Effect of glass addition on the properties of cements (CEMI)
Abstract
The purpose of this study is to recover mineral residues as an additive in cement-based building materials. It is part of a sustainable development approach. The use of recovered and recyclable industrial residues in partial replacement of Portland cement reduces greenhouse gas (GHG) emissions and results in the manufacture of cement with a lower environmental impact.
Using various experimental techniques, particular attention is paid to the behaviour of the glass powder finely crushed and chemically activated associated with Portland cement. This study confirms the improvement in the physicochemical and mechanical properties of cements with the addition of glass powder, which augurs well for its use as a cement additive.
References
ACI 116R-90. (2000). Cement and concrete terminology, technical documents, American Concrete Institute.
Chaïd, R., Kenaï, S., Zeroub, H., & Jauberthie, R. (2015). Microstructure and permeability of concrete with glass powder addition conserved in the sulphatic environment. European Journal of Environmental and Civil Engineering, 19(2), 219-237.
Corinaldesi, V., Gnappi, G., Moriconi, G., & Montenero, A. (2005). Reuse of ground waste glass as aggregate for mortars. Waste Management, 25(2), 197-201.
De Castro, S., & de Brito, J. (2013). Evaluation of the durability of concrete made with crushed glass aggregates. Journal of Cleaner Production, 41, 7-14.
Du, H., & Tan, K. H. (2013). Use of waste glass as sand in mortar: Part II–Alkali–silica reaction and mitigation methods. Cement and Concrete Composites, 35(1), 118-126.
Idir, R., Cyr, M., & Tagnit-Hamou, A. (2010). Use of fine glass as ASR inhibitor in glass aggregate mortars. Construction and Building Materials, 24(7), 1309-1312.
Kojima, T., Takagi, N., & Haruta, K. (2000). Expanding characteristics of mortar in glass powder produced from waste bottles, 673–682. 11th International Conference on Alkali Aggregate Reaction. Quebec, Canada, June 2000, 673–1282.
Oliveira, R., De Brito, J., & Veiga, R. (2013). Incorporation of fine glass aggregates in renderings. Construction and Building Materials, 44, 329-341.
Penacho, P., de Brito, J., & Veiga, M. R. (2014). Physico-mechanical and performance characterization of mortars incorporating fine glass waste aggregate. Cement and Concrete Composites, 50, 47-59.
Roz-Ud-Din, N., & Parviz, S. (2012). Strength and durability of recycled aggregate concrete containing milled glass as partial replacement for cement. Construction and Building Materials, 29, 368–377.
Serpa, D., Silva, A. S., De Brito, J., Pontes, J., & Soares, D. (2013). ASR of mortars containing glass. Construction and Building Materials, 47, 489-495.
Shayan, A., & Xu, A. (2006). Performance of glass powder as a pozzolanic material in concrete: A field trial on concrete slabs. Cement and concrete research, 36(3), 457-468.
Tagnit, A., & Nkinamubanzib, P.C. (2001). Les ajouts cimentaires et le développement durable, journée d’étude technique, Note trimestrielle d’information du Centre d’Etudes et de Services Technologiques de l’Industrie des Matériaux de Construction, CETIM, Algérie.
Taha, B., & Nounu, G. (2008). Using lithium nitrate and pozzolanic glass powder in concrete as ASR suppressors. Cement and Concrete Composites, 30(6), 497-505.
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