降水
碳酸盐
材料科学
工程类
结构工程
法律工程学
建筑工程
冶金
地理
气象学
作者
Armstrong Ighodalo Omoregie,Chih Siong Wong,Adharsh Rajasekar,Jen Hua Ling,Abdelfatah Bousbia Laiche,Hazlami Fikri Basri,Sivakumar Gowthaman,Tariq Ouahbi
出处
期刊:Buildings
[Multidisciplinary Digital Publishing Institute]
日期:2025-03-25
卷期号:15 (7): 1052-1052
被引量:11
标识
DOI:10.3390/buildings15071052
摘要
Microbial-induced carbonate precipitation (MICP) is gaining attention as an eco-friendly and sustainable method for concrete crack repair. However, key challenges related to its large-scale implementation, regulatory approval, and integration into existing construction standards remain underexplored. This review examines recent advances in MICP, emphasizing its role in circular economy practices and sustainable building solutions. Traditional synthetic sealants contribute to environmental pollution and have limited long-term durability, highlighting the need for greener alternatives. Global research trends reveal an increasing focus on self-healing materials, biomineralization, and durability enhancement, alongside emerging innovations such as encapsulation technologies, marine applications, and bio-based composites. Unlike previous reviews, this study integrates bibliometric analysis to systematically assess research trends, identify key collaboration networks, and evaluate regulatory challenges that impact MICP adoption. While MICP offers significant advantages, including self-healing capabilities and compatibility with industrial by-products, barriers related to cost, scalability, and policy integration persist. This review identifies critical thematic clusters which include microbial action, sustainability, and engineering applications. This helps to provide actionable insights for researchers, engineers, and policymakers. By fostering interdisciplinary collaboration, MICP has the potential to become a transformative solution for resilient and environmentally sustainable infrastructure.
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