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Treatment of oil and grease in produced water by a pilot-scale constructed wetland system using biogeochemical processes

机译:利用生物地球化学方法,通过中试规模的人工湿地系统处理采出水中的油脂

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摘要

Constructed wetland treatment systems (CWTSs) can effectively remove many constituents that limit beneficial use of oilfield produced water. The objectives of this investigation were: (1) to assess the effect of mass loadings of oil and grease (O & G) on treatment performance in pilot-scale subsurface flow and free water surface CWTS series having sequential reducing and oxidizing cells, and (2) to evaluate effects on treatment performance of adding a pilot-scale oil-water separator. Increase in 0 & G mass loading from 5 to 20mgmin~(-1)caused decreases in both dissolved oxygen concentration and sediment redox potential, which affected treatment performance. Biogeochemical pathways for removal of 0 & G, iron, and manganese operate under oxidizing conditions, and removal rate coefficients for these constituents decreased (0.905-0.514 d~(-1) for 0 & G, 0.773-0.452 d~(-1) for iron, and 0.970-0.518 d~(-1) for manganese) because greater mass loading of O & G promoted reducing conditions. With increased mass loading, removal rate coefficients for nickel and zinc increased from 0.074 to 0.565 d~(-1) and from 0.196 to 1.08 d~(-1) respectively. Although the sequential reducing and oxidizing cells in the CWTS were very effective in treating the targeted constituents, an oil-water separator was added prior to wetland cells to enhance O & G removal at high inflow concentration (100 mg L~(-1)). The oil-water separator removed approximately 50% of the O & G, and removal extents and efficiencies approximated those observed at 50 mg L~(-1) inflow concentration during treatment without an oil-water separator.
机译:人工湿地处理系统(CWTS)可以有效去除许多成分,从而限制了油田采出水的有益利用。这项研究的目的是:(1)评估油脂的质量负荷(O&G)对具有连续还原和氧化池的中试规模地下水流和自由水表面CWTS系列的处理性能的影响,以及( 2)评估添加中试规模油水分离器对处理性能的影响。 0&G质量负荷从5增加到20mgmin〜(-1)导致溶解氧浓度和沉积物氧化还原电位降低,从而影响处理性能。去除0和G,铁和锰的生物地球化学途径在氧化条件下运行,并且这些成分的去除速率系数降低(0和G的去除率系数为0.905-0.514 d〜(-1),0.773-0.452 d〜(-1)铁的含量为0.970-0.518 d〜(-1),锰的含量为0.970-0.518 d〜(-1),因为更大的O&G负载量会促进还原条件。随着质量负荷的增加,镍和锌的去除率系数分别从0.074到0.565 d〜(-1)和从0.196到1.08 d〜(-1)。尽管CWTS中的顺序还原和氧化细胞在处理目标成分方面非常有效,但在湿地细胞之前添加了油水分离器以提高高流入浓度(100 mg L〜(-1))的O&G去除率。 。油水分离器去除了大约50%的O&G,去除程度和效率近似于在不使用油水分离器的处理过程中流入浓度为50 mg L〜(-1)时所观察到的程度和效率。

著录项

  • 来源
    《Chemosphere》 |2014年第5期|67-73|共7页
  • 作者单位

    Department of Environmental Engineering and Earth Sciences, Clemson University, 340 Brackett Hall, Clemson, SC 29634, USA;

    Department of Environmental Engineering and Earth Sciences, Clemson University, 340 Brackett Hall, Clemson, SC 29634, USA;

    School of Agricultural, Forest and Environmental Sciences, Clemson University, 261 Lehotsky Hall, Clemson, SC 29634, USA;

    SynTerra, 148 River Street, Suite 220, Greenville, SC 29601, USA;

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

    Constructed wetland; Produced water; Oil and grease; Metals;

    机译:人工湿地;采出水;油和油脂;金属制品;

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