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Advances in Applied Ceramics
Structural, Functional and Bioceramics
Volume 109, 2010 - Issue 5: Cement and concrete science
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Original Article

Supercritical carbonation of lime based sustainable structural ceramics

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Pages 280-286 | Published online: 18 Jul 2013
 

Abstract

Abstract

Structural ceramics were manufactured from industrial byproducts and lime by a compression moulding/vacuum dewatering technique. Treatment of these ceramics with supercritical carbon dioxide was found to both significantly increase their flexural strength and activate cementation in the industrial byproducts at least as efficiently as heat curing. Flexural strengths of up to 10 MPa were achieved. Strength improvements were associated with decreased porosity and conversion of calcium hydroxide to calcium carbonate. Life cycle assessment of proposed products made from such materials indicated that the total reduction in embodied carbon dioxide achieved, as a result of combining use of byproducts with recombination of carbon dioxide, was up to 70%.

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