数字农科院2.0

Mercury Accumulation And Transformation Of Main Leaf Vegetable Crops In Cambosol And Ferrosol Soil In China

文献类型: 外文期刊

作者: Yang, B; Gao, Y; Zhang, CX; Zheng, XQ; Li, B

作者机构:

关键词: Mercury Sensitivity; Leaf Vegetable; Transfer Factors; Bio-Concentration Factors; Species Sensitivity Distribution

期刊名称: ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH

ISSN: 0944-1344

年卷期: 2020 年 27 卷 1 期

页码:

收录情况: JCR(2021版)

摘要: Leaf vegetables serve as an important food for the local residents in China. This paper focuses on the uptake, accumulation, transfer, and mercury (Hg) sensitivity of leafy vegetables. Two types of soil (an alkaline Cambosol and an acid Ferrosol) and eleven species of leafy vegetable, namely, Spinach, Tung choy, Leek, Fennel, Coriander, Chinese flowering cabbage, Wuta-tsai, Pakchoi, Chicory, Crown daisy, and Lettuce, were selected to investigate their sensitivity to Hg accumulation in a greenhouse pot experiment. Three Hg concentration treatments were carried out as control (background values), low concentration (1.5 times standard value), and high concentration (2 times standard value) as adjusted by the soil pH. Hg concentrations of more than half vegetable samples grown in Cambosol (collected from Shandong Province) reached or exceeded the maximum permissible food safety levels (10 mu g kg(-1)) according to the General Standard of Contaminants in Food in China (GB 2762-2012), while only about 15% in Ferrosol (collected from Jiangxi Province). Meanwhile, Hg bio-concentration factors (BCF) in all treatments were < 1, while Hg translocation factors (TF) in most treatments were < 1. Correlation analysis among soil, root, and edible plant parts revealed that the principal source of Hg in leafy vegetables was most likely from Hg-contaminated soils. Species sensitivity distribution (SSD) models were constructed and their simulated curves indicated that sensitivity to Hg was highest in Pakchoi in low Hg-contaminated soils, and Chicory in highly Hg-contaminated soils. Therefore, Hg concentration is mostly accumulated in roots of leafy crops, which reduces the risk of Hg bioaccumulation in edible portion of vegetables, and (2) Brassicaceae vegetables are mostly less sensitive to soil Hg contamination. Our results provide effective guidance for the selection of leafy vegetables for cultivation and daily consumption that minimizes health risk.

分类号:

  • 相关文献

[1]Elevated Atmospheric Co(2 )Might Increase T.he Health Risk Of L ong-Term Ingestion Of Leafy Vegetables Cultivated In Residual Ddt Polluted Soil. Wu, XR, Li, YP, Tu, SX, Ding, YZ, Wang, RG, Rensing, C, Feng, RW. 2019

[2]Soil Ecological Criteria For Nickel A.s A Function Of S oil Properties. Wang, XQ, Wei, DP, Ma, YB, McLaughlin, MJ. 2018

[3]Ecological Criteria For Zinc In Chinese Soil As Affected By Soil Properties. Wan, YN, Jiang, B, Wei, DP, Ma, YB. 2020

[4]Integrating bioavailability and aging in the criteria derivation of cadmium for the safe production of rice in paddy soils. Li Lijun,Jiang Bao,Wan Yanan,Li Jumei,Ma Yibing. 2021

[5]Regional environmental risk thresholds for cadmium in Chinese agricultural soils: Integrating zonal soil types and pedogenic properties. 俞磊,,王萌,,秦璐瑶,,孙晓艺,,王静,,刘佳晓,,周如烟,,李京泽,,陈世宝. 2025

作者其他论文 更多>>