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冻融淋滤对镉污染土壤理化性质及镉形态转化的影响。

Effects of freeze-thaw leaching on physicochemical properties and cadmium transformation in cadmium contaminated soil.

机构信息

College of Natural Resources and Environment, Northwest Agriculture and Forestry University, Xianyang 712100, China; Key Laboratory of Plant Nutrition and the Agri-environment in Northwest China, Ministry of Agriculture, China.

College of Natural Resources and Environment, Northwest Agriculture and Forestry University, Xianyang 712100, China; Key Laboratory of Plant Nutrition and the Agri-environment in Northwest China, Ministry of Agriculture, China.

出版信息

Ecotoxicol Environ Saf. 2024 Oct 1;284:116935. doi: 10.1016/j.ecoenv.2024.116935. Epub 2024 Aug 28.

Abstract

This study aims to investigate the effect of the combined method of freeze-thaw and leaching on the removal of cadmium (Cd) in soil and to provide a theoretical basis for the remediation of farmland soil polluted by heavy metals. The removal process and mechanism of Cd were deduced through oscillatory leaching experiments and freeze-thaw leaching simulation experiments, and the influence of the freeze-thaw leaching technology on the soil environment was evaluated. The results of oscillatory leaching showed that a mixture consisting of 0.80 mol/L citric acid and 0.80 mol/L ferric chloride in a 1:19 vol ratio effectively remove 47.75 % of Cd, indicating that the composite leaching agent could effectively remove Cd from the soil. The results of the freeze-thaw leaching simulation experiment showed that although the freeze-thaw leaching treatment increased the total Cd content in the 0-5 cm soil layer, the total Cd content in the 5-10 cm, 10-15 cm, and 15-20 cm soil layers decreased by 5.08 %, 2.39 %, and 5.68 %, respectively. The freeze-thaw leaching increased the content of exchangeable Cd (p<0.05), carbonate bound Cd, but decreased organic bound Cd and residual Cd (p<0.05), thereby increasing the bioavailability of Cd. Freeze-thaw leaching not only increased the competitive adsorption of Cd by decreasing soil pH, cation exchange capacity, and increasing the content of exchangeable calcium and exchangeable magnesium, thus reducing the adsorption of Cd in soil. And the results of XPS and FTIR similarly showed that the freeze-thaw leaching could promote the chelation between Cd and hydroxyl, carboxyl and carbonyl functional groups. Although the freeze-thaw leaching destroyed the large particle structure (0.05-2 mm) and large pores in the soil, and increased the clay content (<0.002 mm) and the proportion of small pores in the soil, the XRD results showed that freeze-thaw leaching had no significant effect on the minerals in the soil. In summary, this study shows that freeze-thaw leaching has a significant effect on the removal of soil heavy metals, suggesting that the synergistic effect of freeze-thaw and leaching should be considered in the process of removing soil pollutants in seasonal freeze-thaw zones, and that this method provides a new insight into the remediation of contaminated soils.

摘要

本研究旨在探讨冻融浸提联合方法对土壤中镉(Cd)去除的影响,为重金属污染农田土壤的修复提供理论依据。通过振荡浸提实验和冻融浸提模拟实验,推导出 Cd 的去除过程和机制,并评价了冻融浸提技术对土壤环境的影响。振荡浸提实验结果表明,0.80 mol/L 柠檬酸和 0.80 mol/L 氯化铁按 1:19 体积比混合的混合浸提剂可有效去除 47.75%的 Cd,表明复合浸提剂能有效去除土壤中的 Cd。冻融浸提模拟实验结果表明,虽然冻融浸提处理增加了 0-5 cm 土层中总 Cd 含量,但 5-10 cm、10-15 cm 和 15-20 cm 土层中总 Cd 含量分别降低了 5.08%、2.39%和 5.68%。冻融浸提增加了可交换态 Cd 的含量(p<0.05),碳酸盐结合态 Cd,但降低了有机结合态 Cd 和残渣态 Cd(p<0.05),从而增加了 Cd 的生物有效性。冻融浸提不仅通过降低土壤 pH 值、阳离子交换量和增加可交换钙和可交换镁的含量来增加 Cd 的竞争吸附,从而减少土壤对 Cd 的吸附,而且 XPS 和 FTIR 的结果也表明,冻融浸提可以促进 Cd 与羟基、羧基和羰基官能团的螯合。尽管冻融浸提破坏了土壤中的大颗粒结构(0.05-2 mm)和大孔隙,增加了土壤中的粘粒含量(<0.002 mm)和土壤中小孔隙的比例,但 XRD 结果表明,冻融浸提对土壤中的矿物没有显著影响。综上所述,本研究表明,冻融浸提对土壤重金属的去除有显著影响,这提示在季节性冻融区土壤污染物去除过程中应考虑冻融与浸提的协同作用,该方法为污染土壤的修复提供了新的思路。

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