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Enhancing electrochemical treatment of nitrogen-containing organic wastewater by iron filings: Performance, inhibition of organochlorine by-products accumulation and cost-effectiveness

机译:通过铁涂料增强含氮有机废水的电化学处理:性能,抑制有机氯副产物的积累和成本效益

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Low current efficiency and the formation of organochlorine by-products were the critical bottlenecks in the practical applicability of electrochemical oxidation technology for nitrogen-containing organic wastewater (NCOW) treatment. In this study, a filled-bed electrochemical system with waste iron filings (IFES) was constructed to enhance the removal efficiency of total nitrogen (TN) and chemical oxygen demand (COD) as well as inhibition of the accumulation of the organochlorine by-products. Biologically treated landfill leachate (BTLL) was selected as a typical NCOW source to evaluate the performance of IFES. Cyclic voltammetry, X-ray photoelectron spectroscopy, and potentiometric analysis showed that due to the polarization effect of iron filings and the environment with low redox potential was created by the evolution of iron compounds, IFES could significantly improve the current efficiency of TN removal. Electron paramagnetic resonance analysis revealed that the reaction of low binding energy iron compounds dissolved from the polarization process of iron filings with available chlorine could promote the formation of hydroxyl radicals and can enhance the removal efficiency of COD. It was also proved that the accumulation of organochlorine could also be reduced by the reduction process of Fe-0/Fe2+, and by the iron filings polarized cathode. Besides, compared with the traditional electrochemical oxidation process, IFES can significantly decrease the energy consumption of BTLL treatment under the same treatment effect, which was conducive to reducing the engineering costs caused by the power loss. The IFES was proved to be a feasible alternative for the modification of existing electrochemical oxidation practical engineering.
机译:低电流效率和有机氯含量的形成是电化学氧化技术对含氮有机废水(Ncow)处理的实际适用性的关键瓶颈。在该研究中,构建了一种具有废铁涂层(IFES)的填充床电化学系统,以增强总氮气(TN)和化学需氧量(COD)的去除效率,以及抑制有机氯副产物的积累。选择生物处理的垃圾渗滤液(BTLL)作为典型的NCOW源来评估IFES的性能。循环伏安法,X射线光电子体光谱和电位分析表明,由于铁料的偏振效应和具有低氧化还原潜力的环境的偏振效应,可以显着提高TN去除的电流效率。电子顺磁共振分析显示,溶解于溶解铁膜偏振过程的低结合能源铁化合物的反应可以促进羟基自由基的形成,并可以增强鳕鱼的去除效率。还证实,通过Fe-0 / Fe2 +的还原过程和铁件极化阴极也可以降低有机氯的积累。此外,与传统的电化学氧化过程相比,IFES可以在相同的处理效果下显着降低BTLL治疗的能耗,这有利于降低功耗引起的工程成本。被证明的IFES是一种可行的替代方案,用于改变现有的电化学氧化实用工程。

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