Development of Geopolymer Mortars Using Air-Cooled Blast Furnace Slag and Biomass Bottom Ashes as Fine Aggregates

Luna-Galiano, Yolanda; Leiva Fernandez, Carlos; Sanchez, Rosario Villegas; Fernandez-Pereira, Constantino

Abstract

The aim of this study is to compare the mechanical and physical properties of different geopolymer mortars made with granulated blast furnace slag as a geopolymer source material, NaOH (8 M) as the activating solution, and three different types of fine aggregates (air-cooled blast furnace slag, biomass bottom ashes, and silica sand). The samples were made with an aggregate/geopolymer ratio of 3/1, and physical (density and mercury intrusion porosimetry), mechanical (compressive and flexural strength), and acid attack resistance were determined. When air-cooled blast furnace slag is used, the mechanical and acid attack properties are improved compared with silica sand and biomass bottom ashes because of the existence of amorphous phases in this slag, which increase the geopolymer reaction rate despite the particle size being higher than other aggregates. It can be highlighted that the use of ACBFS as a fine aggregate in geopolymer mortars produces better properties than in cement Portland mortar.

Más información

Título según WOS: ID WOS:001017855100001 Not found in local WOS DB
Título de la Revista: PROCESSES
Volumen: 11
Número: 6
Editorial: MDPI
Fecha de publicación: 2023
DOI:

10.3390/pr11061597

Notas: ISI