Health and ecological risk of heavy metals in agricultural soils related to Tungsten mining in Southern Jiangxi Province, China

Author:

Lai Jinhu1,Ni Yan2,Xu Jinying1,Wu Daishe13

Affiliation:

1. School of Resources and Environment and Key Laboratory of Poyang Lake Environment and Resource Utilization of Ministry of Education, Nanchang University, Nanchang, China

2. College of Ecology and Environment, Yuzhang Normal University, Nanchang, China

3. School of Materials and Chemical Engineering, Pingxiang University, Pingxiang, China

Abstract

Background Dayu County, a major tungsten producer in China, experiences severe heavy metal pollution. This study evaluated the pollution status, the accumulation characteristics in paddy rice, and the potential ecological risks of heavy metals in agricutural soils near tungsten mining areas of Dayu County. Furthermore, the impacts of soil properties on the accumulation of heavy metals in soil were explored. Methods The geo-accumulation index (Igeo), the contamination factor (CF), and the pollution load index (PLI) were used to evaluate the pollution status of metals (As, Cd, Cu, Cr, Pb, Mo, W, and Zn) in soils. The ecological risk factor (RI) was used to assess the potential ecological risks of heavy metals in soil. The health risks and accumulation of heavy metals in paddy rice were evaluated using the health risk index and the translocation factor (TF), respectively. Pearson’s correlation coefficient was used to discuss the influence of soil factors on heavy metal contents in soil. Results The concentrations of metals exceeded the respective average background values for soils (As: 10.4, Cd: 0.10, Cu: 20.8, Cr: 48.0, Pb: 32.1, Mo: 0.30, W: 4.93, Zn: 69.0, mg/kg). The levels of As, Cd, Mo, and tungsten(W) exceeded the risk screening values for Chinese agricultural soil contamination and the Dutch standard. The mean concentrations of the eight tested heavy metals followed the order FJ-S > QL > FJ-N > HL > CJ-E > CJ-W, with a significant distribution throughout the Zhangjiang River basin. Heavy metals, especially Cd, were enriched in paddy rice. The Igeo and CF assessment indicated that the soil was moderately to heavily polluted by Mo, W and Cd, and the PLI assessment indicated the the sites of FJ-S and QL were extremely severely polluted due to the contribution of Cd, Mo and W. The RI results indicated that Cd posed the highest risk near tungsten mining areas. The non-carcinogenic and total carcinogenic risks were above the threshold values (non-carcinogenic risk by HQ > 1, carcinogenic risks by CR > 1 × 10−4 a−1) for As and Cd. Correlation analysis indicated that K2O, Na2O, and CaO are main factors affecting the accumulation and migration of heavy metals in soils and plants. Our findings reveal significant contamination of soils and crops with heavy metals, especially Cd, Mo, and W, near mining areas, highlighting serious health risks. This emphasizes the need for immediate remedial actions and the implementation of stringent environmental policies to safeguard health and the environment.

Funder

National Key Research and Development Program of China

Jiangxi Provincial Natural Science Foundation

Jiangxi Provincial Education Department

Publisher

PeerJ

Reference78 articles.

1. Research progress in mechanism of impact of soil Erosionon heavy metal Migration;Chen;Research of Soil and Water Conservation,2024

2. Hexammine cobaltic chloride exchange method verification for soil cation-exchange capacity;Chen;Anhui Chemical Industry,2021

3. Heavy metal pollution in topsoil and vegetables in the typical mining area near Gannan, Jiangxi Province;Chen;China Environmental Engineering Science,2019

4. Ecological and health risk assessment of heavy metal pollution in farmland soil of Xianghe County;Chen;Environmental Science,2022

5. Characterization of heavy metal pollution in vegetable field soils and health risk assessment in Dayu County;Chen;China Agricultural Engineering,2016

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