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应用 C. aspersus 进行原位和异位生物测定,评估金属(类)和多环芳烃污染土壤的环境风险。

In situ and ex situ bioassays with Cantareus aspersus for environmental risk assessment of metal(loid) and PAH-contaminated soils.

机构信息

Department Chrono-Environment, UMR CNRS 6249, University of Bourgogne Franche-Comté, Besançon Cedex, France.

TESORA, Arcueil, France.

出版信息

Integr Environ Assess Manag. 2022 Mar;18(2):539-554. doi: 10.1002/ieam.4480. Epub 2021 Jul 26.

Abstract

Environmental risk assessment of contaminated soils requires bioindicators that allow the assessment of bioavailability and toxicity of chemicals. Although many bioassays can determine the ecotoxicity of soil samples in the laboratory, few are available and standardized for on-site application. Bioassays based on specific threshold values that assess the in situ and ex situ bioavailability and risk of metal(loid)s and polycyclic aromatic hydrocarbons (PAHs) in soils to the land snail Cantareus aspersus have never been simultaneously applied to the same soils. The aims of this study were to compare the results provided by in situ and ex situ bioassays and to determine their respective importance for environmental risk assessment. The feasibility and reproducibility of the in situ bioassay were assessed using an international ring test. This study used five plots located at a former industrial site and six laboratories participated in the ring test. The results revealed the impact of environmental parameters on the bioavailability of metal(loid)s and PAHs to snails exposed in the field to structured soils and vegetation compared to those exposed under laboratory conditions to soil collected from the same field site (excavated soils). The risk coefficients were generally higher ex situ than in situ, with some exceptions (mainly due to Cd and Mo), which might be explained by the in situ contribution of plants and humus layer as sources of exposure of snails to contaminants and by climatic parameters. The ring test showed good agreement among laboratories, which determined the same levels of risk in most of the plots. Comparison of the bioavailability to land snails and the subsequent risk estimated in situ or ex situ highlighted the complementarity between both approaches in the environmental risk assessment of contaminated soils, namely, to guide decisions on the fate and future use of the sites (e.g., excavation, embankments, and land restoration). Integr Environ Assess Manag 2022;18:539-554. © 2021 SETAC.

摘要

污染土壤的环境风险评估需要生物标志物,以评估化学物质的生物可利用性和毒性。虽然许多生物测定法可以在实验室中确定土壤样品的生态毒性,但可用于现场应用的生物测定法却很少。基于特定阈值的生物测定法可评估金属(类)和多环芳烃(PAHs)在土壤中对陆生蜗牛 C. aspersus 的原位和异位生物可利用性和风险,但这些方法从未同时应用于同一土壤。本研究的目的是比较原位和异位生物测定法提供的结果,并确定它们在环境风险评估中的各自重要性。使用国际环测来评估原位生物测定法的可行性和重现性。本研究使用了位于前工业场地的五个地块,六个实验室参与了环测。结果表明,与在实验室条件下暴露于从同一现场采集的土壤(挖掘土壤)的蜗牛相比,暴露于野外结构土壤和植被中的蜗牛对金属(类)和 PAHs 的生物可利用性受环境参数的影响。与在实验室条件下相比,在现场条件下,风险系数通常更高,存在一些例外(主要是由于 Cd 和 Mo),这可能是由于原位植物和腐殖质层作为蜗牛暴露于污染物的来源以及气候参数所致。环测表明,实验室之间具有良好的一致性,它们在大多数地块中确定了相同的风险水平。对陆地蜗牛的生物利用度和随后在原位或异位估计的风险进行比较,突出了两种方法在污染土壤环境风险评估中的互补性,即指导对场地命运和未来用途的决策(例如,挖掘、堤坝和土地恢复)。《综合环境评估与管理》2022 年;18:539-554. © 2021 SETAC。

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