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UNCERTAINTY OF WATER TYPE-SPECIFIC HAZARDOUS COPPER CONCENTRATIONS DERIVED WITH BIOTIC LIGAND MODELS

机译:生物配体模型得出的水类型特定的有害铜浓度的不确定性

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摘要

One of the aims of the Water Framework Directive is to derive Europe-wide environmental quality standards that are scientifically based and protective of surface waters. Accounting for water type-specific bioavailability corrections presents challenges and opportunities for metals research. In this study, we present generally applicable approaches for tiered risk assessment of chemicals for prospective use. The objective of the present study was to derive water type-specific dissolved copper criteria for Dutch surface waters. The intent was to show the utility of accounting for bioavailability by using biotic ligand models (BLMs) and two different ways of extrapolating these BLMs in order to obtain reliable bioavailability-corrected species sensitivity distributions. Water type-specific criteria estimations were generated for six different water quality conditions. Average hazard concentrations as calculated using the BLMs and the two alternate normalization scenarios varied significantly among the different water types, from 5.6 to 73.6 μg/L. Water types defined as large rivers, sandy springs, and acid ponds were most sensitive for Cu. Streams and brooks had the highest hazard concentrations. The two different options examined for toxicity data normalization did impact the calculated hazard concentrations for each water type.
机译:《水框架指令》的目标之一是获得欧洲范围内以科学为基础并保护地表水的环境质量标准。对水类型特定的生物利用度校正进行核算为金属研究带来了挑战和机遇。在这项研究中,我们提出了用于预期用途的化学品的分层风险评估的通用方法。本研究的目的是为荷兰地表水得出特定于水类型的溶解铜标准。目的是显示通过使用生物配体模型(BLM)以及两种不同的推断这些BLM的方式来计算生物利用度的效用,以获得可靠的生物利用度校正物种敏感度分布。针对六种不同的水质条件生成了特定于水类型的标准估计。使用BLM和两种替代归一化方案计算的平均危害浓度在不同水类型之间差异很大,从5.6到73.6μg/ L。定义为大型河流,沙泉和酸池的水类型对Cu最敏感。溪流和溪流的危害浓度最高。毒性数据归一化检查的两个不同选项确实会影响每种水类型的计算出的危害浓度。

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