土壤水分
镉
环境化学
环境修复
化学
自行车
吸附
共沉淀
污染
氧化还原
环境科学
土壤科学
无机化学
生态学
历史
考古
有机化学
生物
作者
Yining Gao,Hui Tong,Zhipeng Zhao,Ning Cheng,Pan Wu
标识
DOI:10.1016/j.jhazmat.2023.131665
摘要
Cadmium (Cd) contamination of soils is a global problem, particularly in paddy soils. Fe oxides, as a key fraction of paddy soils, can significantly affect the environmental behavior of Cd, which is controlled by complicated environmental factors. Therefore, it is necessary to systematically collect and generalize relevant knowledge, which can provide more insight into the migration mechanism of Cd and a theoretical basis for future remediation of Cd contaminated paddy soils. This paper summarized that (1) Fe oxides influence Cd activity through adsorption, complexation, and coprecipitation during transformation; (2) compared with the flooded period, the activity of Cd during the drainage period is stronger in paddy soils, and the affinity of different Fe components for Cd was distinct; (3) Fe plaque reduced Cd activity but was associated with plant Fe2+ nutritional status; (4) the physicochemical properties of paddy soils have the greatest impact on the interaction between Fe oxides and Cd, especially with pH and water fluctuations.
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