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Electro-oxidation of landfill leachate using boron-doped diamond: role of current density, pH and ions

机译:使用硼掺杂金刚石的垃圾填埋渗滤液的电氧化:电流密度,pH和离子的作用

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Electro-oxidation using a boron-doped diamond (BDD) anode can be used as an alternative to leachate treatment. Aside from the hydroxyl radical, BDDs are capable of generating chloride and sulfate radical species that play significant roles in the oxidation of pollutants. This research investigated the role of Cl-:SO42- ions at molar ratios of 237:1, 4:1 and 18:1, and the influence of applied current density (i. e. 50, 75 and 100 mA cm(-2)) on the removal of organic and ammonium contaminants. The results show that current density had considerable effects on chemical oxygen demand (COD) and colour removal, while ion composition of Cl- :SO42- at pH 3, 5 and 8.5 (original pH) gave different effects on COD and ammonium removal. The pH had a significant effect on the COD removal at the ratio of 237:1, but showed no dramatic effect at the ratio of 18:1, giving similar to 40% of COD removal at all pHs tested. This indicates that electro-oxidation at the ratio of 18:1 could be effectively conducted at a wide range of pH. Furthermore, the optimum ammonium removal was obtained at pH 8.5 with the ratio of 237:1. This process was found to be ineffective in increasing the biodegradability index of the leachate; instead, it exhibited mineralization of organic content.
机译:使用硼掺杂金刚石(BDD)阳极的电氧化可以用作渗滤液处理的替代方案。除了羟基自由基之外,BDD能够在污染物氧化中产生显着作用的氯化物和硫酸盐。本研究研究了237:1,4:1和18:1的摩尔比的Cl-:SO42-离子的作用,以及施加电流密度(即50,75和100 mA(-2))的影响除去有机和铵污染物。结果表明,电流密度对化学需氧量(COD)和颜色去除具有相当大的影响,而CL-:SO42-在pH 3,5和8.5(原始pH)的离子组合物对COD和铵的去除产生了不同的影响。 pH对237:1的比例的COD去除有显着影响,但没有以18:1的比例的比例没有显着效果,从而使得类似于所有测试的PHS在所有pHS上去除的40%。这表明可以在各种pH下有效地进行18:1的比例的电氧化。此外,在pH8.5下获得最佳铵的除去,其比例为237:1。在增加渗滤液的生物降解性指数时,发现该过程是无效的;相反,它表现出有机含量的矿化。

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