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生物混凝土增强韧性的建筑:综述。

Bioconcrete-Enabled Resilient Construction: a Review.

机构信息

Department of Civil Engineering, Jaypee Institute of Information Technology, Waknaghat, 173234, India.

Department of Civil Engineering, Birla Institute of Technology and Science, Faculty Division 1, BITS, Pilani Campus, Pilani, 333031, India.

出版信息

Appl Biochem Biotechnol. 2024 May;196(5):2901-2927. doi: 10.1007/s12010-023-04427-8. Epub 2023 Mar 28.

Abstract

Concrete, the ubiquitous cementitious composite though immensely versatile, is crack-susceptible. Cracks let in deleterious substances causing durability issues. Superseding conventional crack-repair methods, the innovative application of microbially induced calcium carbonate precipitation (MICCP) stands prominent, being based on the natural phenomenon of carbonate precipitation. It is eco-friendly, self-activated, economical, and simplistic. Bacteria inside concrete get activated by contacting the environment upon the crack opening and filling the cracks with calcium carbonate-their metabolic waste. This work systematizes MICCP's intricacies and reviews state-of-the-art literature on practical technicalities in its materialization and testing. Explored are the latest advances in various aspects of MICCP, such as bacteria species, calcium sources, encapsulations, aggregates, and the techniques of bio-calcification and curing. Furthermore, methodologies for crack formation, crack observation, property analysis of healed test subject, and present techno-economic limitations are examined. The work serves as a succinct, implementation-ready, and latest review for MICCP's application, giving tailorable control over the enormous variations in this bio-mimetic technique.

摘要

混凝土是一种无处不在的水泥基复合材料,虽然用途广泛,但很容易出现裂缝。裂缝会让有害物质进入,从而导致耐久性问题。为了解决传统的裂缝修复方法的问题,创新性地应用微生物诱导碳酸钙沉淀(MICCP)技术得到了广泛关注,该技术基于碳酸钙沉淀的自然现象。它具有环保、自激活、经济和简单的特点。混凝土中的细菌在裂缝张开时与环境接触而被激活,并将代谢废物碳酸钙填充到裂缝中。这项工作系统地阐述了 MICCP 的复杂性,并回顾了关于其实现和测试的实用技术的最新文献。探讨了 MICCP 在细菌种类、钙源、封装、骨料以及生物钙化和固化技术等各个方面的最新进展。此外,还研究了裂缝形成、裂缝观察、愈合试件性能分析以及当前技术经济限制的方法。这项工作为 MICCP 的应用提供了简洁、可实施和最新的综述,为这种仿生技术提供了对巨大变化的可定制控制。

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