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A Bacteria-Based Self-Healing Cementitious Composite for Application in Low-Temperature Marine Environments

机译:用于低温海洋环境中的细菌基自修复水泥基复合材料

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摘要

The current paper presents a bacteria-based self-healing cementitious composite for application in low-temperature marine environments. The composite was tested for its crack-healing capacity through crack water permeability measurements, and strength development through compression testing. The composite displayed an excellent crack-healing capacity, reducing the permeability of cracks 0.4 mm wide by 95%, and cracks 0.6 mm wide by 93% following 56 days of submersion in artificial seawater at 8 °C. Healing of the cracks was attributed to autogenous precipitation, autonomous bead swelling, magnesium-based mineral precipitation, and bacteria-induced calcium-based mineral precipitation in and on the surface of the bacteria-based beads. Mortar specimens incorporated with beads did, however, exhibit lower compressive strengths than plain mortar specimens. This study is the first to present a bacteria-based self-healing cementitious composite for application in low-temperature marine environments, while the formation of a bacteria-actuated organic–inorganic composite healing material represents an exciting avenue for self-healing concrete research.
机译:当前的论文提出了一种在低温海洋环境中应用的细菌基自修复水泥基复合材料。通过裂纹水渗透率测量测试了复合材料的裂纹愈合能力,并通过压缩测试测试了强度。该复合材料具有出色的裂纹修复能力,在8°C的海水中浸泡56天后,0.4 mm宽的裂纹的渗透率降低了95%,0.6 mm宽的裂纹的渗透率降低了93%。裂纹的愈合归因于自生沉淀,自主珠粒膨胀,镁基矿物沉淀以及细菌基珠粒内外的细菌诱导钙基矿物沉淀。然而,掺有珠粒的砂浆样本确实表现出比普通砂浆样本更低的抗压强度。这项研究是第一个提出用于低温海洋环境的基于细菌的自修复水泥基复合材料,而细菌致动的有机-无机复合修复材料的形成代表了自修复混凝土研究的令人兴奋的途径。

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