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Recommendations to Improve Wildlife Exposure Estimation for Development of Soil Screening and Cleanup Values

机译:改善野生生物暴露估计以提高土壤筛选和净化价值的建议

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An integral component in the development of media-specific values for the ecological risk assessment of chemicals is the derivation of safe levels of exposure for wildlife. Although the derivation and subsequent application of these values can be used for screening purposes, there is a need to identify the threshold for effects when making remedial decisions during site-specific assessments. Methods for evaluation of wildlife exposure are included in the US Environmental Protection Agency (USEPA) ecological soil screening levels (Eco-SSLs), registration, evaluation, authorization, and restriction of chemicals (REACH), and other risk-based soil assessment approaches. The goal of these approaches is to ensure that soil-associated contaminants do not pose a risk to wildlife that directly ingest soil, or to species that may be exposed to contaminants that persist in the food chain. These approaches incorporate broad assumptions in the exposure and effects assessments and in the risk characterization process. Consequently, thresholds for concluding risk are frequently very low with conclusions of risk possible when soil metal concentrations fall in the range of natural background. A workshop held in September, 2012 evaluated existing methods and explored recent science about factors to consider when establishing appropriate remedial goals for concentrations of metals in soils. A Foodweb Exposure Workgroup was organized to evaluate methods for quantifying exposure of wildlife to soil-associated metals through soil and food consumption and to provide recommendations for the development of ecological soil cleanup values (Eco-SCVs) that are both practical and scientifically defensible. The specific goals of this article are to review the current practices for quantifying exposure of wildlife to soil-associated contaminants via bioaccumulation and trophic transfer, to identify potential opportunities for refining and improving these exposure estimates, and finally, to make recommendations for application of these improved models to the development of site-specific remedial goals protective of wildlife. Although the focus is on metals contamination, many of the methods and tools discussed are also applicable to organic contaminants. The conclusion of this workgroup was that existing exposure estimation models are generally appropriate when fully expanded and that methods are generally available to develop more robust site-specific exposure estimates. Improved realism in site-specific wildlife Eco-SCVs could be achieved by obtaining more realistic estimates for diet composition, bioaccumulation, bioavailability and/or bioaccessibility, soil ingestion, spatial aspects of exposure, and target organ exposure. These components of wildlife exposure estimation should be developed on a site-, species-, and analyte-specific basis to the extent that the expense for their derivation is justified by the value they add to Eco-SCV development.
机译:制定针对化学品生态风险评估的特定于媒体的价值的一个不可分割的组成部分是推算野生生物的安全暴露水平。尽管可以将这些值的推导和后续应用用于筛选目的,但是在特定地点的评估过程中做出补救决策时,有必要确定影响的阈值。评价野生生物暴露的方法包括在美国环境保护局(USEPA)的生态土壤筛选水平(Eco-SSLs),注册,评估,授权和化学品限制(REACH)以及其他基于风险的土壤评估方法中。这些方法的目标是确保与土壤相关的污染物不会对直接摄入土壤的野生动植物或可能暴露于食物链中持久性污染物的物种造成风险。这些方法在暴露和影响评估以及风险表征过程中纳入了广泛的假设。因此,结论风险的阈值通常很低,结论是当土壤金属浓度落在自然本底范围内时可能的风险。 2012年9月举行的研讨会评估了现有方法,并探索了有关在确定土壤中金属浓度的适当补救目标时应考虑的因素的最新科学。组织了一个Foodweb暴露工作组,以评估通过土壤和食物消耗量化野生生物与土壤相关金属的暴露的方法,并为开发实用且科学上可辩护的生态土壤清洁价值(Eco-SCV)提供建议。本文的具体目标是回顾当前通过生物积累和营养转移量化野生动植物与土壤相关污染物的暴露的实践,确定改进和改进这些暴露估计的潜在机会,最后,提出应用这些建议的建议。改进模型以开发针对特定地点的野生动植物保护目标。尽管重点是金属污染,但是讨论的许多方法和工具也适用于有机污染物。该工作组的结论是,现有的暴露估计模型通常在完全扩展时通常是合适的,并且通常可以使用方法来开发更可靠的针对特定地点的暴露估计。通过获取饮食组成,生物蓄积,生物利用度和/或生物可及性,土壤摄入,接触的空间方面以及目标器官的接触方面的更现实的估计,可以实现针对特定地点的野生生物Eco-SCV的改善的现实性。野生动植物暴露估计的这些组成部分应在针对特定地点,物种和分析物的基础上进行开发,其衍生费用应通过它们对Eco-SCV开发的附加值来证明是合理的。

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