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首页> 外文期刊>Aquatic geochemistry >Metals in the Aquatic Environment-Interactions and Implications for the Speciation and Bioavailability: A Critical Overview
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Metals in the Aquatic Environment-Interactions and Implications for the Speciation and Bioavailability: A Critical Overview

机译:水生环境中的金属-相互作用及其对物种和生物利用度的影响:重要概述

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In most case scenarios, individual metals exist as components in mixtures with organic and inorganic substances and/or particulate matter. While the concepts encompassing mixture toxicity and modeling have been around for decades, only recently have new approaches (dynamic speciation techniques and fate and bioavailability models) been expanded to consider metal mixture scenarios. For example, the kinetic features of humic substances and inorganic colloids on the complexation of metals are generally considered. Although current environmental regulations rarely require an assessment of chemicals mixtures, research on these mixtures in the environment is essential for future regulatory demands and is vital for ensuring adequate environmental protection. Interpretation of speciation and bioavailability data from metal mixtures can be very complex and demanding, due to the existence of kinetic physicochemical transformations of the dynamic components. This kinetic effect largely affects metals' dynamic speciation, culminating in different transformed metal-containing products with different contributions for the metal uptake by a consuming interface. This manuscript is focused on the environmental fate of metal mixtures, which determines how the mixture is biogeochemically processed and which receptors are most exposed (organisms and exposure route), with a special focus on their dynamic speciation, including a critical evaluation of the current challenges and available dynamic speciation techniques as well as computer codes and models.
机译:在大多数情况下,个别金属与有机和无机物质和/或颗粒物混合存在。尽管涵盖混合物毒性和建模的概念已经存在了数十年,但直到最近才扩展了新方法(动态形态技术以及命运和生物利用度模型)来考虑金属混合物的情况。例如,通常考虑腐殖质和无机胶体对金属络合的动力学特征。尽管当前的环境法规很少要求对化学混合物进行评估,但是对环境中这些混合物的研究对于未来的法规要求至关重要,对于确保充分的环境保护至关重要。由于存在动态成分的动态物理化学变化,因此从金属混合物中解释形态和生物利用度数据可能非常复杂且要求很高。这种动力学效应极大地影响了金属的动态形态,最终形成了不同的含金属转化产物,这些金属对消费界面对金属的吸收具有不同的贡献。该手稿着重于金属混合物的环境命运,它决定了混合物如何进行生物地球化学处理以及哪些受体最易暴露(生物和暴露途径),并特别关注其动态形态,包括对当前挑战的关键评估。以及可用的动态物种形成技术以及计算机代码和模型。

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