膨润土
水泥
材料科学
耐久性
土工合成粘土衬垫
自愈
复合材料
硅酸钠
岩土工程
环境科学
导水率
地质学
土壤水分
替代医学
土壤科学
病理
医学
作者
Benyi Cao,Lívia Ribeiro de Souza,Fei Wang,Jian Xu,Chrysoula Litina,Abir Al‐Tabbaa
出处
期刊:Geotechnique
[Thomas Telford Ltd.]
日期:2021-09-20
卷期号:73 (2): 105-114
被引量:3
标识
DOI:10.1680/jgeot.19.p.316
摘要
Despite the extensive use of cement–bentonite in contaminated land containment applications, there are still many challenges related to durability. The development of self-healing cement–bentonite materials could provide more resilient, sustainable and reliable cut-off walls with significantly enhanced durability, reduced maintenance costs, enhanced safety and protection against sudden or undetected failure. The objective of this study was to develop self-healing cement–bentonite cut-off wall materials incorporating microcapsules. Microencapsulated sodium silicate, as a healing agent, would be released into cracks when the microcapsules rupture as a result of any damage incurred, and would react with the cement–bentonite matrix to fill and heal the cracks. Novel microcapsules with switchable mechanical properties developed for self-healing cement applications were employed here. The results demonstrated the enhanced average crack mouth healing and recovered permeability performance provided by the microcapsules compared to control cement–bentonite samples. X-ray microcomputed tomography and scanning electron microscopy were applied to investigate the self-healing process of the microcapsule-containing cement–bentonite system. The microstructural analysis confirmed the survivability, uniform dispersion and crack-triggered rupture of the microcapsules, as well as the release of the healing agent and the generation of hydration products within the cracks. These are promising results for the application of the microcapsule-based system for self-healing cement–bentonite cut-off wall materials.
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