Compatibility and Biomineralization Oriented Optimization of Nutrient Content in Nitrate-Reducing-Biogranules-Based Microbial Self-Healing Concrete

dc.contributor.author Kardogan, Beyza
dc.contributor.author Sekercioglu, Kadir
dc.contributor.authorID 0000-0003-4128-0195 en_US
dc.contributor.department AGÜ, Mühendislik Fakültesi, İnşaat Mühendisliği Bölümü en_US
dc.contributor.institutionauthor Ersan, Yusuf Cagatay
dc.date.accessioned 2021-12-09T07:02:35Z
dc.date.available 2021-12-09T07:02:35Z
dc.date.issued 2021 en_US
dc.description This research was funded by the Scientific and Technological Research Council of Turkey [Grant number 120Y291] and by Abdullah Gul University Scientific Research Projects [Grant number FBA-2017-88]. en_US
dc.description.abstract Microbially induced calcium carbonate precipitation (MICP) can be mentioned among the popular approaches to develop a self-healing concrete. The production of dissolved inorganic carbon through microbial activity is the main precursor for MICP in concrete and it is limited by the bioavailability of the nutrients. When nutrients are added to the mortar as admixtures, their bioavailability becomes more significant for crack repair because nutrients disperse in the mortar and considerable fraction stays far from a single crack. Therefore, the determination of bioavailability of nutrients and its variation with the initial nutrient content and crack age is essential to optimize a recipe for bacteria-based self-healing concrete. This study presents the optimum nutrient content defined for nitrate-reduction-based self-healing bioconcrete. In the tests, calcium nitrate (CN) and calcium formate (CF) were combined with a CF:CN w/w ratio of 2.50. Mortar properties and bioavailability of nutrients were analysed at different nutrient doses. Moreover, the bioavailability of nutrients at different crack ages changing between 3 and 56 days was monitored. Finally, resuscitation, microbial activity and the MICP performance of nitrate reducing biogranules were tested at defined nutrient bioavailabilties. The optimum nutrient content was determined as 7.00% (CF 5.00% and CN 2.00%). The leaching rates of formate ions were twice the leaching rate of the nitrate ions at similar initial concentrations, which led to a bioavailable HCOO-/NO3-N ratio of 23 g/g in cracked mortar. Under optimum nutrient conditions, the CaCO3 precipitation yield of nitrate reducing biogranules was recorded as 1.5 g CaCO3/g HCOO- which corresponded to 68% C precipitation efficiency. en_US
dc.description.sponsorship Turkiye Bilimsel ve Teknolojik Arastirma Kurumu (TUBITAK) 120Y291 Abdullah Gul University Scientific Research Projects FBA-2017-88 en_US
dc.identifier.issn 2071-1050
dc.identifier.uri https //doi.org/10.3390/su13168990
dc.identifier.uri https://hdl.handle.net/20.500.12573/1070
dc.identifier.volume Volume 13 Issue 16 en_US
dc.language.iso eng en_US
dc.publisher MDPIST ALBAN-ANLAGE 66, CH-4052 BASEL, SWITZERLAND en_US
dc.relation.isversionof 10.3390/su13168990 en_US
dc.relation.journal SUSTAINABILITY en_US
dc.relation.publicationcategory Makale - Uluslararası - Editör Denetimli Dergi en_US
dc.relation.tubitak 120Y291
dc.rights info:eu-repo/semantics/openAccess en_US
dc.subject denitrification en_US
dc.subject ACDC en_US
dc.subject screening en_US
dc.subject calcium carbonate en_US
dc.subject setting properties en_US
dc.subject strength en_US
dc.title Compatibility and Biomineralization Oriented Optimization of Nutrient Content in Nitrate-Reducing-Biogranules-Based Microbial Self-Healing Concrete en_US
dc.type article en_US

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