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Study on the Performance of Recycled Coarse and Fine Aggregates as Microbial Carriers Applied to Self-Healing Concrete. | LitMetric

AI Article Synopsis

  • The increasing scarcity of natural resources and high demand for construction materials have led to the use of recycled aggregates in concrete, specifically focusing on microbial self-healing concrete (SHC).
  • Research revealed that recycled coarse aggregate (RCA) performed better in self-healing compared to recycled fine aggregate (RFA), with RCA achieving a maximum healing width of 0.27 mm in 28 days.
  • The study employed various characterization techniques to understand the repair mechanisms and established a time-dependent repair model, suggesting practical applications for enhancing recycled aggregates in construction.

Article Abstract

The contradiction between the scarcity of natural resources and the demand for construction materials has given rise to the application of recycled aggregates. Microbial self-healing concrete (SHC) is a clean and smart material, and its carrier has a great influence on repair performance. In this paper, recycled coarse aggregate (RCA) and recycled fine aggregate (RFA) were used as carriers, and their different repair effects over time were intensively investigated. The results showed that the RCA carrier had a better repair effect compared with that of RFA, and the maximum healing width could reach 0.27 mm by 28 day. The microbial repair efficiency was significantly influenced by the distribution of old mortar, with the RFA specimen having a small volume and wide distribution of repair products, while the RCA repair showed a centralized tendency. In addition, SEM, MIP and XRD characterization were used to analyze the repair mechanism. The time-dependent repair model was developed, and the applicability of the model for concrete enhancement under microbial repair was verified through experimental results. The research results could promote industrial applications by giving intelligent and green properties to recycled aggregates.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10051601PMC
http://dx.doi.org/10.3390/ma16062371DOI Listing

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