代表性论文与论著 |
[1]Mian Luo*, Ao Ji, Xu Li, Dingyi Yang. Performance evaluation of self-healing recycled concrete using biomineralization modified recycled aggregate as bacterial carrier[J]. Journal of Building Engineering, 2024, 86: 109000. (SCI) [2]Xiaoniu Yu, Qiyong Zhang, Xuan Zhang, Mian Luo*. Microbial self-healing of cracks in cement-based materials and its influencing factors. Frontiers of Structural and Civil Engineering, 2023, 17:1630–1642. (SCI) [3]Mian Luo*, Xu Li, Ye Liu, Kang Jing. Application of Artificial Functional Aggregates Encapsulated Bacteria for Self-Healing of Cement Mortars[J]. Journal of Materials in Civil Engineering, 2022, 34(11): 4022291. (SCI) [4] Mian Luo*, Junjie Dai, Ziqi Ding, Ye Liu. Properties of Mortar Containing Recycled Fine Aggregate Modified by Microbial Mineralization[J]. Buildings, 2022, 12(11): 2035. (SCI) [5]Mian Luo*, Jingquan Bai, Kang Jing, Ziqi Ding, Dingyi Yang, Chunxiang Qian. Self-healing of early-age cracks in cement mortars with artificial functional aggregates[J]. Construction and Building Materials, 2021, 272: 121846. (SCI) [6]Mian Luo*, Kang Jing, Jingquan Bai, Ziqi Ding, Dingyi Yang, Haoliang Huang*, Yongfan Gong. Effects of Curing Conditions and Supplementary Cementitious Materials on Autogenous Self-Healing of Early Age Cracks in Cement Mortar[J]. Crystals, 2021, 11(7): 752. (SCI) [7]Mian Luo, Chunxiang Qian*. Influences of bacteria-based self-healing agents on cementitious materials hydration kinetics and compressive strength. Construction and Building Materials, 2016,121:659-663. (SCI) [8]Mian Luo, Chunxiang Qian*. Performance of two bacteria-based additives used for self-healing concrete. Journal of Materials in Civil Engineering, 2016,28(12):04016151. (SCI) [9]Mian Luo, Chunxiang Qian*, Ruiyang Li. Factors affecting crack repairing capacity of bacteria-based self-healing concrete. Construction and Building Materials, 2015, 87:1-7. (SCI) [10]Mian Luo, Chunxiang Qian*, Ruiyang Li. Efficiency of concrete crack-healing based on biological carbonate precipitation. Journal of Wuhan University of Technology-Materials Science Edition, 2015,30(6):1255-1259. (SCI)
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专利授权 |
[1]罗勉, 白镜泉, 荆康, 丁子奇, 杨鼎宜. 一种微生物自修复混凝土用活性多功能载体及其制备方法, 2022-2-15, 中国, ZL201911406555.5 (发明专利) [2]罗勉, 白镜泉, 荆康, 李旭, 刘野, 冯家亮. 基于人造功能载体负载微生物的自修复水泥基材料及其制备方法, 2022-11-8, 中国, ZL202011565117.6 (发明专利) [3]罗勉, 丁子奇, 刘野, 李旭. 一种壳聚糖固定微生物脲酶原位强化再生骨料的制备方法, 2022-7-8, 中国, ZL202110792934.3 (发明专利) [4]冯家亮,罗勉,丁子奇,韩一正,邬嘉诚. 一种微生物强化再生骨料的浸泡装置,2021-11-9,中国,ZL202121006603.4 (实用新型专利) |