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- 01H3SW9NPY9Q73SP990168JQ3Q classification C1.
- 01H3SW9NPY9Q73SP990168JQ3Q date "2025".
- 01H3SW9NPY9Q73SP990168JQ3Q language "eng".
- 01H3SW9NPY9Q73SP990168JQ3Q type conference.
- 01H3SW9NPY9Q73SP990168JQ3Q hasPart 01HPNZFW2NBDN8A9NQ8JMBFNW0.pdf.
- 01H3SW9NPY9Q73SP990168JQ3Q hasPart urn:uuid:07f5375f-7a57-43b1-9756-15e5108342ef.
- 01H3SW9NPY9Q73SP990168JQ3Q subject "Technology and Engineering".
- 01H3SW9NPY9Q73SP990168JQ3Q doi "10.1016/j.matpr.2023.06.130".
- 01H3SW9NPY9Q73SP990168JQ3Q issn "2214-7853".
- 01H3SW9NPY9Q73SP990168JQ3Q presentedAt urn:uuid:df6c8932-da84-463c-ba0a-da2f6c71231a.
- 01H3SW9NPY9Q73SP990168JQ3Q abstract "Hybrid binders emerge as an intermediate solution to further decrease the clinker factor in cementitious systems without unfavorable slow development of microstructure. There is an amount of fly ash that is not yet used in the production of cementitious materials due to its limited reactivity. Therefore, by the election of an appropriate activator and small contents of Portland cement, it may be possible to provide an acceptable behaviour in terms of early-age strength and at the same time to achieve a valorization of these supplementary cementitious materials. This paper presents results of an exploratory study for the activation of a low calcium fly ash in hybrid systems. In literature previous studies have proved the synergy effect between GGBFS and FA in AAMs. For these reasons, low amounts of GGBFS with a lower carbon footprint than PC were also incorporated into some mixes. The interaction Portland cement/activator seems to control the early age behaviour. Life Cycle Assessment calculations for mortars are also presented. By comparing the different mixes in a cradle-to-gate oriented analysis, an estimation of the eco-efficiency of each of the systems was obtained. The results demonstrated that the addition of sodium sulfate was the most effective approach for hybrid binders containing FA and GGBFS, increasing not only the heat release but also the compressive strength.".
- 01H3SW9NPY9Q73SP990168JQ3Q author 2ec0d851-fd1f-11ea-a7b6-c0bfba504585.
- 01H3SW9NPY9Q73SP990168JQ3Q author C5B91BDE-692D-11E4-920E-08D3B4D1D7B1.
- 01H3SW9NPY9Q73SP990168JQ3Q author F4BFDAEA-F0ED-11E1-A9DE-61C894A0A6B4.
- 01H3SW9NPY9Q73SP990168JQ3Q author FAECAB1E-F0ED-11E1-A9DE-61C894A0A6B4.
- 01H3SW9NPY9Q73SP990168JQ3Q dateCreated "2023-06-25T18:15:43Z".
- 01H3SW9NPY9Q73SP990168JQ3Q dateModified "2025-01-23T12:17:08Z".
- 01H3SW9NPY9Q73SP990168JQ3Q name "An exploratory study of FA-based hybrid binder with alkaline sulfates as activator".
- 01H3SW9NPY9Q73SP990168JQ3Q sameAs LU-01H3SW9NPY9Q73SP990168JQ3Q.
- 01H3SW9NPY9Q73SP990168JQ3Q sourceOrganization urn:uuid:e7ab496f-537e-4fe4-aed8-8741f7e36eb7.
- 01H3SW9NPY9Q73SP990168JQ3Q type C1.