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工业区域提取土壤组分中 Cd 和 Zn 的同位素拮抗行为。

Antagonistic Cd and Zn isotope behavior in the extracted soil fractions from industrial areas.

机构信息

Department of Environmental Geosciences, Faculty of Environmental Sciences, Czech University of Life Sciences Prague, Kamýcká 129, Suchdol, 165 00 Prague, Czech Republic.

Department of Environmental Geosciences, Faculty of Environmental Sciences, Czech University of Life Sciences Prague, Kamýcká 129, Suchdol, 165 00 Prague, Czech Republic.

出版信息

J Hazard Mater. 2022 Oct 5;439:129519. doi: 10.1016/j.jhazmat.2022.129519. Epub 2022 Jul 19.

Abstract

The remobilization of metals accumulated in contaminated soils poses a threat to humans and ecosystems in general. Tracing metal fractionation provides valuable information for understanding the remobilization processes in smelting areas. Based on the difference between the isotopic system of Cd and Zn, this work aimed to couple isotope data and their leachability to identify possible remobilization processes in several soil types and land uses. For soil samples, the δZn values ranged from 0.12 ± 0.05‰ to 0.28 ± 0.05‰ in Avilés (Spain) and from - 0.09 ± 0.05‰ to - 0.21 ± 0.05‰ in Příbram (Czech Republic), and the δCd ranged from - 0.13 ± 0.05‰ to 0.01 ± 0.04‰ in Avilés and from - 0.86 ± 0.27‰ to - 0.24 ± 0.05‰ in Příbram. The metal fractions extracted using chemical extractions were always enriched in heavier Cd isotopes whilst Zn isotope systematics exhibited light or heavy enrichment according to the soil type and land uses. Coupling Zn and Cd systematics provided a tool for deciphering the mechanisms behind the remobilization processes: leaching of the anthropogenic materials and/or metal redistribution within the soil components prior to remobilization.

摘要

金属在污染土壤中的重新迁移对人类和生态系统构成了普遍威胁。追踪金属形态可以为了解冶炼区的重新迁移过程提供有价值的信息。基于 Cd 和 Zn 的同位素系统之间的差异,本工作旨在结合同位素数据及其可浸出性,以识别几种土壤类型和土地利用方式中的可能重新迁移过程。对于土壤样本,Avilés(西班牙)的 δZn 值范围为 0.12±0.05‰至 0.28±0.05‰,Příbram(捷克共和国)的 δZn 值范围为-0.09±0.05‰至-0.21±0.05‰,而 δCd 值范围为 Avilés 的-0.13±0.05‰至 0.01±0.04‰和 Příbram 的-0.86±0.27‰至-0.24±0.05‰。使用化学提取法提取的金属形态总是富含较重的 Cd 同位素,而 Zn 同位素系统则根据土壤类型和土地利用方式表现出轻或重的富集。耦合 Zn 和 Cd 的系统为解析重新迁移过程背后的机制提供了一种工具:在重新迁移之前,人为材料的浸出和/或金属在土壤成分内的重新分布。

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