Abstract Assessing bioavailability of complex chemical mixtures in contaminated soils: Progress made and research needs
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Assessing bioavailability of complex chemical mixtures in contaminated soils: Progress made and research needs

机译:评估污染土壤中复杂化学混合物的生物利用度:取得的进展和研究需求

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摘要

AbstractUnderstanding the distribution, behaviour and interactions of complex chemical mixtures is key for providing the evidence necessary to make informed decisions and implement robust remediation strategies. Much of the current risk assessment frameworks applied to manage land contamination are based on total contaminant concentrations and the exposure assessments embedded within them do not explicitly address the partitioning and bioavailability of chemical mixtures. These oversights may contribute to an overestimation of both the eco-toxicological effects of the fractions and the mobility of contaminants. In turn, this may limit the efficacy of risk frameworks to inform targeted and proportionate remediation strategies. In this review we analyse the science surrounding bioavailability, its regulatory inclusion and the challenges of incorporating bioavailability in decision making process. While a number of physical and chemical techniques have proven to be valuable tools for estimating bioavailability of organic and inorganic contaminants in soils, doubts have been cast on its implementation into risk management soil frameworks mainly due to a general disagreement on the interchangeable use of bioavailability and bioaccessibility, and the associated methods which are still not standardised.This review focuses on the role of biotic and abiotic factors affecting bioavailability along with soil physicochemical properties and contaminant composition. We also included advantages and disadvantages of different extraction techniques and their implications for bioavailability quantitative estimation. In order to move forward the integration of bioavailability into site-specific risk assessments we should (1) account for soil and contaminant physicochemical characteristics and their effect on bioavailability; (2) evaluate receptor's potential exposure and uptake based on mild-extraction; (3) adopt a combined approach where chemical-techniques are used along with biological methods; (4) consider a simplified and cost-effective methodology to apply at regulatory and industry setting; (5) use single-contaminant exposure assessments to inform and predict complex chemical mixture behaviour and bioavailability.Graphical abstractDisplay OmittedHighlightsSoil and contaminant physicochemical characteristics affect bioavailability.Mild-extraction is suitable to evaluate receptor's potential exposure and uptake.Chemical estimation of bioavailability should be supported by bioassays.Single-contaminant exposure assessments can be used to inform mixed bioavailability.
机译: 摘要 了解复杂化学混合物的分布,行为和相互作用是提供做出明智决策和实施有效补救策略所必需的证据的关键。当前用于管理土地污染的大多数风险评估框架都是基于总污染物浓度,并且嵌入其中的暴露评估并未明确涉及化学混合物的分配和生物利用度。这些疏忽可能有助于高估馏分的生态毒理效应和污染物的迁移率。反过来,这可能会限制风险框架提供有针对性且相称的补救策略的有效性。在这篇综述中,我们分析了有关生物利用度,其监管纳入以及将生物利用度纳入决策过程的挑战的科学。虽然许多物理和化学技术已被证明是评估土壤中有机和无机污染物生物利用度的有价值的工具,但人们对其在风险管理土壤框架中的实施表示怀疑,主要是因为人们普遍不同意生物利用度和生物利用度的可互换使用。生物可及性以及尚未标准化的相关方法。 此评论着重于影响生物利用度的生物和非生物因素的作用以及土壤的理化特性和污染物组成。我们还包括了不同提取技术的优缺点及其对生物利用度定量估计的影响。为了将生物利用度纳入特定地点的风险评估,我们应(1)考虑土壤和污染物的理化特性及其对生物利用度的影响; (2)根据轻度提取来评估受体的潜在暴露和摄取; (3)结合使用化学技术和生物方法的组合方法; (4)考虑一种简化且具有成本效益的方法,以应用于监管和行业环境; (5)使用单污染物暴露评估来告知和预测复杂的化学混合物行为和生物利用度。 图形摘要 省略显示 突出显示 土壤和污染物的理化特性会影响生物利用度 温和提取适合评估受体的潜在暴露和摄取。 生物利用度的化学估计应通过生物测定法来支持。 单污染物暴露评估可用于告知混合生物利用度。

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