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Pilot Scale Performance Of The Electro-oxidation Of Landfill Leachate At Boron-doped Diamond Anodes

机译:掺硼金刚石阳极上垃圾渗滤液电氧化的中试性能

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During the electrochemical oxidation of real wastewaters, the different species present in the effluent may interact creating complex scenarios making the prediction of the behavior of the whole system difficult. In this paper the different phenomena that occur during the electro-oxidation process of landfill leachate at a pilot plant scale with boron-doped diamond (BDD) anodes are elucidated. The total BDD anode area of the pilot plant was 1.05 m~2. The evolution of the concentration of chloride ions, chlorate, and inorganic carbon and the value of pH and redox potential were found to be inter-related. In turn, the concentration of chloride affected the oxidation of ammonia, which took place through indirect oxidation by active chlorine. Moreover, chloride ions competed with organic matter to be oxidized at the anode. The effect of current density was also investigated. Organic matter and ammonia oxidation were highly influenced by the applied current density value. A change in the mechanism of organic matter oxidation was observed when high current densities were applied. Two mathematical models, previously applied to the oxidation of synthetic wastewaters in the literature, were able to predict the evolution of chemical oxygen demand and ammonia for low current density values.
机译:在实际废水的电化学氧化过程中,废水中存在的不同物质可能相互作用,从而形成复杂的场景,从而难以预测整个系统的行为。在本文中,阐明了在带有硼掺杂金刚石(BDD)阳极的中试规模垃圾填埋场渗滤液的电氧化过程中发生的不同现象。中试厂的BDD阳极总面积为1.05 m〜2。发现氯离子,氯酸根和无机碳的浓度的演变与pH和氧化还原电位的值是相互关联的。反过来,氯化物的浓度影响氨的氧化,这是通过活性氯间接氧化而发生的。而且,氯离子与有机物竞争而在阳极被氧化。还研究了电流密度的影响。有机物和氨氧化受到施加的电流密度值的很大影响。当施加高电流密度时,观察到有机物氧化机理的变化。先前在文献中应用于合成废水氧化的两个数学模型能够预测低电流密度值下化学需氧量和氨的演变。

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