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Quantitative Evaluation of Tracers for Quantification of Wastewater Contamination of Potable Water Sources

机译:示踪剂的定量评价,用于定量饮用水源的废水污染

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摘要

Quantitative criteria for selection of tracers for assessment of mixing of wastewater and pristine water are proposed and evaluated for leakage from a wastewater effluent recharge system to nearby pristine water wells and the dilution of the effluents in a reclamation well by pristine water from the surrounding aquifer. Two molecular tracers were compared: carbamazepine, an organic drug whose refractory behavior was evaluated on-site, and chloride, a widely used conservative tracer. The mixing ratios and the corresponding uncertainty levels in their calculation were evaluated using actual field data. Uncertainty level analysis illuminates the effects of the analytical errors in the determination of trace micropollutants on one hand and the high level of chloride in the background on the other. Uncertainty level calculations revealed that chloride is a somewhat better tracer for the estimation of the dilution of wastewater by flow from a pristine aquifer, whereas carbamazepine is a much better tracer for the calculation of wastewater contamination of nearby drinking water wells. Surprisingly, we show that even when carbamazepine degrades to a large and unknown extent it can still be used to estimate accurately the probability that a site is contaminated by a wastewater stream.
机译:提出了选择示踪剂以评估废水和纯净水混合的定量标准,并评估了废水流出物补给系统向附近的纯净水井的渗漏以及从周围含水层中获得的纯净水对开垦井中废水的稀释度。比较了两种分子示踪剂:卡马西平(一种在现场评估其难治性的有机药物)和氯化物(一种广泛使用的保守示踪剂)。使用实际的现场数据评估混合比和相应的不确定度。不确定度分析一方面阐明了微量微量污染物测定中分析误差的影响,另一方面也阐明了背景中高氯含量测定的影响。不确定性级别的计算表明,氯化物在估算原始含水层中废水的稀释度方面要好一些,而卡马西平在计算附近饮用水井废水污染方面要好得多。出乎意料的是,我们表明,即使卡马西平降解程度很大且未知,其仍可用于准确估算某个场地被废水污染的可能性。

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  • 来源
    《Environmental Science & Technology》 |2010年第10期|P.3919-3925|共7页
  • 作者单位

    Casali Institute of Applied Chemistry, Institute of Chemistry, Edmond J. Sofia Campus, The Hebrew University, Jerusalem, Israel Israeli Water Authority, Hamasger street 14, P.O. Box 20365, Tel Aviv 61203, Israel;

    rnCasali Institute of Applied Chemistry, Institute of Chemistry, Edmond J. Sofia Campus, The Hebrew University, Jerusalem, Israel;

    rnCasali Institute of Applied Chemistry, Institute of Chemistry, Edmond J. Sofia Campus, The Hebrew University, Jerusalem, Israel;

    rnCasali Institute of Applied Chemistry, Institute of Chemistry, Edmond J. Sofia Campus, The Hebrew University, Jerusalem, Israel;

    rnShafdan Unit, Mekorot Ltd., Rishon Lezion, Israel;

    rnIsraeli Water Authority, Hamasger street 14, P.O. Box 20365, Tel Aviv 61203, Israel;

    rnIsraeli Water Authority, Hamasger street 14, P.O. Box 20365, Tel Aviv 61203, Israel;

    rnCasali Institute of Applied Chemistry, Institute of Chemistry, Edmond J. Sofia Campus, The Hebrew University, Jerusalem, Israel;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-17 14:04:03

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