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Research on the treatment of biologically treated landfill leachate by joint electrochemical system

机译:联合电化学系统处理生物垃圾渗滤液的研究

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摘要

Biologically treated landfill leachate (BTLL) is typically characterized by significantly high amount of total nitrogen (TN) and chemical oxygen demand (COD), and it has low biodegradability. In this study, a joint electrochemical system (JES) composed of iron anode reactor (IAR) and Ti/RuO2anode reactor (TAR) was constructed to remove both TN and COD from BTLL and improve its biodegradability. The IAR and TAR with the same structure but using different anodes. As a result, JES could simultaneously remove COD and TN by 90.9 ± 0.3% and 90.2 ± 1.0%, respectively. Reduction of nitrite-N by Cu/Zn cathode in IAR and oxidation of ammonium-N by active chlorine in TAR were the major pathways for TN removal, while the COD could be removed by coagulation of iron flocs and oxidation by hydroxyl radicals and active chlorine. Fluorescence spectrum and parallel factor analysis showed that the main components of organics in BTLL were humic-like substances, fulvic-like substances, and soluble microbial degradation products. Humic-like substances were particularly removed by JES, and the remaining organics after electrolysis were some alkanes (e.g., heptane and nonane). Furthermore, decrease in molecular weight and aromaticity and increase in biodegradable substances indicated that the biodegradability of BTLL was effectively improved by the JES. The developed JES is a promising approach for application in the BTLL treatment.
机译:经过生物处理的垃圾填埋场渗滤液(BTLL)通常具有明显高的总氮(TN)和化学需氧量(COD),并且其生物降解性低。在这项研究中,建立了一个由铁阳极反应器(IAR)和Ti / RuO2阳极反应器(TAR)组成的联合电化学系统(JES),以从BTLL中去除TN和COD并提高其生物降解性。 IAR和TAR具有相同的结构,但使用不同的阳极。结果,JES可以同时去除COD和TN的比例分别为90.9%±0.3%和90.2%±1.0%。 IAR中的Cu / Zn阴极还原亚硝酸盐N和TAR中的活性氯氧化铵N是去除TN的主要途径,而COD可以通过铁絮凝和羟基自由基和活性氯的氧化而去除。 。荧光光谱和平行因素分析表明,BTLL中有机物的主要成分是腐殖质,黄腐质和可溶性微生物降解产物。 JES特别去除了类似腐殖质的物质,电解后剩余的有机物是一些烷烃(例如庚烷和壬烷)。此外,分子量和芳香性的降低以及可生物降解物质的增加表明,JES有效地改善了BTLL的生物降解性。发达的JES是在BTLL治疗中应用的有前途的方法。

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