H2O2)实现了对COD和NH3-N更高的去除效率。

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