Diffusive gradient in thin films combined with machine learning to discern the accumulation characteristics and driving factors of Cd and Cu in soil-rice systems
文献类型: 外文期刊
作者: Wang, Zhen 1 ; Zhang, Chuangchuang 2 ; Lv, Danlei 2 ; Zhang, Qiang 1 ; Yin, Ping 1 ; Guo, Runze 4 ; Chen, Qiusheng 1 ; Cai, Yanming 3 ; Zhao, Yujie 2 ;
作者机构: 1.Tianjin Acad Agr Sci, Inst Agr Prod Qual Safety & Nutr, Tianjin 300381, Peoples R China
2.Minist Agr & Rural Affairs, Key Lab Environm Factors Control Agroprod Qual Saf, Tianjin 300191, Peoples R China
3.Minist Agr & Rural Affairs, Agroenvironm Protect Inst, Tianjin 300191, Peoples R China
4.Tianjin Agr Dev Serv Ctr, Tianjin 301800, Peoples R China
关键词: Heavy metal contamination; Random forest; Extreme random tree; Paddy soil
期刊名称:JOURNAL OF HAZARDOUS MATERIALS ( 影响因子:11.3; 五年影响因子:12.4 )
ISSN: 0304-3894
年卷期: 2025 年 495 卷
页码:
收录情况: SCI
摘要: The dietary exposure risk of cadmium (Cd) in rice is significantly higher than that of copper (Cu), while the co-migration of Cd and Cu in the soil-crop system may enhance the bioavailability of pollution, thus making rapid and accurate prediction of their accumulation in crops essential for assessing the risks associated with cultivated land. However, the previous prediction methods based on the total content of heavy metals in soil or in a single form have certain limitations. We collected 82 pairs of soil and rice samples from Hunan Province in China and used diffusive gradient in thin films (DGT) technology combined with chemical extraction (ultrapure water, acidic ammonium oxalate, calcium chloride) to explore the bioavailability characteristic of Cd and Cu, while machine learning (ML) models for Cd and Cu accumulation in rice were developed by integrating soil physicochemical parameters and heavy metal speciation. Results revealed that when the pH exceeded 7, the efficiency of Cd extraction by CaCl2 (CaCl2-Cd/Total Cd) decreased sharply from 43.5 % to 7.8 %, whereas Cu extraction was not affected. The difference between DGT and chemical extraction revealed that the migration risk of Cd in soil is much greater than that of Cu. The release of Cd is coupled with the reduction of Mn oxide (p < 0.01), The Cd/Mn ratios of different forms are highly consistent, and the Cd/Mn ratios in the ultrapure water and DGT are significantly positively correlated with those in the CaCl2 (r = 0.77, 0.89, respectively). The Random Forest model showed excellent performance for Cd in the rice roots (R-2 = 0.72), whereas the Extreme Random Tree model exhibited the best performance for Cu (R-2 = 0.38). Feature importance analysis revealed that the exchangeable Cd and Mn had the greatest impact on the Cd risk in root, whereas dissolved Cu and pH had the greatest impact on Cu. This study provided a theoretical basis for understanding the accumulation characteristics and driving factors of Cd and Cu in the soil-rice systems of rice-growing areas.
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