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The impact of commercially treated oil and gas produced water discharges on bromide concentrations and modeled brominated trihalomethane disinfection byproducts at two downstream municipal drinking water plants in the upper Allegheny River, Pennsylvania, USA

机译:在美国宾夕法尼亚州阿勒格尼河上游的两个下游市政饮用水厂中,商业化处理的油气生产废水的排放对溴化物浓度和模拟溴化三卤甲烷消毒副产物的影响

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摘要

In 2010, a dramatic increase in the levels of total trihalomethane (THM) and the relative proportion of brominated species was observed in finished water at several Pennsylvania water utilities (PDW) using the Allegheny River as their raw water supply. An increase in bromide (Br~-) concentrations in the Allegheny River was implicated to be the cause of the elevated water disinfection byproducts. This study focused on quantifying the contribution of Br~- from a commercial wastewater treatment facility (CWTF) that solely treats wastes from oil and gas producers and discharges into the upper reaches of the Allegheny River, and impacts on two downstream PDWs. In 2012, automated daily integrated samples were collected on the Allegheny River at six sites during three seasonal two-week sampling campaigns to characterize Br~- concentrations and river dispersion characteristics during periods of high and low river discharges. The CWTF discharges resulted in significant increases in Br~- compared to upstream baseline values in PDW raw drinking water intakes during periods of low river discharge. During high river discharge, the assimilative dilution capacity of the river resulted in lower absolute halide concentrations, but significant elevations Br~- concentrations were still observed at the nearest downstream PDW intake over baseline river levels. On days with active CWTF effluent discharge the magnitude of bromide impact increased by 39 ppb (53%) and 7 ppb (22%) for low and high river discharge campaigns, respectively. Despite a declining trend in Allegheny River Br~- (2009-2014), significant impacts from CWTF and coal-fired power plant discharges to Br~- concentrations during the low river discharge regime at downstream PDW intakes was observed, resulting in small modeled increases in total THM (3%), and estimated positive shifts (41-47%) to more toxic brominated THM analogs. The lack of available coincident measurements of THM, precursors, and physical parameters limited the interpretation of historical trends.
机译:在2010年,宾夕法尼亚州的几家公用事业公司(PDW)使用Allegheny河作为原水,最终水中的总三卤甲烷(THM)和溴化物种的相对比例急剧增加。暗示阿勒格尼河中溴化物(Br〜-)浓度增加是水消毒副产物升高的原因。这项研究的重点是量化商业废水处理设施(CWTF)中Br〜-的贡献,该设施仅处理来自石油和天然气生产商的废物并排放到Allegheny河的上游,并对两个下游PDW产生影响。 2012年,在三个季节性的为期两周的采样活动中,在六个站点的阿勒格尼河上自动采集了每日综合样本,以表征高流量和低流量期间的Br〜-浓度和河流扩散特征。与低河水排放期间PDW原始饮用水摄入量的上游基准值相比,CWTF排放导致Br-显着增加。在高流量的河流中,河流的同化稀释能力导致较低的绝对卤化物浓度,但在基线河流水位以上最近的下游PDW进口处仍观察到显着的Br〜-浓度升高。在CWTF废水排放活跃的日子里,对于低河排放活动和高河排放活动,溴化物影响的幅度分别增加了39 ppb(53%)和7 ppb(22%)。尽管阿勒格尼河Br〜-(2009-2014)呈下降趋势,但在下游PDW取水量低的河流排放状态期间,观察到CWTF和燃煤电厂排放对Br〜-浓度的重大影响,导致模拟的小幅增加总THM(3%),以及向毒性更高的溴化THM类似物的估计正迁移(41-47%)。缺乏对THM,前体和物理参数的同时测量,限制了对历史趋势的解释。

著录项

  • 来源
    《The Science of the Total Environment》 |2016年第15期|505-520|共16页
  • 作者单位

    US EPA, Office of Research and Development, Research Triangle Park, NC 27709, United States;

    US EPA, Office of Research and Development, Research Triangle Park, NC 27709, United States;

    US EPA, Office of Research and Development, Research Triangle Park, NC 27709, United States;

    US EPA, Office of Research and Development, Research Triangle Park, NC 27709, United States;

    US EPA, Office of Research and Development, Research Triangle Park, NC 27709, United States;

    US EPA Region 3, Office of Monitoring and Assessment, Wheeling, WV 26003, United States;

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

    Specific conductivity; Source attribution;

    机译:比电导率来源归因;

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