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Source Water Quality Assessment and Source Water Characterization for Drinking Water Protection.

机译:用于饮用水保护的源水水质评估和源水特征。

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摘要

Source water quality plays a critical role in maintaining the quality and supply of drinking water, yet it can be negatively affected by human activities. In Pennsylvania, coal mining and treatment of conventional oil and gas drilling produced wastewaters have affected source water quality for over 100 years. The recent unconventional natural gas development in the Marcellus Shale formation produces significant volumes of wastewater containing bromide and has the potential to affect source water quality and downstream drinking water quality. Wastewater from coal-fired power plants also contains bromide that may be released into source water. Increasing source water bromide presents a challenge as even small amounts of bromide in source water can lead to carcinogenic disinfection by-products (DBPs) in chlorinated finished drinking water. However, bromide is not regulated in source water and is not removed by conventional drinking water treatment processes.;The objective of this work is to evaluate the safe bromide concentration in source water to minimize the cancer risk of trihalomethanes - a group of DBPs - in treated drinking water. By evaluating three years of water sampling data from the Monongahela River in Southwestern Pennsylvania, the present analysis reached three conclusions. First, bromide monitoring for source water quality should be taken at drinking water intake points. Water sample types (river water samples vs drinking water intake samples) can lead to different water quality conclusions and thus affect regulatory compliance decision-making. Second, bromide monitoring at drinking water intake points can serve as a predictor for changes in heavily brominated trihalomethanes concentrations in finished water. Increasing bromide in source water can serve as an early warning sign of increasing formation of heavily brominated trihalomethanes and their associated cancer risks in drinking water. Finally, this work developed a statistical simulation model to evaluate the effect of source water bromide on trihalomethane formation and speciation and to analyze the changing cancer risks in water associated with these changing bromide concentrations in the Monongahela River. The statistical simulation method proposed in this work leads to the conclusion that the bromide concentration in source water must be very low to prevent the adverse health effects associated with brominated trihalomethanes in chlorinated drinking water. This method can be used by water utilities to determine the bromide concentration in their source water that might indicate a need for process changes or by regulatory agencies to evaluate source water bromide issues.
机译:源水水质在维持饮用水的质量和供应方面起着至关重要的作用,但是它可能会受到人类活动的负面影响。在宾夕法尼亚州,采煤和处理常规石油和天然气钻井产生的废水已对源水水质产生了100多年的影响。马塞勒斯页岩地层中最近的非常规天然气开发产生了大量的含溴废水,并有可能影响源水水质和下游饮用水水质。燃煤发电厂的废水中也含有可能释放到原水中的溴化物。越来越多的原水溴化物提出了挑战,因为原水中的溴化物即使很少,也会导致氯化成品饮用水中的致癌消毒副产物(DBP)。但是,溴化物在水源中不受管制,并且不能通过常规的饮用水处理工艺去除。;这项工作的目的是评估水源中安全的溴化物浓度,以最大程度地降低三卤甲烷(一组DBP)的癌症风险。处理过的饮用水。通过评估宾夕法尼亚西南部莫农加希拉河的三年水采样数据,目前的分析得出了三个结论。首先,应在饮用水取水点对溴化物进行源水水质监测。水样本类型(河流水样本与饮用水取水样本)可能导致不同的水质结论,从而影响监管合规性决策。第二,在饮用水取水点进行溴化物监测可以作为最终水中重溴化三卤甲烷浓度变化的预测指标。饮用水中溴化物的增加可以作为增加溴化三卤甲烷的形成及其在饮用水中与癌症相关的风险的预警信号。最后,这项工作开发了一个统计模拟模型,以评估源水溴化物对三卤甲烷形成和形态形成的影响,并分析与莫农加黑拉河中这些变化的溴化物浓度有关的水中变化的癌症风险。这项工作中提出的统计模拟方法得出的结论是,源水中的溴化物浓度必须非常低,以防止与氯化饮用水中溴化三卤甲烷相关的不良健康影响。供水公司可以使用此方法来确定其原水中的溴化物浓度(可能表明需要进行工艺更改),或者可以由监管机构使用该方法来评估原水溴化物问题。

著录项

  • 作者

    Wang, Yuxin.;

  • 作者单位

    Carnegie Mellon University.;

  • 授予单位 Carnegie Mellon University.;
  • 学科 Engineering Environmental.;Environmental Health.;Environmental Law.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 169 p.
  • 总页数 169
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:53:45

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