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A toxicity-based method for evaluating safety of reclaimed water for environmental reuses

机译:一种基于毒性的中水回用安全性评估方法

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A large quantity of toxic chemical pollutants possibly remains in reclaimed water due to the limited removal efficiency in traditional reclamation processes. It is not enough to guarantee the safety of reclaimed water using conventional water quality criteria. An integrated assessment method based on toxicity test is necessary to vividly depict the safety of reclaimed water for reuse. A toxicity test battery consisting of lethality, genotoxicity and endocrine disrupting effect was designed to screen the multiple biological effects of residual toxic chemicals in reclaimed water. The toxicity results of reclaimed water were converted into the equivalent concentrations of the corresponding positive reference substances (EQC). Simultaneously, the predicted no-effect concentration (PNEC) of each positive reference substance was obtained by analyzing the species sensitivity distribution (SSD) of toxicity data. An index "toxicity score" was proposed and valued as 1, 2, 3, or 4 depending on the ratio of the corresponding EQC to PNEC. For vividly ranking the safety of reclaimed water, an integrated assessment index "toxicity rank" was proposed, which was classified into A, B, C, or D rank with A being the safest. The proposed method was proved to be effective in evaluating reclaimed water samples in case studies.
机译:由于传统填海工艺的去除效率有限,大量有毒化学污染物可能残留在再生水中。仅使用常规水质标准来保证再生水的安全性是不够的。为了生动描述再生水回用的安全性,必须采用基于毒性测试的综合评估方法。设计了一种由致死性,基因毒性和内分泌干扰作用组成的毒性测试电池,以筛选再生水中残留的有毒化学物质的多种生物学作用。中水的毒性结果转换为相应浓度的相应阳性参考物质(EQC)。同时,通过分析毒性数据的物种敏感度分布(SSD),获得了每种阳性参考物质的预测无效应浓度(PNEC)。提出了指数“毒性评分”,其值取决于相应的EQC与PNEC的比值为1、2、3或4。为了生动地评价再生水的安全性,提出了综合评价指标“毒性等级”,该等级被分为A,B,C或D等级,其中A是最安全的。在案例研究中,该方法被证明可有效评估再生水样品。

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