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利用负载 Mn/Al 层状双氢氧化物的生物炭修复 Cu 和 Cd 污染水和土壤的性能及机理。

Remediation performance and mechanisms of Cu and Cd contaminated water and soil using Mn/Al-layered double oxide-loaded biochar.

机构信息

School of Environment and Energy, South China University of Technology, Guangzhou 510006, China.

School of Environment and Energy, South China University of Technology, Guangzhou 510006, China; Key Laboratory of Ministry of Education on Pollution Control and Ecosystem Restoration in Industry Clusters, Guangzhou 510006, China; Guangdong Provincial Key Laboratory of Solid Wastes Pollution Control and Recycling, Guangzhou 510006, China.

出版信息

J Environ Sci (China). 2023 Mar;125:593-602. doi: 10.1016/j.jes.2022.03.023. Epub 2022 Mar 23.

Abstract

The combined pollution of heavy metals is ubiquitous worldwide. Mn/Al-layered double oxide-loaded crab shells biochar (LDO/BC) was prepared, so as to remediate the combined pollution of Cd and Cu in soil and water. The pristine and used LDO/BC were characterized and the results revealed that the layered double oxide was successfully loaded on crab shells biochar (BC) and metal element Ca in crab shells was beneficial to the formation of more regular layered and flake structure. The maximal adsorption capacity (Q) of LDO/BC for aqueous Cu and Cd was 66.23 and 73.47 mg/g, respectively. LDO/BC and BC were used to remediate e-waste-contaminated soil for the first time and exhibited highly efficient performance. The extraction amount of Cu and Cd in the contaminated soil by diethylene triamine penta-acetic acid (DTPA) after treating with 5% LDO/BC was significantly reduced from 819.84 to 205.95 mg/kg (with passivation rate 74.8%) and 8.46 to 4.16 mg/kg (with passivation rate 50.8%), respectively, inferring that the bioavailability of heavy metals declined remarkably. The experimental result also suggested that after remediation by LDO/BC the exchangeable and weak acid soluble Cu and Cd in soil translated to reducible, residual and oxidizable fraction which are more stable state. Precipitation, complexation and ion exchange were proposed as the possible mechanisms for Cd and Cu removal. In general, these experiment results indicate that LDO/BC can be a potentially effective reagent for remediation of heavy metal contaminated water and soil.

摘要

重金属的复合污染在全球范围内普遍存在。本研究制备了负载 Mn/Al 层状双氢氧化物的蟹壳生物炭(LDO/BC),以修复土壤和水中 Cd 和 Cu 的复合污染。对原始和使用后的 LDO/BC 进行了表征,结果表明,层状双氢氧化物成功负载在蟹壳生物炭(BC)上,蟹壳中的金属元素 Ca 有利于形成更规则的层状和片状结构。LDO/BC 对水溶液中 Cu 和 Cd 的最大吸附容量(Q)分别为 66.23 和 73.47 mg/g。LDO/BC 和 BC 首次被用于修复电子废物污染土壤,表现出高效的性能。用 5% LDO/BC 处理污染土壤后,DTPA 提取的 Cu 和 Cd 的提取量分别从 819.84 到 205.95 mg/kg(钝化率 74.8%)和 8.46 到 4.16 mg/kg(钝化率 50.8%)显著降低,这表明重金属的生物有效性显著降低。实验结果还表明,LDO/BC 修复后,土壤中可交换态和弱酸可提取态的 Cu 和 Cd 转化为可还原态、残渣态和氧化态,这些是更稳定的状态。沉淀、络合和离子交换被认为是去除 Cd 和 Cu 的可能机制。总的来说,这些实验结果表明,LDO/BC 可能是一种有效修复重金属污染水和土壤的试剂。

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