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Application of microbial self-healing concrete: Case study

机译:微生物自愈混凝土的应用 - 案例研究

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摘要

It has become a green and environmentally friendly method to repair concrete cracks by microbial induced calcium carbonate precipitation (MICP). However, most studies were concentrated in the laboratory, and practical engineering applications are rarely conducted. Hence, in order to promote the application of microbial self-healing concrete, the researches of microbial healing agents and self-healing concrete were carried out. Then, the construction technologies of microbial self-healing concrete were explored through engineering practice. Results showed that the spray-dried fermented bacteria method has great potential for the production of powder-based and capsule-based microbial healing agents of concrete. Compared with the liquid-based healing agents, it was more convenient in terms of production, transportation, storage, and use. For the existing concrete production line, the feeding of microbial healing agents draws on the production experience of fiber concrete. To guarantee the self-healing effects, necessary curing measures should be taken to keep the cracks wet and supply nutrients for bacteria. The degree of self-healing can be evaluated by observing the changes in ultrasonic wave speed and waveform, which is an effective non-destructive method to quantitatively characterize the self-healing efficiency in construction sites. The production and construction experience provided a good reference for the commercialization of microbial self-healing concrete.(c) 2021 Elsevier Ltd. All rights reserved.
机译:它已成为通过微生物诱导的碳酸钙沉淀(MICP)修复混凝土裂缝的绿色和环保型的方法。然而,大多数研究集中在实验室中,很少进行实际的工程应用。因此,为了促进微生物自愈混凝土的应用,进行了微生物愈合剂和自我愈合混凝土的研究。然后,通过工程实践探讨了微生物自愈混凝土的施工技术。结果表明,喷雾干燥的发酵细菌方法具有巨大潜力,用于生产混凝土的粉末和胶囊的微生物愈合剂。与基于液体的愈合剂相比,在生产,运输,储存和使用方面更方便。对于现有的混凝土生产线,微生物愈合剂的饲养借鉴纤维混凝土的生产经验。为了保证自我修复效果,应采取必要的固化措施,以防止裂缝湿润和供应细菌的营养素。通过观察超声波速度和波形的变化,可以评估自我愈合程度,这是一种有效的非破坏性方法,可以定量表征建筑场地的自我愈合效率。生产和施工经验为微生物自我愈合混凝土商业化提供了很好的参考。(c)2021 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Construction and Building Materials 》 |2021年第5期| 123226.1-123226.13| 共13页
  • 作者单位

    Southeast Univ Sch Mat Sci & Engn Nanjing Peoples R China|Southeast Univ Res Ctr Green Bldg & Construct Mat Nanjing Peoples R China|Southeast Univ China Bldg Ind Key Lab Microbial Mineralizat Tech Nanjing 211189 Peoples R China|Southeast Univ Jiangsu Key Lab Construct Mat Nanjing 211189 Peoples R China;

    Southeast Univ Sch Mat Sci & Engn Nanjing Peoples R China|Southeast Univ Res Ctr Green Bldg & Construct Mat Nanjing Peoples R China|Southeast Univ China Bldg Ind Key Lab Microbial Mineralizat Tech Nanjing 211189 Peoples R China|Southeast Univ Jiangsu Key Lab Construct Mat Nanjing 211189 Peoples R China;

    Southeast Univ Sch Mat Sci & Engn Nanjing Peoples R China|Southeast Univ Res Ctr Green Bldg & Construct Mat Nanjing Peoples R China|Southeast Univ China Bldg Ind Key Lab Microbial Mineralizat Tech Nanjing 211189 Peoples R China|Southeast Univ Jiangsu Key Lab Construct Mat Nanjing 211189 Peoples R China;

    Southeast Univ Sch Mat Sci & Engn Nanjing Peoples R China|Southeast Univ Res Ctr Green Bldg & Construct Mat Nanjing Peoples R China|Southeast Univ China Bldg Ind Key Lab Microbial Mineralizat Tech Nanjing 211189 Peoples R China|Southeast Univ Jiangsu Key Lab Construct Mat Nanjing 211189 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Powder-based healing agent; Capsule-based healing agent; Microbial self-healing concrete; Engineering application; Industrialization research;

    机译:基于粉末的愈合剂;基于胶囊的愈合剂;微生物自我愈合混凝土;工程应用;工业化研究;

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