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Production of concrete compatible biogranules for self-healing concrete applications
by
Sonmez, Merve
, Ersan, Yusuf Cagatay
in
Admixtures for underwater concreting
/ Bacteria
/ Bacterial corrosion
/ Calcium nitrate
/ Compatibility
/ Compressive strength
/ Concrete
/ Corrosion products
/ Cracks
/ Marine environment
/ Mortars (material)
/ Rebar
/ Reinforcing steels
/ Self healing materials
/ Workability
2019
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Production of concrete compatible biogranules for self-healing concrete applications
by
Sonmez, Merve
, Ersan, Yusuf Cagatay
in
Admixtures for underwater concreting
/ Bacteria
/ Bacterial corrosion
/ Calcium nitrate
/ Compatibility
/ Compressive strength
/ Concrete
/ Corrosion products
/ Cracks
/ Marine environment
/ Mortars (material)
/ Rebar
/ Reinforcing steels
/ Self healing materials
/ Workability
2019
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Do you wish to request the book?
Production of concrete compatible biogranules for self-healing concrete applications
by
Sonmez, Merve
, Ersan, Yusuf Cagatay
in
Admixtures for underwater concreting
/ Bacteria
/ Bacterial corrosion
/ Calcium nitrate
/ Compatibility
/ Compressive strength
/ Concrete
/ Corrosion products
/ Cracks
/ Marine environment
/ Mortars (material)
/ Rebar
/ Reinforcing steels
/ Self healing materials
/ Workability
2019
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Production of concrete compatible biogranules for self-healing concrete applications
Journal Article
Production of concrete compatible biogranules for self-healing concrete applications
2019
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Overview
Recently, cost-efficient nitrate reducing biogranules were suggested as an alternative to axenic microbial cultures for development of microbial self-healing concrete. In a marine environment, biogranule containing microbial self-healing concrete showed simultaneous self-healing of cracks and immunisation against rebar corrosion. Yet, information about the production strategy of these biogranules and their compatibility with a mortar matrix is limited. This study presents the production of biogranules and their compatibility with mortar specimens when incorporated at dosages between 0.36% to 4.30% w/w cement (0.25% to 3% of bacteria w/w cement). In-house produced biogranules composed of 70% bacteria and 30% of minerals w/w of biogranule were used for the compatibility tests. In test mortars, calcium formate (CF) and calcium nitrate (CN) were used as regular nutrient admixtures, and nutrient content was set identical in every batch. Up to 2.9% incorporation, biogranules had no significant influence on the fresh properties of mortar. More than 2.9% incorporation caused poor workability and a 26% decrease in 3-Day compressive strength of biomortar specimens. Overall, the biogranules produced are compatible with a cementitious matrix up to 2.9% w/w cement, and even up to 3.6% if early age strength is not essential, which makes biogranules one of the most compatible microbial healing agents among the suggested agents in the literature.
Publisher
EDP Sciences
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