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Protection of concrete structures under sulfate environments by using calcifying bacteria

机译:利用钙化细菌保护硫酸盐环境下的混凝土结构

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摘要

Application of microbial induced calcium carbonate precipitation (MICP) via biomineralization process has been considered as a novel method in improving durability properties of concrete. This bio-based treatment had been extensively targeted to improve the overall performance of concrete at lab scale experiments. Durability of microbial treated concrete under aggressive environments is still unexplored. In the current study, the durability properties of microbial treated concrete structures were studied after exposure to chemical and physical sulfate salt solutions (5% Na2SO4 and 5% MgSO4). It has been observed that sulfate attack damaged the untreated concrete specimens causing ultimate failure due to expansion under both exposure regimes. Thick salt efflorescence and severe surface scaling was observed in untreated mortar during physical sulfate attack. However, specimens treated with bacteria (Bacillus sp. CT5) significantly improved the resistance towards sulfate ingress. The experimental results indicate the extensive reduced expansion rate, salt efflorescence and surface scaling in bacterial treated concrete in sulfate exposure. The present study results indicates the potential of this technology in the overall improved resistance of microbial concrete against sulfate environment. (C) 2019 Elsevier Ltd. All rights reserved.
机译:通过生物矿化过程应用微生物诱导的碳酸钙沉淀(MICP)被认为是提高混凝土耐久性的一种新方法。在实验室规模的实验中,这种基于生物的处理已被广泛用于改善混凝土的整体性能。经微生物处理的混凝土在腐蚀性环境下的耐久性仍未得到开发。在当前的研究中,在暴露于化学和物理硫酸盐溶液(5%Na2SO4和5%MgSO4)后,对经过微生物处理的混凝土结构的耐久性进行了研究。已经观察到,硫酸盐侵蚀破坏了未处理的混凝土试样,由于在两种暴露方式下的膨胀都导致最终破坏。在物理硫酸盐侵蚀期间,在未处理的砂浆中观察到浓盐泛酸和严重的表面结垢。但是,用细菌(芽孢杆菌CT5)处理的标本显着提高了对硫酸盐进入的抵抗力。实验结果表明,细菌处理的混凝土在硫酸盐接触下的膨胀率,盐的泛酸和表面结垢的降低幅度很大。本研究结果表明该技术在整体提高微生物混凝土对硫酸盐环境的抵抗力方面的潜力。 (C)2019 Elsevier Ltd.保留所有权利。

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