Assessment of the mechanical and durability characteristics of bio-mineralized Bacillus subtilis self-healing concrete blended with hydrated lime and brick powder

被引:12
作者
Abu Bakr, Mohd [1 ]
Singh, Birendra Kumar [1 ]
Deifalla, Ahmed Farouk [2 ]
Pandey, Shatrudhan [3 ]
Hussain, Ahmed [4 ]
Ragab, Adham E. [5 ]
Alvi, Sahir Sultan [6 ]
Hasnain, S. M. Mozammil [7 ]
机构
[1] Birla Inst Technol Mesra, Dept Civil & Environm Engn, Ranchi 835215, India
[2] Future Univ Egypt, Dept Struct Engn & Construct Management, New Cairo City 11835, Egypt
[3] Birla Inst Technol Mesra, Dept Prod & Ind Engn, Ranchi 835215, India
[4] Birla Inst Technol Mesra, Dept Bioengn & Biotechnol, Ranchi 835215, India
[5] King Saud Univ, Coll Engn, Dept Ind Engn, POB 800, Riyadh 11421, Saudi Arabia
[6] Univ Texas Rio Grande Valley, Dept Immunol & Microbiol, Sch Med, Edinburg, TX 78539 USA
[7] Usha Martin Univ, Fac Engn & Appl Sci, Ranchi 835103, India
关键词
Self-healing concrete; Hydrated lime; Brick powder; Bacterial concrete; Durability; Compressive strength; RAPID CHLORIDE PERMEABILITY; COMPRESSIVE STRENGTH; RECYCLED AGGREGATE; WATER-ABSORPTION; SILICA FUME; BACTERIA; MICROSTRUCTURE; PERFORMANCE; ADDITIONS; PASTES;
D O I
10.1016/j.cscm.2023.e02672
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Cement is the main constituent of the concrete structure. Using rejected brick as pozzolana in replacement of cement reduced the utilization of natural resources, conserved the environment, and controlled waste disposal. Hydrated lime has been utilized as a chemical additive to improve the pozzolanic reaction of finely ground waste brick particles. This research investigates the process of biomineralization to enhance the strength and durability characteristics of bacterial concrete incorporating hydrated lime and brick powder (HBr). In this context, cement was partially replaced with HBr in different proportions 10%, 20%, and 30% by weight. Furthermore, the HBr mixtures were meticulously prepared with and without the incorporation of Bacillus subtilis. Tests for strength and durability were performed at the age of 28 and 56 days of concrete. The self-healing proficiency of the bacterial concrete was evaluated through compressive strength, water permeability, and chloride penetration, while the microstructure analysis was conducted using field emission scanning electron microscopy (FESEM) and energy dispersive spectroscopy (EDS). The results show that at the age of 56 days, CaCO3 precipitation caused by Bacillus subtilis increases the compressive strength of BHBr10 by 19.07%. The durability properties in terms of chloride ion penetrability and water permeability exhibited substantial improvements of 40.03% and 61.9% respectively. Additionally, the FESEM micrographs along with the EDS analysis corroborated the presence of CaCO3 precipitation crystals.
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页数:21
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