Shen Li'an, Yu Wenlu, Li Lin, Zhang Tong, Abshir Ismail Yusuf, Luo Pingping, Liu Zhuangzhuang
Chang'an Dublin International College of Transportation, Chang'an University, Xi'an 710021, China.
School of Highway, Chang'an University, Xi'an 710064, China.
Materials (Basel). 2021 Sep 6;14(17):5116. doi: 10.3390/ma14175116.
Low tensile strength, poor elastic modulus, and complex concrete cracking work condition are almost unavoidable due to the intrinsic brittleness. To deal with concrete maintenance and durability, microbial self-healing concretes have been rapidly developed and widely applied recently. The microbial self-healing can specifically patch fractures as well as boost the concrete structure's capacity, durability, and permeability. This paper presents the state-of-the-art in the microbe induced self-healing in cement-based composites. The microorganism and carriers were classified according to the working theory and repair effects. Additionally, the precise efficiency and effect of various technologies are also evaluated for microbial immobilization. Based on the literature review and summary from the perspective of microorganism, carriers, and immobilization methods, challenges and further works are discussed.
由于其固有的脆性,低抗拉强度、较差的弹性模量以及复杂的混凝土开裂工况几乎不可避免。为解决混凝土养护和耐久性问题,微生物自愈合混凝土近年来得到了快速发展并广泛应用。微生物自愈合能够特异性地修补裂缝,同时提高混凝土结构的性能、耐久性和抗渗性。本文介绍了水泥基复合材料中微生物诱导自愈合的最新进展。根据工作原理和修复效果对微生物和载体进行了分类。此外,还评估了各种微生物固定化技术的精确效率和效果。基于从微生物、载体和固定化方法角度进行的文献综述和总结,讨论了面临的挑战和进一步的工作。