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证明 bio-met 在确定欧洲金属环境质量标准合规性方面的可靠性。

Demonstrating the Reliability of bio-met for Determining Compliance with Environmental Quality Standards for Metals in Europe.

机构信息

WCA Environment, Faringdon, Oxfordshire, United Kingdom.

ARCHE, Ghent (Wondelgem), Belgium.

出版信息

Environ Toxicol Chem. 2020 Dec;39(12):2361-2377. doi: 10.1002/etc.4883. Epub 2020 Nov 10.

Abstract

The importance of considering the bioavailability of metals in understanding and assessing their toxicity in freshwaters has been recognized for many years. Currently, biotic ligand models (BLMs) are being applied for the derivation and implementation of environmental quality standards (EQS) for metals under the Water Framework Directive in Europe. bio-met is a simplified tool that was developed for implementing bioavailability-based EQS for metals in European freshwaters. We demonstrate the reliability of the relationship between the full BLM predictions and the thresholds (hazardous concentration affecting 5% of species [HC5] values) predicted by bio-met in 3 stages, for the metals copper, nickel, and zinc. First, ecotoxicity data for specific species from laboratory tests in natural waters are compared with predictions by the individual species BLMs included in the full BLMs. Second, the site-specific HC5 values predicted by bio-met for the natural waters used for ecotoxicity testing are compared with those provided by the full BLMs. The reliability of both relationships is demonstrated for all 3 metals, with more than 80% of individual species BLM predictions being within a factor of 3 of the experimental results, and 99% of bio-met local HC5 predictions being within a factor of 2 of the full BLM result. Third, using a larger set of European natural waters in addition demonstrates the reliability of bio-met over a broad range of water chemistry conditions. bio-met is therefore an appropriate tool for performing compliance assessments against EQS values in Europe, due to the demonstrated consistency with the toxicity test data. Environ Toxicol Chem 2020;39:2361-2377. © 2020 SETAC.

摘要

多年来,人们已经认识到在理解和评估金属的毒性时,考虑金属的生物利用度的重要性。目前,生物配体模型(BLMs)正在被应用于欧洲的水框架指令,以推导和实施金属的环境质量标准(EQS)。bio-met 是一种简化的工具,它是为了在欧洲淡水实施基于生物利用度的金属 EQS 而开发的。我们在 3 个阶段证明了全 BLM 预测与 bio-met 预测的阈值(影响 5%物种的有害浓度 [HC5] 值)之间的关系的可靠性,这些金属包括铜、镍和锌。首先,将来自天然水中的特定物种的实验室测试的生态毒性数据与包含在全 BLM 中的各个物种 BLM 的预测进行比较。其次,将用于生态毒性测试的天然水的 bio-met 预测的特定地点 HC5 值与全 BLM 提供的值进行比较。这两种关系的可靠性都在所有 3 种金属中得到了证明,超过 80%的个别物种 BLM 预测与实验结果相差 3 倍以内,99%的 bio-met 局部 HC5 预测与全 BLM 结果相差 2 倍以内。第三,使用更多的欧洲天然水,除了证明 bio-met 在广泛的水化学条件下的可靠性。因此,由于与毒性测试数据的一致性,bio-met 是在欧洲执行 EQS 值合规评估的合适工具。Environ Toxicol Chem 2020;39:2361-2377。 © 2020 SETAC。

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