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Attenuation Of Trace Organic Compounds By Advanced Treatment Technologies In Water Reuse

机译:中水回用的先进处理技术对痕量有机物的衰减作用。

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摘要

The ubiquity of pharmaceuticals and personal care products in water systems is well known. With the increasing implementation of water reuse schemes in the US, concern about potential health effects of these compounds in humans has risen. While potential synergistic effects of chronic low doses exposure to a cocktail of these compounds is still being studied, it is prudent to monitor and attenuate these trace organic compounds (TOrCs) from our water sources. This research initially focused on identifying suitable `indicator' TOrCs based on theoretical physico-chemical parameters and actual experimental data. It was concluded that an indicator list will be specific to the goal targeted with dependence on treatment process, occurrence and analytical ease. Quantification of these TOrCs are part per trillion levels in water requires accurate, precise and robust analytical techniques. The next part of this research was spent on developing three different analytical methods with LC-MS/MS for the sensitive detection of TOrCs in several different water matrices including raw sewage and final drinking water. The treatment efficacy of granular activated carbon for attenuation of TOrCs is studied in detail with emphasis on developing correlations between TOrC removal and bulk organic parameters of water like UV absorbance and fluorescence by using rapid small-scale column testing. The results indicate a correlation between removal of TOrCs and bulk organic parameters that is independent of water quality. The effectiveness of commercially available activated carbon based point-of-use (POU) devices for removal of a set of TOrCs from water was evaluated. The data indicated that POUs are a viable option for treatment of TOrCs but specific removal depends on type of device, water quality and amount of water treated. Finally, further research was targeted at identifying transformation products as a result of oxidation of polyfluorinated precursor materials in reclaimed waters. The results illustrated that toxic perfluorocarboxylic acids can be formed on oxidation of fluorotelomer unsaturated carboxylic acids that are known to be present in water.
机译:供水系统中普遍存在药品和个人护理产品。随着美国中水回用计划的实施越来越多,人们越来越担心这些化合物对人体的潜在健康影响。尽管仍在研究慢性低剂量暴露于这些化合物的混合物的潜在协同作用,但谨慎地监测和减弱我们水源中的这些痕量有机化合物(TOrC)。这项研究最初着重于根据理论理化参数和实际实验数据确定合适的“指标” TOrC。得出的结论是,指标清单将特定于目标目标,取决于治疗过程,发生情况和分析难易程度。这些TOrC的定量是水中万亿分之一的水平,需要准确,精确和强大的分析技术。本研究的下一部分用于开发使用LC-MS / MS的三种不同分析方法,用于灵敏检测几种不同水质基质中的TOrC,包括原始污水和最终饮用水。详细研究了颗粒状活性炭对TOrCs衰减的处理功效,重点是通过使用快速小规模柱测试,开发TOrC去除率与水的大部分有机参数(如UV吸收和荧光)之间的相关性。结果表明,TOrC的去除与大量有机参数之间的相关性与水质无关。评估了市售的基于活性炭的使用点(POU)设备从水中去除一组TOrC的有效性。数据表明,POU是治疗TOrC的可行选择,但具体去除方法取决于设备类型,水质和处理水量。最后,进一步的研究目标是确定再生水中多氟化前体材料的氧化转化产物。结果表明,有毒的全氟羧酸可在已知存在于水中的氟调聚物不饱和羧酸氧化时形成。

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    Anumol Tarun;

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  • 年度 2014
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