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利用 DGT 评估有色矿区周边园林土壤中汞的生物有效性、蔬菜累积及其健康风险意义。

Assessment of mercury bioavailability in garden soils around a former nonferrous metal mining area using DGT, accumulation in vegetables, and implications for health risk.

机构信息

INCDO INOE 2000, Research Institute for Analytical Instrumentation, Donath 67, 400293, Cluj-Napoca, Romania.

Faculty of Chemistry and Chemical Engineering, Babes-Bolyai University, Arany Janos 11, 400028, Cluj-Napoca, Romania.

出版信息

Environ Monit Assess. 2023 Dec 1;195(12):1554. doi: 10.1007/s10661-023-12144-2.

Abstract

Mercury (Hg) is a toxic, non-essential element for living organisms, frequently present in high concentrations in soils from industrial areas. The total, dissolved, and labile Hg concentrations in garden soils and their accumulation in edible vegetables (onion, garlic, lettuce, and parsley) grown on contaminated soils in localities situated a former mining area were evaluated. The labile Hg fraction was estimated by diffusive gradient in thin films (DGT). The soil-to-vegetable transfer factors, as well as the health risk by exposure to Hg, were calculated based on the labile Hg concentration in soil. The total Hg concentration in soil varied widely (0.11-3.77 mg kg), Hg in soil solution ranged between 2.14 and 20.2 μg L and labile Hg between 1.13 and 18.6 μg L. About 36-96% (84% on average) of the Hg concentration in soil solution was found in labile form. Multivariate analysis revealed significant correlations between the labile Hg concentration in soil and Hg accumulated in vegetables. The hazard indices showed that, although the study area is affected by legacy pollution, exposure to soil and consumption of locally grown vegetables do not pose health risks.

摘要

汞(Hg)是一种对生物体有毒的、非必需元素,在工业区土壤中经常以高浓度存在。评估了前矿区附近受污染土壤上生长的食用蔬菜(洋葱、大蒜、生菜和欧芹)中的花园土壤总汞、溶解态汞和生物可利用态汞浓度及其积累情况。通过薄膜扩散梯度技术(DGT)估计了生物可利用态汞的分数。基于土壤中生物可利用态汞的浓度,计算了土壤到蔬菜的转移系数以及暴露于汞的健康风险。土壤中总汞的浓度变化很大(0.11-3.77mg/kg),土壤溶液中的汞含量在 2.14 到 20.2μg/L 之间,生物可利用态汞含量在 1.13 到 18.6μg/L 之间。土壤溶液中约 36-96%(平均 84%)的汞以生物可利用态存在。多元分析显示,土壤中生物可利用态汞浓度与蔬菜中积累的汞之间存在显著相关性。危害指数表明,尽管研究区域受到遗留污染的影响,但暴露于土壤和食用当地种植的蔬菜不会带来健康风险。

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