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               <dc:title>Fluidised-bed incineration bottom ash as the sole precursor of alkali-activated binders: A comparison with bottom ash from grate incinerators</dc:title>
               <dc:creator>Maldonado Alameda, Alex</dc:creator>
               <dc:creator>Mañosa Bover, Jofre</dc:creator>
               <dc:creator>Miro-Escola, J.</dc:creator>
               <dc:creator>Quintero-Payan, Alex C.</dc:creator>
               <dc:creator>Chimenos Ribera, Josep Ma.</dc:creator>
               <dc:subject>Incineració</dc:subject>
               <dc:subject>Materials de construcció</dc:subject>
               <dc:subject>Residus</dc:subject>
               <dc:subject>Incineration</dc:subject>
               <dc:subject>Building materials</dc:subject>
               <dc:subject>Waste products</dc:subject>
               <dc:description>The novel formulation of alkali-activated binders (AABs) using incineration bottom ash (IBA) from fluidised bed (FB) combustion technology as a sole precursor was assessed. In addition, IBA-FB was compared with IBA from moving grate (IBA-MG) combustion technology. The AABs formulated with IBA-FB (AAB-FB) and IBA-MG (AAB-MG) were also evaluated from a physicochemical, mechanical, and environmental perspective. The results revealed that specific surface area in IBA-FB hinders the retention of kneading water of fresh pastes, affecting the workability, consistency, porosity, and mechanical strength of AAB-FB. Moreover, the low calcium content of IBA-FB requires that the formulated AABs must be cured at higher curing temperatures to ensure the formation of (N,C) ASH gels, while the high calcium content of IBA-MG promotes the formation of CSH gels at room temperature. The compressive strength results demonstrated that AAB-MG (≈ 11 MPa) and AAB-FB (≈ 8 MPa) could be used for non-structural purposes.</dc:description>
               <dc:date>2023-03-31T14:00:13Z</dc:date>
               <dc:date>2023-03-31T14:00:13Z</dc:date>
               <dc:date>2022-12-13</dc:date>
               <dc:date>2023-03-31T14:00:13Z</dc:date>
               <dc:type>info:eu-repo/semantics/article</dc:type>
               <dc:type>info:eu-repo/semantics/publishedVersion</dc:type>
               <dc:relation>Reproducció del document publicat a: https://doi.org/10.1016/j.conbuildmat.2022.130001</dc:relation>
               <dc:relation>Construction and Building Materials, 2022, vol. 364, p. 1-12</dc:relation>
               <dc:relation>https://doi.org/10.1016/j.conbuildmat.2022.130001</dc:relation>
               <dc:rights>cc-by-nc-nd (c) Maldonado Alameda, Alex et al., 2022</dc:rights>
               <dc:rights>https://creativecommons.org/licenses/by-nc-nd/4.0/</dc:rights>
               <dc:rights>info:eu-repo/semantics/openAccess</dc:rights>
               <dc:publisher>Elsevier</dc:publisher>
               <dc:source>Articles publicats en revistes (Ciència dels Materials i Química Física)</dc:source>
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