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Comprehensive chemical analysis and characterization of heavy oil electric desalting wastewaters in petroleum refineries

机译:石油炼油厂重油电动脱盐废水的综合化学分析与表征

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摘要

Large quantities of highly polluted point-source wastewaters (EDWs) are generated from electric desalting process of heavy oils (HOs), resulting in severe impacts on the efficiency of wastewater treatment plants in petroleum refineries. In the present study, a comprehensive chemical analysis and characterization of EDWs of two typical Chinese heavy oils, Liaohe heavy oil (LHO) and Karamy heavy oil (KHO), were investigated using Daqing light oil (DLO) as a control. The HO-EDWs (LHO-EDW and KHO-EDW) show high pollutants contents with complicated compositions, more polar dissolved organic pollutants (DOPs), strong emulsion stability and high acute biotoxicity towards Vibrio fischeri, compared to DLO-EDW. LHO-EDW and KHO-EDW have nearly equal pollutants contents but different compositions and distributions, where more types of DOPs exist in KHO-EDW. Large amounts of biologically recalcitrant aromatic compounds, as well as heteroatomic compounds such as CHO, CHOS and CHON species, extensively distribute in HO-EDWs. The organic nitrogen compounds (e.g., anilines and N_(2-3)O_x, N_1O_xS_1) in KHO-EDW most probably contribute to and thus leading to elevated levels of acute biotoxicity. Additionally, highly dispersed colloidal, micron-sized particles and polar compounds promote the emulsification and stabilization of HO-EDWs. These results can guide the development of pretreatment technologies for HO-EDWs, thus improving the treatment and management of heavy oil refineries' wastewater streams.
机译:大量的高度污染点源废水(EDWS)是从重油(HOS)的电脱盐过程产生的,导致石油炼油厂废水处理厂的效率产生严重影响。在本研究中,使用Daqing Light油(DLO)作为对照,研究了两种典型的中国重油,辽河重油(LHO)和karamy重油(Kho)的综合化学分析和表征。与DLO-EDW相比,HO-EDWS(LHO-EDW和KHO-EDW)显示出具有复杂组合物的高污染物含量,更加极性溶解有机污染物(DOPS),强烈的乳液稳定性和高急性生物毒性,与DLO-EDW相比。 LHO-EDW和KHO-EDW具有几乎相同的污染物含量,但不同的组成和分布,KHO-EDW中存在更多类型的多孔。大量的生物醋酸芳族化合物,以及杂原子化合物如CHO,CHO和CHON物种,广泛地分布于HO-EDWS。 KHO-EDW中的有机氮化合物(例如,苯胺和N_(2-3)O_x,N_1O_XS_1)最可能导致急性生物毒性的升高。另外,高度分散的胶体,微米尺寸的颗粒和极性化合物促进了HO-EDWS的乳化和稳定性。这些结果可以指导HO-EDW的预处理技术的发展,从而改善重油炼油厂废水流的治疗和管理。

著录项

  • 来源
    《The Science of the Total Environment》 |2020年第jul1期|138117.1-138117.11|共11页
  • 作者单位

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

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

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

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

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

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

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

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

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

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

    Heavy oils; Electric desalting; Wastewaters; Characteristics; FT-ICR MS;

    机译:重油;电动脱盐;废水;特征;FT-ICR MS;

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