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Review on Carbonation Study of Reinforcement Concrete Incorporating with Bacteria as Self-Healing Approach

Authors :
Honin Ali Yahya Alshaeer
J. M. Irwan
Abdullah Faisal Alshalif
Amin Al-Fakih
Dina Yehia Zakaria Ewais
Abdelatif Salmi
Abdulmajeed Ali Alhokabi
Source :
Materials. 15:5543
Publication Year :
2022
Publisher :
MDPI AG, 2022.

Abstract

This study carried out a comprehensive review to determine the carbonation process that causes the most deterioration and destruction of concrete. The carbonation mechanism involved using carbon dioxide (CO2) to penetrate the concrete pore system into the atmosphere and reduce the alkalinity by decreasing the pH level around the reinforcement and initiation of the corrosion process. The use of bacteria in the concrete was to increase the pH of the concrete by producing urease enzyme. This technique may help to maintain concrete alkalinity in high levels, even when the carbonation process occurs, because the CO2 accelerates to the concrete and then converts directly to calcium carbonate, CaCO3. Consequently, the self-healing of the cracks and the pores occurred as a result of the carbonation process and bacteria enzyme reaction. As a result of these reactions, the concrete steel is protected, and the concrete properties and durability may improve. However, there are several factors that control carbonation which have been grouped into internal and external factors. Many studies on carbonation have been carried out to explore the effect of bacteria to improve durability and concrete strength. However, an in-depth literature review revealed that the use of bacteria as a self-healing mechanism can still be improved upon. This review aimed to highlight and discuss the possibility of applying bacteria in concrete to improve reinforcement concrete.

Subjects

Subjects :
General Materials Science

Details

ISSN :
19961944
Volume :
15
Database :
OpenAIRE
Journal :
Materials
Accession number :
edsair.doi.dedup.....74a50942c77b8e7273520543b55447b4
Full Text :
https://doi.org/10.3390/ma15165543