风化作用
生物累积
土壤水分
镉
环境科学
土地利用
生物利用度
土壤科学
采矿工程
环境化学
地质学
化学
地球化学
生态学
生物
生物信息学
有机化学
作者
Cheng Li,Zhongfang Yang,Tao Yu,Zhongcheng Jiang,Qibo Huang,Yeyu Yang,Xu Liu,Xudong Ma,Bo Li,Kun Lin,Tengfang Li
标识
DOI:10.1016/j.jhazmat.2023.132483
摘要
The abnormal enrichment of cadmium (Cd) in soil caused by rock weathering and mining activities is an issue in southern China. Although the soil Cd content in these regions is extremely high, the bioavailability of Cd in the soils differs significantly. The carbonate area (CBA) and tin-mining area (TIA) in Hezhou City were investigated to determine the primary features of soil Cd mobility in these regions and improve environmental management. Lateral and vertical spatial distributions revealed different accumulation and migration mechanisms of soil Cd in the CBA and TIA. Further analyses revealed that mining activities and geological weathering resulted in different soil geochemical parameters, thus yielding significantly lower levels of Cd in rice grains in the CBA than in the TIA. The random forest (RF) model predicted the bioaccumulation factor (BAF) (R2 = 0.69) better than the support vector machine (SVM) model (R2 = 0.68). Subsequently, a novel land management scheme was proposed based on soil Cd and the prediction of Cd in rice to optimize the spatial resources of agricultural land and ensure the safety of rice for consumption. This study provides a novel approach for land management in Cd-contaminated areas.
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