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污染土壤中潜在有毒元素的水溶性部分:生态毒性、溶解度和地球化学反应性之间的关系。

The water-soluble fraction of potentially toxic elements in contaminated soils: relationships between ecotoxicity, solubility and geochemical reactivity.

机构信息

Department of Chemistry/CESAM, University of Aveiro, 3810-193 Aveiro, Portugal.

出版信息

Chemosphere. 2011 Sep;84(10):1495-505. doi: 10.1016/j.chemosphere.2011.04.035. Epub 2011 May 4.

Abstract

To better understand the impacts posed by soil contamination to aquatic ecosystems it is crucial to characterise the links between ecotoxicity, chemical availability and geochemical reactivity of potentially toxic elements (PTE's) in soils. We evaluated the adverse effects of water extracts obtained from soils contaminated by chemical industry and mining, using a test battery including organisms from different trophic levels (bacteria, algae and daphnids). These tests provided a quick assessment of the ecotoxicity of soils with respect to possible adverse effects on aquatic organisms although the ecotoxicological responses could be related to the solubility of PTE's only to a limited extent. The analysis of results of bioassays together with the chemical characterisation of water extracts provided additional relevant insight into the role of conductivity, pH, Al, Fe, and Mn of soil extracts on toxicity to organisms. Furthermore, an important conclusion of this study was that the toxicity of extracts to the aquatic organisms could also be related to the soil properties (pH, Org C and Fe(ox)) and to the reactivity of PTE's in soils which in fact control the soluble fraction of the contaminants. The combined assessment of ecotoxicity in water fractions, solubility and geochemical reactivity of PTE's in soils provided a more comprehensive understanding of the bioavailability of inorganic contaminants than ecotoxicological or chemical studies alone and can therefore be most useful for environmental risks assessment of contaminated soils.

摘要

为了更好地了解土壤污染对水生生态系统的影响,必须描述土壤中潜在有毒元素(PTE)的生态毒性、化学可利用性和地球化学反应性之间的联系。我们使用包括不同营养级别的生物(细菌、藻类和水蚤)的测试组合,评估了受化学工业和采矿业污染的土壤的水提取物的不良影响。这些测试快速评估了土壤的生态毒性,以及其对水生生物可能产生的不良影响,尽管生态毒性反应可能与 PTE 的溶解度有关,但仅在有限的程度上。生物测定结果的分析以及水提取物的化学特征分析为了解土壤提取物中电导率、pH 值、Al、Fe 和 Mn 对生物毒性的作用提供了更多相关的见解。此外,这项研究的一个重要结论是,提取物对水生生物的毒性也可能与土壤特性(pH 值、Org C 和 Fe(ox))以及土壤中 PTE 的反应性有关,而 PTE 的反应性实际上控制了污染物的可溶性部分。对水相中的生态毒性、土壤中 PTE 的溶解度和地球化学反应性的综合评估比单独的生态毒理学或化学研究更能全面了解无机污染物的生物利用度,因此对于受污染土壤的环境风险评估最有用。

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