Publicações
Multifunctional cork - alkali-activated fly ash composites: A sustainable material to enhance buildings' energy and acoustic performance
Novais, RM; Carvalheiras, J; Senff, L; Lacasta, AM; Cantalapiedra, IR; Giro-Paloma, J; Seabra, MP; Labrincha, JA
2020, ENERGY AND BUILDINGS, 210.
ISBN:
1872-6178
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Novel biomass fly ash-based geopolymeric mortars using lime slaker grits as aggregate for applications in construction: Influence of granulometry and binder/aggregate ratio
Saeli, M; Senff, L; Tobaldi, DM; Seabra, MP; Labrincha, JA
2019, CONSTRUCTION AND BUILDING MATERIALS, 227.
ISBN:
1879-0526
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In-depth investigation of the long-term strength and leaching behaviour of inorganic polymer mortars containing green liquor dregs
Novais, RM; Carvalheiras, J; Senff, L; Seabra, MP; Pullar, RC; Labrincha, JA
2019, JOURNAL OF CLEANER PRODUCTION, 220, 630-641.
ISBN:
1879-1786
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Sustainable and efficient cork - inorganic polymer composites: An innovative and eco-friendly approach to produce ultra-lightweight and low thermal conductivity materials
Novais, RM; Senff, L; Carvalheiras, J; Seabra, MP; Pullar, RC; Labrincha, JA
2019, CEMENT & CONCRETE COMPOSITES, 97, 107-117.
ISBN:
1873-393X
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Innovative Recycling of Lime Slaker Grits from Paper-Pulp Industry Reused as Aggregate in Ambient Cured Biomass Fly Ash-Based Geopolymers for Sustainable Construction Material
Saeli, M; Senff, L; Tobaldi, DM; La Scalia, G; Seabra, MP; Labrincha, JA
2019, SUSTAINABILITY, 11, 12.
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Development of multifunctional plaster using nano-TiO2 and distinct particle size cellulose fibers
Senff, L; Ascensao, G; Ferreira, VM; Seabra, MP; Labrincha, JA
2018, ENERGY AND BUILDINGS, 158, 721-735.
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Mortar formulations with bottom ash from biomass combustion
Modolo, RCE; Ferreira, VM; Tarelho, LA; Labrincha, JA; Senff, L; Silva, L
2013, CONSTRUCTION AND BUILDING MATERIALS, 45, 275-281.
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Formulation of mortars with nano-SiO2 and nano-TiO2 for degradation of pollutants in buildings
Senff, L; Tobaldi, DM; Lucas, S; Hotza, D; Ferreira, VM; Labrincha, JA
2013, COMPOSITES PART B-ENGINEERING, 44, 1, 40-47.
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Effect of nano-SiO2 and nano-TiO2 addition on the rheological behavior and the hardened properties of cement mortars
Senff, L; Hotza, D; Lucas, S; Ferreira, VM; Labrincha, JA
2012, MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 532, 354-361.
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