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Scale-up of BDD anode system for electrochemical oxidation of phenol simulated wastewater in continuous mode

机译:用于连续模拟苯酚模拟废水电化学氧化的BDD阳极系统规模放大

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摘要

Scale-up of boron-doped diamond (BDD) anode system is significant to the practical application of electrochemical oxidation in bio-refractory wastewater treatment. In this study, the performance of a smaller BDD anode (24 cm2) system in continuous mode electrochemical oxidation of phenol simulated wastewater was first investigated and well described by the response surface methodology (RSM). Furthermore, the RSM was extended to examine the scale-up feasibility of BDD anode systems with similar configurations. It was demonstrated that both COD degradation efficiency and specific energy consumption could be expected at the same level even as the system was enlarged over 100 times, which implied that BDD anode system could be successfully scaled up through controlling the same retention time, current density, initial COD, and conductivity conditions. Based on this study, a larger BDD anode (2904 cm~2) system was constructed and systematic measurements were made on its performance in electrochemical oxidation of phenol simulated wastewater. Very good agreement was found between measured and predicted results by RSM. At the optimized conditions, the larger BDD anode system could easily reduce the COD of phenol simulated wastewater from 633 mg L~(-1) to 145 mg L~(-1) (<150 mg L~(-1), National Discharge Standard of China) during 80 min with specific energy consumption only 31 kWhkgCOD~(-1).
机译:硼掺杂金刚石(BDD)阳极系统的放大规模对于电化学氧化在生物难处理废水处理中的实际应用具有重要意义。在这项研究中,首先研究了较小的BDD阳极(24 cm2)系统在苯酚模拟废水的连续模式电化学氧化中的性能,并通过响应表面方法(RSM)进行了很好的描述。此外,RSM已扩展为检查具有类似配置的BDD阳极系统的放大可行性。结果表明,即使将系统放大100倍以上,COD的降解效率和比能耗也可以预期在同一水平,这意味着通过控制相同的保留时间,电流密度,BDD阳极系统可以成功扩大规模。初始COD和电导率条件。在此基础上,构建了较大的BDD阳极(2904 cm〜2)系统,并对其在苯酚模拟废水的电化学氧化中的性能进行了系统的测量。 RSM的测量结果和预测结果之间找到了非常好的一致性。在最佳条件下,较大的BDD阳极系统可以轻松将苯酚模拟废水的COD从633 mg L〜(-1)降至145 mg L〜(-1)(<150 mg L〜(-1),国家排放中国标准)在80分钟内的单位能耗仅为31 kWhkgCOD〜(-1)。

著录项

  • 来源
    《Journal of Hazardous Materials》 |2010年第3期|p.493-498|共6页
  • 作者单位

    Department of Environmental Engineering, Peking University, the Key Laboratory of Water and Sediment Sciences, Ministry of Education. Beijing 100871, China;

    Department of Environmental Engineering, Peking University, the Key Laboratory of Water and Sediment Sciences, Ministry of Education. Beijing 100871, China;

    Department of Environmental Engineering, Peking University, the Key Laboratory of Water and Sediment Sciences, Ministry of Education. Beijing 100871, China;

    Department of Environmental Engineering, Peking University, the Key Laboratory of Water and Sediment Sciences, Ministry of Education. Beijing 100871, China;

    Department of Environmental Engineering, Peking University, the Key Laboratory of Water and Sediment Sciences, Ministry of Education. Beijing 100871, China;

    Department of Environmental Engineering, Peking University, the Key Laboratory of Water and Sediment Sciences, Ministry of Education. Beijing 100871, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    scale-up; boron-doped diamond anode; electrochemical oxidation; response surface methodology; phenol;

    机译:放大;掺硼金刚石阳极电化学氧化响应面方法苯酚;

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