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Mitigating environmental impact by development of ambient-cured EAF slag and fly ash blended geopolymer via mix design optimization

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dc.contributor.author Lahoti, Mukund
dc.date.accessioned 2024-09-18T06:37:40Z
dc.date.available 2024-09-18T06:37:40Z
dc.date.issued 2024
dc.identifier.uri https://link.springer.com/article/10.1007/s11356-023-26884-8
dc.identifier.uri http://dspace.bits-pilani.ac.in:8080/jspui/xmlui/handle/123456789/15605
dc.description.abstract This article discusses the utilization of industrial by-products, namely, electric arc furnace slag (EAFS) and fly ash to produce cementless geopolymer binder. Taguchi-grey optimization is used for experimental design and for investigating the effects of mix design parameters. Fly ash, in the levels of 0–75% (by mass), partly replaced EAFS in the binary-blended composite system. Experiments were performed on the microstructural development, mechanical properties, and durability of ambient-cured EAFS-fly ash geopolymer paste (EFGP). The optimal mix with 75–25% composition of EAFS and fly ash produced ~ 39 MPa compressive strength accrediting to the co-existence of C-A-S–H and N-A-S–H gels. The initial and final setting times were 127 min and 581 min, respectively, owing to adequate alkali and amorphous contents in the matrix, and the flowability was 108% due to sufficient activator content and the spherical shape of fly ash particles. SEM, XRD, and FTIR results corroborated the mechanical test results. en_US
dc.language.iso en en_US
dc.publisher Springer Nature en_US
dc.subject Civil Engineering en_US
dc.subject High volume fly ash en_US
dc.subject Electric arc furnace slag (EAFS) en_US
dc.title Mitigating environmental impact by development of ambient-cured EAF slag and fly ash blended geopolymer via mix design optimization en_US
dc.type Article en_US


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