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海洋细菌固定化生物载体对水泥基材料自修复性能的影响

Impact of Bio-Carrier Immobilized with Marine Bacteria on Self-Healing Performance of Cement-Based Materials.

作者信息

Kim Hayeon, Son Hyeongmin, Seo Joonho, Lee H K

机构信息

Department of Civil and Environmental Engineering, Korea Advanced Institute of Science and Technology, 291 Daehak-ro, Yuseong-gu, Daejeon 34141, Korea.

出版信息

Materials (Basel). 2020 Sep 19;13(18):4164. doi: 10.3390/ma13184164.

Abstract

The present study evaluated the self-healing efficiency and mechanical properties of mortar specimens incorporating a bio-carrier as a self-healing agent. The bio-carrier was produced by immobilizing ureolytic bacteria isolated from seawater in bottom ash, followed by surface coating with cement powder to prevent loss of nutrients during the mixing process. Five types of specimens were prepared with two methods of incorporating bacteria, and were water cured for 28 days. To investigate the healing ratio, the specimens with predefined cracks were treated by applying a wet-dry cycle in three different conditions, i.e., seawater, tap water, and air for 28 days. In addition, a compression test and a mercury intrusion porosimetry analysis of the specimens were performed to evaluate their physico-mechanical properties. The obtained results showed that the specimen incorporating the bio-carrier had higher compressive strength than the specimen incorporating vegetative cells. Furthermore, the highest healing ratio was observed in specimens incorporating the bio-carrier. This phenomenon could be ascribed by the enhanced bacterial viability by the bio-carrier.

摘要

本研究评估了掺入生物载体作为自愈合剂的砂浆试件的自愈合效率和力学性能。生物载体是通过将从海水中分离出的尿素分解菌固定在底灰中,然后用水泥粉末进行表面包覆以防止在混合过程中养分流失而制备的。采用两种掺入细菌的方法制备了五种类型的试件,并进行了28天的水养护。为了研究愈合率,对具有预定义裂缝的试件在三种不同条件下(即海水、自来水和空气)进行干湿循环处理28天。此外,对试件进行了抗压试验和压汞孔隙率分析,以评估其物理力学性能。所得结果表明,掺入生物载体的试件比掺入营养细胞的试件具有更高的抗压强度。此外,在掺入生物载体的试件中观察到最高的愈合率。这种现象可归因于生物载体提高了细菌的活力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5dd7/7560424/af69c0ad7872/materials-13-04164-g001.jpg

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