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采用概率方法对全球环境中三氯生的风险评估。

Risk assessment of triclosan in the global environment using a probabilistic approach.

作者信息

Guo Jiahua, Iwata Hisato

机构信息

Center for Marine Environmental Studies, Ehime University, Bunkyo-cho 2-5, Matsuyama, Ehime prefecture, Japan. 790-8577.

Center for Marine Environmental Studies, Ehime University, Bunkyo-cho 2-5, Matsuyama, Ehime prefecture, Japan. 790-8577.

出版信息

Ecotoxicol Environ Saf. 2017 Sep;143:111-119. doi: 10.1016/j.ecoenv.2017.05.020. Epub 2017 May 16.

Abstract

The occurrence of antimicrobial agent triclosan (TCS) in the global aquatic and terrestrial environment is an emerging concern. While risk assessment for TCS is available in certain countries, no studies have attempted to assess the risk of TCS worldwide. This could be due to lack of method to characterize the global exposure. The present study therefore proposed a probabilistic-based approach to approximate the percent-ranked measured environmental concentrations (MECs) by estimating exposure concentration distribution (ECD) for different environmental compartments on a global scale, incorporating approximate 1200 single MECs. Hazard of TCS was assessed from species sensitivity distribution as well as predicted no effect concentrations (PNECs) derived from ecotoxicological and toxicological endpoints. We draw on experiences from previous risk assessment exercises and present a holistic approach for characterizing the risk of TCS to microorganism in sewage treatment plant, aquatic and soil organisms, avian and mammalian species, and humans. Using the approach, we estimated risk of TCS to organisms dwelling in sediment and living in surface waters, and the risk quotients (MEC/PNEC) were within the range of 0.95 - 33.3 and 0.49 - 9.5, respectively. While the risk quotients for other environmental compartments were below a value of 1, there are large uncertainties likely due to an insufficient dataset of exposure and hazard of TCS.

摘要

抗菌剂三氯生(TCS)在全球水生和陆地环境中的出现是一个新出现的问题。虽然某些国家有针对TCS的风险评估,但尚无研究尝试评估全球范围内TCS的风险。这可能是由于缺乏表征全球暴露情况的方法。因此,本研究提出了一种基于概率的方法,通过估计全球范围内不同环境介质的暴露浓度分布(ECD)来近似按百分位数排序的实测环境浓度(MEC),纳入了约1200个单一MEC。从物种敏感性分布以及从生态毒理学和毒理学终点得出的预测无效应浓度(PNEC)评估了TCS的危害。我们借鉴了以往风险评估工作的经验,提出了一种全面的方法来表征TCS对污水处理厂中的微生物、水生和土壤生物、鸟类和哺乳动物物种以及人类的风险。使用该方法,我们估计了TCS对栖息在沉积物中和生活在地表水中的生物的风险,风险商(MEC/PNEC)分别在0.95 - 33.3和0.49 - 9.5范围内。虽然其他环境介质的风险商低于1,但由于TCS暴露和危害的数据集不足,可能存在很大的不确定性。

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