Biocementation promoted by bacteria in concrete recovery and soil stabilization

Ismar Batista Teles, Ligiane Aparecida Florentino
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Abstract

The use of intelligent and adaptable materials has been gaining ground in the construction industry, due to the ecological market demand and the awareness of investing in sustainable techniques, with low energy consumption and anthropogenic emission of carbon dioxide. The development of materials and construction methods, with energy efficiency, adaptable to environmental conditions and non-polluting has become a requirement for the progress of the sector and the future of cities. Thus, the objective of this bibliographic review is to provide an overview of the application of biocementing promoted by bacteria in the recovery of structures and soil stabilization. This technique uses minerals resulting from bacterial metabolic activities, which occur at room temperature, such as microbiologically induced calcium carbonate precipitation (MICP), to produce cementitious materials with structural functionalities, durability and without harming the environment. Several applications of this process have been proposed in civil engineering, such as the bioconcrete in the remediation of fissures, in the restoration of stones cultural heritage and in the improvement of the physical-mechanical properties of the soil, changing its resistance and permeability. Understanding how this biotechnology can change current construction strategies and solutions, integrating nature-based systems into construction projects, will be discussed in this study.
细菌促进生物胶结在混凝土恢复和土壤稳定中的应用
由于生态市场需求和投资可持续技术的意识,低能耗和人为二氧化碳排放,智能和适应性材料的使用已经在建筑行业获得了进展。发展节能、适应环境条件、无污染的材料和施工方法,已成为建筑行业进步和城市未来发展的要求。因此,本文献综述的目的是概述细菌促进生物胶结在结构恢复和土壤稳定中的应用。该技术利用室温下细菌代谢活动产生的矿物质,如微生物诱导的碳酸钙沉淀(MICP),来生产具有结构功能、耐久性和不损害环境的胶凝材料。这一过程在土木工程中的几个应用已经被提出,例如生物混凝土在裂缝的修复,在石头文化遗产的修复和在改善土壤的物理力学性质,改变其阻力和渗透性。了解这种生物技术如何改变当前的建设策略和解决方案,将基于自然的系统整合到建设项目中,将在本研究中进行讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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