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蔬菜中的铊含量及土壤安全食品生产阈值的推导:一项荟萃分析。

Thallium content in vegetables and derivation of threshold for safe food production in soil: A meta-analysis.

作者信息

Xiao Xiyuan, Zhou Wenqiang, Guo Zhaohui, Peng Chi, Xu Rui, Zhang Yunxia, Yang Yunyun

机构信息

School of Metallurgy and Environment, Central South University, Changsha 410083, China.

School of Metallurgy and Environment, Central South University, Changsha 410083, China.

出版信息

Sci Total Environ. 2024 Feb 20;912:168845. doi: 10.1016/j.scitotenv.2023.168845. Epub 2023 Nov 28.

Abstract

Soil thallium (Tl) pollution is a serious environmental problem, and vegetables are the primary pathway for human exposure to Tl. Therefore, it is important to investigate the characteristics of soil Tl uptake by vegetables. In this study, the meta-analysis approach was first applied to explore the relationship between Tl content in vegetables and soil environment, as well as key factors influencing soil physical-chemical properties, and to derive soil thresholds for Tl. The results indicated that various types of vegetables have different capabilities for Tl accumulation. Vegetables from contaminated areas showed high Tl accumulation, and the geomean Tl content in different types of vegetables was in the following order: leafy > root-stalk > solanaceous vegetables. Taro and kale had significantly higher capability to accumulate soil Tl among the 35 species studied, with Tl bioconcentration factor values of 0.060 and 0.133, respectively. Pearson correlation analysis and meta-analysis revealed that the Tl content in vegetables was significantly correlated with soil pH and Tl content in soil. The linear predictive model for Tl accumulation in vegetables based on soil Tl content described the data well, and the fitting coefficient R increased with soil pH value. According to potential dietary toxicity, the derived soil Tl thresholds for all, leafy and root-stalk vegetables increased with an increase in soil pH, and were in the range of 1.46-6.72, 1.74-5.26 and 0.92-6.06 mg/kg, respectively. The soil Tl thresholds for kale, lettuce and carrot were in the range of 0.24-4.89, 2.94-3.32 and 3.77-14.43 mg/kg, respectively. Ingestion of kale, beet, sweet potato, potato, taro, pepper, turnip, Chinese cabbage, eggplant and carrot poses potential health risks. The study provides scientific guidance for vegetable production in Tl-contaminated areas and can help with the selection of vegetable species suitable for avoiding the absorption of Tl from contaminated soil.

摘要

土壤铊(Tl)污染是一个严重的环境问题,蔬菜是人类接触铊的主要途径。因此,研究蔬菜对土壤铊的吸收特性具有重要意义。本研究首次采用Meta分析方法,探讨蔬菜中铊含量与土壤环境之间的关系,以及影响土壤理化性质的关键因素,并推导土壤铊阈值。结果表明,不同类型蔬菜对铊的积累能力不同。来自污染地区的蔬菜表现出较高的铊积累量,不同类型蔬菜中铊的几何平均含量顺序为:叶菜类>根茎类>茄果类蔬菜。在所研究的35种蔬菜中,芋头和羽衣甘蓝积累土壤铊的能力显著较高,铊生物富集系数分别为0.060和0.133。Pearson相关分析和Meta分析表明,蔬菜中的铊含量与土壤pH值和土壤铊含量显著相关。基于土壤铊含量的蔬菜铊积累线性预测模型对数据拟合良好,拟合系数R随土壤pH值升高而增大。根据潜在膳食毒性,推导得出的所有蔬菜、叶菜类蔬菜和根茎类蔬菜的土壤铊阈值均随土壤pH值升高而增加,分别在1.46 - 6.72、1.74 - 5.26和0.92 - 6.06mg/kg范围内。羽衣甘蓝、生菜和胡萝卜的土壤铊阈值分别在0.24 - 4.89、2.94 - 3.32和3.77 - 14.43mg/kg范围内。食用羽衣甘蓝、甜菜、红薯、马铃薯、芋头、辣椒、萝卜、大白菜、茄子和胡萝卜存在潜在健康风险。该研究为铊污染地区的蔬菜生产提供了科学指导,有助于选择适合避免从污染土壤中吸收铊的蔬菜品种。

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