Residual fines as potential raw materials for M-S-H cements
processing and characterization
Palabras clave:
Magnesium silicate hydrate, Magnesium-based cements, Industrial waste, Sugarcane bagasse ash, Quartzite mining waste, Soapstone wasteResumen
This study presents the characterization and a strategy for processing residual fines for their application in the production of magnesium silicate hydrate (M-S-H) binders. Quartzite mining waste (QW), soapstone waste (SW), and sugarcane bagasse ash (SCBA) were evaluated. Initially, the raw materials were characterized by XRF, XRD, FTIR, SEM/EDS, and thermogravimetry. The samples were then subjected to a grinding study and characterized by laser granulometry and SEM/SE. The processed QW and SW samples exhibited high fineness (D90 of 13.5 and 42.9 µm, respectively) and a well-graded and continuous particle size distribution. The processed SCBA presented a high SiO₂ content (60.1%), predominance of amorphous phase (53.7%), and a high specific surface area (49.9 m²/g). Based on the results, the QW and SW are expected to perform effectively as fillers, reducing costs and contributing to the microstructure and mechanical performance of the matrices. The SCBA, in turn, stands out as a potential source of reactive silica (SiO₂) for the synthesis of M-S-H cements. The study aligns with circular economy principles and offers alternatives for utilizing industrial waste in the Brazilian construction industry, opening new possibilities for research on eco-efficient M-S-H systems.
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