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Treatment of Styrene-Contaminated Air Using Combined Process of Microelectrolysis and Biotrickling Filter

机译:微电解-生物滴滤池联合处理含苯乙烯的空气

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摘要

Treatment of styrene-contaminated air using a combined process of microelectrolysis and biotrickling filter was studied in this article for the first time. Removal of styrene was higher than 95% and kept rather stable after the process reached a stable state. The active substance produced by microelectrolysis with an appropriate electric current presenting the synergy effect for the combined process, resulted in an improvement in the styrene removal. There exists an optimum electric current for the combined process. At the residence time (RT) of 108 s and the styrene inlet load of 15 g/(m~(3)·h), when the electric current increased from 50 to 150 mA, styrene removal increased from 92.6–94.4% to 98.5–99.1%. When the electric current further increased to 200 mA, however, styrene removal reduced to 92.9–95.5%. When RT was 216 or 108 s and the styrene inlet load was 7.5 or 15 g/(m~(3)·h), varying the styrene inlet concentration did not affect the styrene removal. The influence of styrene inlet concentration on the styrene removal gradually emerged with decrease of RT. At a relative low styrene inlet load (≤30 g/[m~(3)·h]), styrene removal load increased linearly with increasing styrene inlet load. In addition, we found that the optimum pH value was relatively low (5.2) when the electric current (100 mA) was applied to the biological process.
机译:本文首次研究了微电解与生物滴滤池联合处理含苯乙烯的空气的方法。苯乙烯的去除率高于95%,并在过程达到稳定状态后保持相当稳定。通过微电解产生的活性物质在适当的电流下呈现出联合过程的协同效应,从而改善了苯乙烯的去除率。对于组合过程,存在最佳电流。在108 s的停留时间(RT)和15 g /(m〜(3)·h)的苯乙烯入口负荷下,当电流从50 mA增加到150 mA时,苯乙烯去除率从92.6–94.4%增加到98.5 –99.1%。但是,当电流进一步增加到200 mA时,苯乙烯去除率降低到92.9–95.5%。当RT为216或108 s,苯乙烯入口负荷为7.5或15 g /(m〜(3)·h)时,改变苯乙烯入口浓度不会影响苯乙烯的去除。随着RT的降低,苯乙烯入口浓度对苯乙烯去除的影响逐渐显现。在较低的苯乙烯进口负荷(≤30g / [m〜(3)·h])下,苯乙烯去除负荷随苯乙烯进口负荷的增加而线性增加。另外,我们发现当电流(100 mA)用于生物过程时,最佳pH值相对较低(5.2)。

著录项

  • 来源
    《Environmental Engineering Science》 |2018年第12期|1302-1308|共7页
  • 作者单位

    Department of Environmental Design, College of Arts and Media, Ningbo Dahongying University;

    Department of Environmental Science, College of Biological and Environmental Sciences;

    Nanyang Street Agency of Xiaoshan District People's Government in Hangzhou City;

    Department of Environmental Engineering, College of Environmental Science and Engineering, Zhejiang Gongshang University;

  • 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);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    biotrickling filter; microelectrolysis; styrene; synergy; VOCs;

    机译:生物滴滤池;微电解;苯乙烯;协同作用;挥发性有机化合物;

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