Please use this identifier to cite or link to this item: http://repositorio.lnec.pt:8080/jspui/handle/123456789/1018005
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dc.contributor.authorSantos, T.pt_BR
dc.contributor.authorLuijten, N.pt_BR
dc.contributor.authorSantos Silva, A.pt_BR
dc.contributor.authorSilvestre, J.pt_BR
dc.contributor.authorFaria, P.pt_BR
dc.date.accessioned2024-12-06T09:56:00Zpt_BR
dc.date.accessioned2025-04-22T12:56:10Z-
dc.date.available2024-12-06T09:56:00Zpt_BR
dc.date.available2025-04-22T12:56:10Z-
dc.date.issued2024-12-01pt_BR
dc.identifier.citation10.1016/j.jobe.2024.111407pt_BR
dc.identifier.urihttp://dspace2.lnec.pt:8080/jspui/handle/123456789/1018005pt_BR
dc.identifier.urihttp://repositorio.lnec.pt:8080/jspui/handle/123456789/1018005-
dc.description.abstractThe aim of the present study is to assess if recycled gypsum from plasterboard waste can be added to earth plastering mortars instead of raw calcium sulphate hemihydrate when a mineral binder addition is foreseen to improve durability. Earth mortars with additions of 0 %, 5 %, 10 % and 20 % vol. of raw hemihydrate, gypsum milled from plasterboards with and without thermal treatment were produced and tested. In general, the additions led to an overall improvement in mechanical strength and resistance to water and did not significantly influence the hygroscopicity of the earth plaster. In general, earth mortars with untreated gypsum waste achieved comparable to superior results compared to mortars with treated gypsum waste, indicating the viability of using recycled gypsum from plasterboard without thermal treatment as earthen plaster addition.pt_BR
dc.language.isoengpt_BR
dc.publisherElsevierpt_BR
dc.relationSFRH/BD/147428/2019pt_BR
dc.relationUIDB/ 04625/2020pt_BR
dc.rightsopenAccesspt_BR
dc.subjectClay-based plastering mortarpt_BR
dc.subjectGypsum-based binderpt_BR
dc.subjectHygroscopicitypt_BR
dc.subjectThermal treatmentpt_BR
dc.subjectWastept_BR
dc.titleEarthen plasters hygrothermal and mechanical performance: Effect of adding recycled gypsum from plasterboards and raw hemihydratept_BR
dc.typearticlept_BR
dc.description.pages17ppt_BR
dc.description.commentsThe authors acknowledge the Portuguese Foundation for Science and Technology (FCT) for the support through funding UIDB/04625/2020 from CERIS research unit (DOI: 10.54499/UIDB/04625/2020) and for T. Santos PhD fellowship SFRH/BD/147428/2019 (DOI: 10.54499/SFRH/BD/147428/2019). Thanks to Saint-Gobain Portugal for supplying the clayish earth.pt_BR
dc.description.volume98pt_BR
dc.description.sectorDM/NMOMMpt_BR
dc.description.magazineJournal of Building Engineeringpt_BR
dc.contributor.peer-reviewedSIMpt_BR
dc.contributor.academicresearchersSIMpt_BR
dc.contributor.arquivoSIMpt_BR
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