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Use of bacteria for repairing cracks and improving properties of concrete containing limestone powder and natural zeolite

机译:使用细菌修复裂缝和改善含有石灰石粉和天然沸石的混凝土的性能

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Precipitation of calcium carbonate crystals caused by the metabolic activities of certain microorganisms is a relatively new method which can improve the properties of concrete and repair concrete cracks. The present study investigated the effects of Sporosarcina pasteurii bacteria on healing cracks, compressive strength, tensile strength, ultrasonic pulse velocity, electrical resistivity and microstructure of concrete containing various percentages of limestone powder and natural zeolite. Experimental results show that the microbial calcite precipitations enhanced compressive strength, tensile strength, ultrasonic pulse velocity and electrical resistivity of all specimens at all ages. The maximum values of these parameters are related to the bacterial specimen containing 10% zeolite without limestone powder. The SEM images of the specimens show that the amount of calcite crystals in the bacterial treated specimen containing limestone powder is more than the specimen without that. In addition, crack healing of the specimen containing limestone powder was also slightly better than the specimen without that. The results of Fourier-Transform Infrared spectroscopy show that the precipitation formed at crack surfaces of specimens is CaCO3. (C) 2020 Elsevier Ltd. All rights reserved.
机译:由某些微生物代谢活性引起的碳酸钙晶体的沉淀是一种相对较新的方法,可以改善混凝土和修复混凝土裂缝的性质。本研究调查了孢子座宫颈杀毒菌细菌对愈合裂缝,抗压强度,拉伸强度,超声波脉冲速度,电阻率和混凝土的微观结构的影响,含有各种百分比的石灰石粉和天然沸石。实验结果表明,微生物方解石沉淀增强了所有年龄段的所有标本的抗压强度,拉伸强度,超声波脉冲速度和电阻率。这些参数的最大值与含有10%沸石的细菌样品有关,没有石灰石粉末。样品的SEM图像表明,含有石灰石粉末的细菌处理的样品中的方解石晶体的量大于样品。此外,含有石灰石粉末的样品的裂纹愈合也比没有这种样品略好得多。傅立叶变换红外光谱的结果表明,在样品裂纹表面上形成的沉淀是CaCO 3。 (c)2020 elestvier有限公司保留所有权利。

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