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- 01GQPQNQR8TDKMFFG77E4G4MH8 classification A1.
- 01GQPQNQR8TDKMFFG77E4G4MH8 date "2023".
- 01GQPQNQR8TDKMFFG77E4G4MH8 language "eng".
- 01GQPQNQR8TDKMFFG77E4G4MH8 type journalArticle.
- 01GQPQNQR8TDKMFFG77E4G4MH8 hasPart 01GQPQQBTRA7TPMGNK22SH59EY.pdf.
- 01GQPQNQR8TDKMFFG77E4G4MH8 hasPart 01GRXC5R5E01B3RXEAFH1PCD4A.pdf.
- 01GQPQNQR8TDKMFFG77E4G4MH8 hasPart urn:uuid:6ab7a555-dc67-42ea-aece-9fdb460b727e.
- 01GQPQNQR8TDKMFFG77E4G4MH8 subject "Technology and Engineering".
- 01GQPQNQR8TDKMFFG77E4G4MH8 doi "10.1016/j.cemconcomp.2023.104952".
- 01GQPQNQR8TDKMFFG77E4G4MH8 issn "0958-9465".
- 01GQPQNQR8TDKMFFG77E4G4MH8 issn "1873-393X".
- 01GQPQNQR8TDKMFFG77E4G4MH8 volume "138".
- 01GQPQNQR8TDKMFFG77E4G4MH8 abstract "A sequential batch reactor (SBR) was used to enrich and produce a self-protected CaCO3-precipitating biomass powder (CPB) that hydrolzes urea and reduces nitrate. The self-protected CPB, consisting of 50% biomass and 50% inorganic matter, was incorporated into a mortar and its self-healing performance was assessed. Crack closure observations showed that specimens containing CPB showed higher crack healing ratio in complete water immersion, while Bacillus sphaericus spores containing samples only exhibited crack healing under cyclic wet-dry incubation. During corrosion monitoring, CPB addition revealed a corrosion inhibition effect equivalent to that achieved by the addition of the chemical corrosion inhibitor nitrite (0.7 w/w% cement weight). Overall, CPB is a suitable self-healing bio-additive for effective crack closure in cementitious composites used in immersed structural elements. It is compatible with the cementitious matrix and resulted in promising results concerning crack healing and corrosion inhibition.".
- 01GQPQNQR8TDKMFFG77E4G4MH8 author 80E57640-9FE1-11E7-B747-66BCAD28A064.
- 01GQPQNQR8TDKMFFG77E4G4MH8 author 9EA78130-78C3-11E8-9776-C9E411A95AF2.
- 01GQPQNQR8TDKMFFG77E4G4MH8 author DD7363A8-712C-11E5-A2E3-1F5AB5D1D7B1.
- 01GQPQNQR8TDKMFFG77E4G4MH8 author F4BFDAEA-F0ED-11E1-A9DE-61C894A0A6B4.
- 01GQPQNQR8TDKMFFG77E4G4MH8 author F56DD06E-F0ED-11E1-A9DE-61C894A0A6B4.
- 01GQPQNQR8TDKMFFG77E4G4MH8 author FA3817BC-F0ED-11E1-A9DE-61C894A0A6B4.
- 01GQPQNQR8TDKMFFG77E4G4MH8 author urn:uuid:3e997f9d-6c19-406f-9ff5-01587cea992e.
- 01GQPQNQR8TDKMFFG77E4G4MH8 dateCreated "2023-01-26T09:48:50Z".
- 01GQPQNQR8TDKMFFG77E4G4MH8 dateModified "2024-12-12T20:14:11Z".
- 01GQPQNQR8TDKMFFG77E4G4MH8 name "Production of calcium carbonate-precipitating biomass powder as self-healing additive in concrete and performance evaluation in mortar".
- 01GQPQNQR8TDKMFFG77E4G4MH8 pagination urn:uuid:25613abd-ceb3-442e-9250-206791ad93b0.
- 01GQPQNQR8TDKMFFG77E4G4MH8 sameAs LU-01GQPQNQR8TDKMFFG77E4G4MH8.
- 01GQPQNQR8TDKMFFG77E4G4MH8 sourceOrganization urn:uuid:45d28449-a8fa-4dfc-be4f-6e1f07a56bde.
- 01GQPQNQR8TDKMFFG77E4G4MH8 sourceOrganization urn:uuid:7d6ffbea-559b-4ce8-82c0-5daf2695079b.
- 01GQPQNQR8TDKMFFG77E4G4MH8 type A1.