Self-Healing Concrete Using Bacterial and Nano-Additive Synergies for Enhanced Durability

Fuente: Zenodo
Gespeichert in:
Bibliographische Detailangaben
1. Verfasser: Mr.R. Shalini1, Mr. V. Manoj2, Ms. P. Deepika3
Format: Recurso digital
Sprache:Englisch
Veröffentlicht: Zenodo 2025
Schlagworte:
Online-Zugang:
Tags: Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
_version_ 1866901813290074112
author Mr.R. Shalini1, Mr. V. Manoj2, Ms. P. Deepika3
author_facet Mr.R. Shalini1, Mr. V. Manoj2, Ms. P. Deepika3
contents <p><strong><em><span>The deterioration of concrete structures due to microcracking and ingress of aggressive agents remains a major challenge in construction durability. Recent advances in self-healing technologies demonstrate that the integration of microbial agents and nano-additives offers a promising solution to enhance service life. This study investigates a synergistic approach combining bacterial spores of Bacillus subtilis with nano-silica and nano-calcium carbonate as healing agents within concrete. Upon crack formation and moisture ingress, the bacterial activity precipitates calcium carbonate, while nano-additives improve nucleation, refine pore structure, and accelerate the healing process. Experimental evaluation focused on compressive and tensile strength recovery, water permeability reduction, and microscopic crack closure. Results indicate that bacterial–nano hybrid systems achieved up to 80% healing efficiency for cracks under 0.5 mm, with significant improvements in durability indices compared to conventional self-healing approaches. The findings suggest that microbial–nano synergy is an effective and scalable pathway for developing sustainable, long-lasting infrastructure.</span></em></strong></p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_17623516
institution Zenodo
language eng
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle Self-Healing Concrete Using Bacterial and Nano-Additive Synergies for Enhanced Durability
Mr.R. Shalini1, Mr. V. Manoj2, Ms. P. Deepika3
Self-Healing Concrete, Bacterial Spores, Nano-Silica, Nano-Calcium Carbonate, Durability, Crack Healing, Sustainable Materials
<p><strong><em><span>The deterioration of concrete structures due to microcracking and ingress of aggressive agents remains a major challenge in construction durability. Recent advances in self-healing technologies demonstrate that the integration of microbial agents and nano-additives offers a promising solution to enhance service life. This study investigates a synergistic approach combining bacterial spores of Bacillus subtilis with nano-silica and nano-calcium carbonate as healing agents within concrete. Upon crack formation and moisture ingress, the bacterial activity precipitates calcium carbonate, while nano-additives improve nucleation, refine pore structure, and accelerate the healing process. Experimental evaluation focused on compressive and tensile strength recovery, water permeability reduction, and microscopic crack closure. Results indicate that bacterial–nano hybrid systems achieved up to 80% healing efficiency for cracks under 0.5 mm, with significant improvements in durability indices compared to conventional self-healing approaches. The findings suggest that microbial–nano synergy is an effective and scalable pathway for developing sustainable, long-lasting infrastructure.</span></em></strong></p>
title Self-Healing Concrete Using Bacterial and Nano-Additive Synergies for Enhanced Durability
topic Self-Healing Concrete, Bacterial Spores, Nano-Silica, Nano-Calcium Carbonate, Durability, Crack Healing, Sustainable Materials
url https://doi.org/10.5281/zenodo.17623516