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Waste Management & Research
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Sinterability study of ceramic bodies made from a mixture of mineral coal bottom ash and soda-lime glass cullet

Daniela L. Villanova

Carlos P. Bergmann

Laboratório de Materiais Cerâmicos, DEMAT, Escola de Engenharia, UFRGS, Porto Alegre/RS, Brazil

The aim of this study was to investigate the sinterability to improve the technical properties of ceramic bodies made from coal bottom ash and soda-lime glass cullet. Different mixtures of bottom ash and glass cullet were formulated. The amount of bottom ash was 100, 70, 50 and 30 wt.%. The particle size distribution was the same for all formulations. The mixture containing 50 wt.% bottom ash also had its particle size distribution changed. Samples were formed by dry pressing and then fired at 950, 1050 and 1150°C. Samples were evaluated for linear shrinkage, water absorption, flexural mechanical resistance, scanning electronic microscopy, pyroplastic deformation and thermodilatometric analysis. The higher firing temperature led to a decrease in water absorption and increased linear shrinkage, mechanical resistance and pyroplastic deformation. This effect was also observed for addition of glass up to 50 wt.%. The effect of smaller particles of bottom ash was more significant for linear shrinkage and mechanical resistance of ceramic bodies fired at 1150°C. The use of a finer powder contributed to increase these properties. The influence of finer particles on water absorption and mechanical resistance of ceramic bodies fired at 950 and 1050°C was not significant.

Key Words: Bottom ash • soda-lime glass cullet • ceramics • sinterability • temperature window • wmr 983–5

Waste Management & Research, Vol. 25, No. 1, 77-82 (2007)
DOI: 10.1177/0734242X07069764


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