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在土壤-水泥地下阻隔层中使用高吸水性聚合物以增强重金属吸附和自修复能力。

Use of superabsorbent polymer in soil-cement subsurface barriers for enhanced heavy metal sorption and self-healing.

机构信息

Department of Engineering, University of Cambridge, Cambridge, UK; State Environmental Protection Key Laboratory of Soil Environmental Management and Pollution Control, Nanjing Institute of Environmental Sciences, Ministry of Ecology and Environment of China, Nanjing, China.

College of Environmental Science and Engineering, Tongji University, Shanghai, China.

出版信息

Sci Total Environ. 2022 Jul 20;831:154708. doi: 10.1016/j.scitotenv.2022.154708. Epub 2022 Mar 22.

Abstract

Conventional subsurface barrier materials for contamination containment deteriorate in aggressive environments and only have a limited exchange/adsorption capacity for heavy metals. This study focused on the potential use of superabsorbent polymer (SAP) in soil-cement subsurface barriers for enhanced heavy metal sorption and self-healing. The SAP adsorption results for lead, copper, zinc and nickel were well fitted by the Langmuir model. The SAP had the highest adsorption capacity for lead at 175 mg/g, and plays a key role in the removal of the heavy metals in an acidic environment. In addition, the incorporation of SAP in soil-cement increased the ductility and had negligible adverse effects on mechanical and permeability properties. When cracks propagate in the matrix, the SAP is exposed to the ingress of water and swells, and this swelling reaction seals the cracks. The SAP-containing soil-cement demonstrated enhanced self-healing performance in terms of the recovery of permeability. The uniform dispersion and the 3D network of the SAP were observed using micro-CT scanning, and good bonding and self-healing mechanism were confirmed by SEM-EDX analysis. The results suggest the significant potential for the SAP-based approach for the development of more resilient subsurface barriers with enhanced heavy metal sorption and self-healing.

摘要

传统的地下屏障材料在恶劣环境下会恶化,并且对重金属只有有限的交换/吸附能力。本研究侧重于超级吸水聚合物(SAP)在土壤-水泥地下屏障中的潜在用途,以增强重金属的吸附和自修复能力。SAP 对铅、铜、锌和镍的吸附结果很好地符合朗缪尔模型。SAP 对铅的吸附容量最高,为 175mg/g,在去除酸性环境中的重金属方面起着关键作用。此外,SAP 的掺入增加了土壤-水泥的延展性,对机械和渗透性性能几乎没有不良影响。当基质中的裂缝扩展时,SAP 暴露于水的进入并膨胀,这种膨胀反应会密封裂缝。含有 SAP 的土壤-水泥在渗透率的恢复方面表现出增强的自修复性能。通过微 CT 扫描观察到 SAP 的均匀分散和 3D 网络,通过 SEM-EDX 分析证实了良好的结合和自修复机制。结果表明,基于 SAP 的方法具有很大的潜力,可用于开发具有增强重金属吸附和自修复能力的更具弹性的地下屏障。

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