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Bacterial Crack Sealing and Surface Finish Application to Concrete

机译:细菌裂缝密封和表面光洁度应用于混凝土

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摘要

This paper investigates the sealing and healing properties micro-induced calcite precipitation with regard to improving concrete finish, sealing cracks and cementing loose surface particles together. Sporosarcina pasteurii has been used to effectively precipitate calcium carbonate in order to seal porous media. The bacteria are fed a nutrient broth mix to create conditions where MICP can be effectively used. The tests carried out, assessed the effect of MICP on a sample of twenty-four concrete cubes and to what extent the surface has been consolidated. The use of an Alicona 4G infinite focus scanner provided comprehensive analysis of how the sample cubes’ topography had been altered following the treatment. In addition, three fibre reinforced concrete beams were micro-cracked to evaluate t S. pasteurii’s ability to seal cracks that are common in concrete structures globally. Calcite deposits were observed to be effective at sealing cracks and consolidating the surface finish of the concrete. The treatment is an organic remedial method that has industrial applications.
机译:本文研究了微诱导方解石沉淀的密封和愈合特性,以改善混凝土的光洁度,密封裂缝和将松散的表面颗粒胶结在一起。为了密封多孔介质,已经使用巴斯德孢子菌来有效地沉淀碳酸钙。细菌被喂以营养肉汤混合物,从而创造了可以有效使用MICP的条件。进行的测试评估了MICP对24个混凝土立方体样品的影响以及表面固化的程度。使用Alicona 4G无限聚焦扫描仪可以对处理后样品立方体的形貌如何变化进行全面分析。此外,对三根纤维增强的混凝土梁进行了微裂纹测试,以评估巴氏酵母对封闭全球混凝土结构中常见的裂缝的能力。观察到方解石沉积物在密封裂缝和巩固混凝土表面光洁度方面是有效的。该处理是具有工业应用的有机补救方法。

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