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Application of microbial precipitation in self-healing concrete: A review on the protection strategies for bacteria

机译:微生物沉淀在自愈混凝土中的应用 - 细菌保护策略综述

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摘要

Exploration of microbially induced CaCO3 precipitation (MICP) has led to the application of this phenomenon in the field of self-healing concrete in recent years. However, survival of bacteria is a concern due to the harsh environmental conditions in the concrete matrix. Protection of bacteria has been regarded as an effective way to maintain microbial activity. The improvement in self-healing performances encouraged different research groups to evaluate alternative protection strategies. The aim of this review is to provide an in-depth comparison of these different strategies, including immobilization, encapsulation, and some other novel approaches. Attention was paid especially to the guidelines for the selection of protection strategies which allows for the probability of crack hitting and the compatibility among protective carriers, healing agents, and concrete matrix. The self-healing effectiveness including crack closure efficiency and restoration of mechanical and durability performances were elaborated. Limitations of current studies, challenges in practical applications, and future investigation perspectives were shortly outlined.
机译:微生物诱导的CaCO3沉淀(MICP)的探索导致了近年来在自我愈合混凝土领域中的应用。然而,由于混凝土基质中的恶劣环境条件,细菌的存活是一个问题。保护细菌已被视为维持微生物活动的有效方法。自我治疗表演的改善鼓励不同的研究小组来评估替代保护策略。本综述的目的是提供对这些不同策略的深入比较,包括固定,封装和一些其他新方法。特别关注保护保护策略的准则,允许裂缝击中的概率和保护载体,愈合剂和混凝土基质之间的相容性。阐述了自愈效率,包括裂缝闭合效率和机械和耐久性性能的恢复。很快概述了当前研究,实际应用中挑战以及未来调查观点的局限性。

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