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Molecular transformation of dissolved organic matter in process water from oil and gas operation during UV/H_2O_2, UV/chlorine, and UV/persulfate processes

机译:从UV / H_2O_2,UV /氯和UV /过硫酸盐过程中油气运行过程水中溶解有机物的分子转化

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摘要

This paper reported the impact of UV/H_2O_2, UV/chlorine, and UV/persulfate advanced oxidation processes on the molecular transformations of dissolved organic matter (DOM), removal of naphthenic acids (NAs) and acute tox-icity in oil sands process water (OSPW). The UV/persulfate process exhibited the highest removal (81.2% with 2 mM dose) towards classical NAs and highest reduction in acute toxicity to Vibrio fischeri among the three processes. The fraction of DOM such as CHOS class species decreased along with the increase of the oxidant doses in all processes. The increase in O/C ratio and lack of change in the H/C and double bond equivalence indicated that H-abstraction followed by the OH-addition was the main reaction pathway for all processes. This observation aligned with previous studies using model compounds and proved that OSPW DOM reacted similarly to model compounds. Sulfur containing organic matters were the most liable compounds in OSPW NOM, while UV/chlorine was the most effective process to oxidize nitrogen containing organic matters. Overall results revealed that the UV/persulfate process could be used as a promising technique for the removal of OSPW NA and reduction of acute toxicity towards Vibrio fischeri. In addition, this DOM characterization approach could be utilized to investigate the transformation of complicated OSPW DOM and to identify the byproducts generated during different water treatment processes.
机译:本文报告了UV / H_2O_2,UV /氯和紫外/过硫酸盐的影响对溶解有机物质(DOM)的分子转化,除去萘酸(NAS)和油砂加工水中的急性Tox-Icity的分子转化(OSPW)。紫外/过硫酸盐过程表现出最高的去除(81.2%,2mm剂量),朝向古典NAS和急性毒性的最高减少到三种过程中的vibriofischeri。诸如CHOS类别物种的DOM的分数随着氧化剂剂量的增加而降低。 H / C和双键当量的O / C比和缺乏变化的增加表明H-Abstacty之后的OH-添加是所有过程的主要反应途径。这种观察结果与先前的研究使用模型化合物对齐,并证明了OSPW DOM与模型化合物类似地反应。含硫有机物质是OSPW NOM中最沉重的化合物,而UV /氯是氧化含氮有机物质的最有效方法。总体结果表明,UV /过硫酸盐方法可用作去除OSPW NA的有希望的技术和对vibriofischeri的急性毒性的降低。此外,该DOM表征方法可用于研究复杂OSPW DOM的转换,并识别不同水处理过程中产生的副产物。

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  • 来源
    《The Science of the Total Environment》 |2020年第15期|139072.1-139072.8|共8页
  • 作者单位

    State Key Laboratory of Heavy Oil Processing China University of Petroleum Beijing 102249 China Department of Civil and Environmental Engineering University of Alberta Edmonton AB T6G 1H9 Canada;

    Department of Civil and Environmental Engineering University of Alberta Edmonton AB T6G 1H9 Canada;

    Department of Civil and Environmental Engineering University of Alberta Edmonton AB T6G 1H9 Canada;

    State Key Laboratory of Heavy Oil Processing China University of Petroleum Beijing 102249 China State Key Laboratory of Organic Geochemistry Guangzhou Institute of Geochemistry Chinese Academy of Sciences Guangzhou 510640 China;

    Department of Civil and Environmental Engineering University of Alberta Edmonton AB T6G 1H9 Canada;

    State Key Laboratory of Heavy Oil Processing China University of Petroleum Beijing 102249 China;

    State Key Laboratory of Heavy Oil Processing China University of Petroleum Beijing 102249 China;

    Department of Civil and Environmental Engineering University of Alberta Edmonton AB T6G 1H9 Canada;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    DOM transformation; Oil sands process water; Advanced oxidation; Vibrio fischeri; Naphthenic acids;

    机译:DOM转型;油砂加工水;先进的氧化;vibrio fischeri;环烷酸;

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