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Application of modified-alginate encapsulated carbonate producing bacteria in concrete: a promising strategy for crack self-healing

机译:改性海藻酸钠包裹碳酸盐生产菌在混凝土中的应用:一种有前景的裂纹自愈策略

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摘要

Self-healing concrete holds promising benefits to reduce the cost for concrete maintenance and repair as cracks are autonomously repaired without any human intervention. In this study, the application of a carbonate precipitating bacterium Bacillus sphaericus was explored. Regarding the harsh condition in concrete, B. sphaericus spores were first encapsulated into a modified-alginate based hydrogel (AM-H) which was proven to have a good compatibility with the bacteria and concrete regarding the influence on bacterial viability and concrete strength. Experimental results show that the spores were still viable after encapsulation. Encapsulated spores can precipitate a large amount of CaCO3 in/on the hydrogel matrix (around 70% by weight). Encapsulated B. sphaericus spores were added into mortar specimens and bacterial in situ activity was demonstrated by the oxygen consumption on the mimicked crack surface. While specimens with free spores added showed no oxygen consumption. This indicates the efficient protection of the hydrogel for spores in concrete. To conclude, the AM-H encapsulated carbonate precipitating bacteria have great potential to be used for crack self-healing in concrete applications.
机译:自修复混凝土具有可观的好处,可以降低混凝土维护和修理的成本,因为裂缝是在没有任何人工干预的情况下自动修复的。在这项研究中,探索了碳酸盐沉淀细菌球形芽孢杆菌的应用。关于混凝土中的苛刻条件,首先将球形芽孢杆菌的孢子包囊在改性藻酸盐基水凝胶(AM-H)中,事实证明,该凝胶与细菌和混凝土具有良好的相容性,对细菌生存力和混凝土强度具有影响。实验结果表明,包囊后孢子仍能存活。包囊的孢子可以在水凝胶基质中/上沉淀出大量的CaCO3(约占重量的70%)。将封装的球形芽孢杆菌孢子添加到研钵样品中,并通过模拟裂纹表面的耗氧量证明了细菌的原位活性。虽然添加了游离孢子的样品没有消耗氧气。这表明水凝胶可有效保护混凝土中的孢子。总之,AM-H封装的碳酸盐沉淀细菌具有巨大的潜力,可用于混凝土应用中的裂缝自我修复。

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