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热活化海泡石对镉的吸附:在人为污染土壤原位修复中的应用。

Cadmium adsorption by thermal-activated sepiolite: Application to in-situ remediation of artificially contaminated soil.

机构信息

Faculty of Materials Science and Chemistry, China University of Geosciences, Wuhan 430074, China.

Faculty of Materials Science and Chemistry, China University of Geosciences, Wuhan 430074, China.

出版信息

J Hazard Mater. 2022 Feb 5;423(Pt A):127104. doi: 10.1016/j.jhazmat.2021.127104. Epub 2021 Sep 5.

Abstract

Soils contamination with Cd result in detriment to the environmental quality. In-situ immobilization methods by applying clay minerals have been gaining prominence. The effects on sepiolite of thermal activation at different temperatures (300-750 °C), for removing Cd from aqueous solutions were evaluated, in order to consider their further application for soil remediation. The influence of activation temperature was investigated using XRD, SEM, and N adsorption-desorption measurements. The S-600 exhibited the maximum adsorption capacity (21.28 mg/g), despite its lower SSA, and Langmuir model described the adsorption isotherms better than the Freundlich equation. TCLP was used to quantify the remediation effects of thermal-activated sepiolite on simulated soils artificially polluted with Cd. The results indicated that the mobility of Cd in soil was effectively reduced after treating with thermal-activated sepiolite and the use of S-600 was the most efficient, reducing the TCLP-Cd by approximately 73% compared with the control test. The main remediation mechanism was considered as the cation exchange of Cd by Mg at the edges of octahedral sheet. This study showed that thermal-activated sepiolite could be promising amendments for remediation of Cd-contaminated soil.

摘要

土壤中镉的污染会对环境质量造成损害。通过应用粘土矿物的原位固定化方法已经受到了广泛关注。本文评估了不同温度(300-750°C)下热激活对海泡石去除水溶液中镉的影响,以期考虑其在土壤修复中的进一步应用。通过 XRD、SEM 和 N 吸附-解吸测量研究了活化温度的影响。尽管 S-600 的比表面积较小,但 S-600 表现出最大的吸附容量(21.28mg/g),Langmuir 模型比 Freundlich 方程更好地描述了吸附等温线。TCLP 用于量化热激活海泡石对人工 Cd 污染模拟土壤的修复效果。结果表明,用热激活海泡石处理后,土壤中 Cd 的迁移性得到有效降低,S-600 的效果最为显著,与对照试验相比,TCLP-Cd 降低了约 73%。主要的修复机制被认为是八面体片边缘的 Cd 与 Mg 的阳离子交换。本研究表明,热激活海泡石可能是修复 Cd 污染土壤的有前途的改良剂。

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