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Performance and mechanistic study on electrocoagulation process for municipal wastewater treatment based on horizontal bipolar electrodes

机译:基于水平双极电极的电凝工艺处理城市污水的性能及机理研究

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摘要

The design of electrodes is crucial to electrocoagulation process(EC),specifically,with respect to pollutant removal and energy consumption.During EC,the mechanisms for interaction between different electrode arrangement and electrode reactions remain unclear.This work presents an integrated EC process based on horizontal bipolar electrodes(BPEs).In the electrochemical cell,the graphite plates are used as driving cathode while either Fe or A1 plates serves as driving anode and BPEs.The BPEs are placed horizontally between the driving electrodes.For municipal wastewater treatment,the pollutant removal efficiency and energy consumption in different configurations of twodimension electrocoagulation(2D-EC)system with horizontal BPEs were investigated.The removal efficiency of turbidity,total phosphorus and total organic carbon increased significantly with the number of BPEs.Noted that the energy consumption for TP removal decreased by 75.2%with Fe driving anode and 81.5%with A1 driving anode than those of 2D-EC,respectively.In addition,the physical field simulation suggested the distributions of potential and current in electrolyte and that of induced charge density on BPE surface.This work provides a visual theoretical guidance to predict the distribution of reactions on BPEs for enhanced pollutant removal and energy saving based on electrocoagulation process for municipal wastewater treatment.
机译:电极的设计对于电凝过程(EC)至关重要,特别是在污染物去除和能耗方面。在EC期间,不同电极排列和电极反应之间的相互作用机理仍然不清楚。水平双极电极(BPEs)。在电化学电池中,石墨板用作驱动阴极,而Fe或A1板用作驱动阳极和BPE.BPE水平放置在驱动电极之间。用于市政废水处理,污染物研究了水平BPE二维电凝(2D-EC)系统在不同配置下的去除效率和能耗。随着BPE数量的增加,浊度,总磷和总有机碳的去除效率显着提高。 Fe驱动阳极使去除率降低75.2%,A1驱动阳极使去除率降低81.5%此外,物理场模拟显示了电解液中的电势和电流分布以及BPE表面感应电荷密度的分布。这项工作为预测反应在BPE上的分布提供了可视化的理论指导。基于电凝工艺的BPE,用于市政污水处理,可增强污染物去除和节能效果。

著录项

  • 来源
    《中国环境科学与工程前沿:英文版》 |2020年第3期|P.39-48|共10页
  • 作者单位

    State Key Laboratory of Urban Water Resource and Environment Harbin Institute of Technology Harbin 150090 China;

    State Key Laboratory of Urban Water Resource and Environment Harbin Institute of Technology Harbin 150090 China;

    Sino-Dutch R&D Centre for Future Wastewater Treatment Technologies/Beijing Advanced Innovation Center of Future Urban Design Beijing University of Civil Engineering&Architecture Beijing 100044 China;

    Nanyang Environment and Water Research Institute Nanyang Technological University 1 Cleantech Loop CleanTech One Singapore 637141 Singapore;

  • 收录信息 中国科学引文数据库(CSCD);
  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 一般性问题;
  • 关键词

    Electrocoagulation; Bipolar electrodes; Municipal wastewater; Simulations;

    机译:电凝;双极电极;城市废水;模拟;
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