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Electrochemical oxidation of landfill leachates at pilot scale: evaluation of energy needs

机译:中试规模的垃圾渗滤液的电化学氧化:能源需求评估

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Two of the main drawbacks to be overcome before full scale implementation of boron-doped diamond electro-oxidation were addressed in this work; its energy consumption and hazard of formation of chlorinated organics. This was framed within a study in which the technical and economic feasibility of BDD electro-oxidation of landfill leachate was evaluated at pilot scale. On one hand, its technical feasibility was assessed based on COD and NH4+ removal, allowing the selection of the operation conditions that provide optimal energy efficiency, and special attention was paid to the risk of formation of undesired by-products such as nitrite, nitrate ions and trihalomethanes. On the other hand, treatment costs were estimated based on energy consumption required to reach the disposal limits to natural watercourses established by legislation. The results were compared with those of other commonly used AOPs. Under the operating conditions studied, the concentration of COD decreased below the disposal limit (160 mg L-1) and ammonia concentration reached values as low as 30 mg L-1. The energy consumption needed was estimated at 54 kWh/m(3) and the formation of chlorination by-products appeared to be low as the maximum total trihalomethane concentration detected was 432 mu g/L.
机译:在这项工作中解决了在全面实施掺硼金刚石电氧化之前要克服的两个主要缺陷。它的能量消耗和形成氯化有机物的危险。这是在一项研究的框架内进行的,该研究以中试规模评估了BDD电氧化垃圾渗滤液的技术和经济可行性。一方面,基于去除COD和NH4 +评估了其技术可行性,从而可以选择提供最佳能源效率的运行条件,并特别注意了形成不良副产物(如亚硝酸盐,硝酸根离子)的风险和三卤甲烷。另一方面,根据达到立法规定的对自然水道的处置极限所需的能量消耗来估算处理成本。将结果与其他常用AOP进行比较。在研究的操作条件下,COD的浓度降至处置极限以下(160 mg L-1),氨气浓度降至30 mg L-1。估计所需的能量消耗为54 kWh / m(3),并且由于检测到的最大总三卤甲烷浓度为432μg / L,氯化副产物的形成似乎较低。

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