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Payá J., Monzó J., Borrachero M.V. Outstanding aspects on the use of rice husk ash and similar agrowastes in the preparation of binders. I Pro-Africa Conference: Non-Conventional Building Materials Based on Agroindustrial Wastes (Pirassununga, Sao Paulo, Brasil) (2010).
Lima S. A., Varum H., Sales A., Neto V. F. Analysis of the mechanical properties of compressedearth block masonry using the sugarcane bagasse ash. Construction and Building Materials 35 (2012) 829-837.
Asociación de Productores de Azúcar de Honduras - Innovaciones tecnológicas (2014), Estadísticas. http: /www. azucar. hn/web/?page_id=12.
Payá J., Monzó J., Borrachero M.V., Díaz L., Ordóñez L.M. Sugar-cane bagasse ash (SCBA): studies on its properties for reusing in concrete production, Journal of Chemical Technology and Biotechnology 77 (2002) 321-325.
Cordeiro G.C., Toledo Filho R.D., Tavares L.M., Fairbairn E.M.R. Pozzolanic activity and filler effect of sugar cane bagasse ash in Portland cement and lime mortars, Cement and Concrete Composites 30 (2008) 410-418.
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Cordeiro G.C., Toledo Filho R.D., Fairbairn E.M.R. Effect of calcination temperature on the pozzolanic activity of sugar cane bagasse ash, Construction and Building Materials 23 (2009) 3301-3303.
Rukzon S., Chindaprasirt P. Utilization of bagasse ash in high-strength concrete, Materials and Design 34 (2012) 45-50.
Sua-iam G., Makul N. Use of increasing amounts of bagasse ash waste to produce self-compacting concrete by adding limestone powder waste, Journal of Cleaner Production 57 (2013) 308-319.
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Villar-Cociña E., Frías M., Valencia-Morales E., Savastano H. Jr Study of the pozzolanic reaction kinetics in sugar cane bagasse-clay ash/calcium hydroxide system: kinetic parameters and pozzolanic activity, Advances in Cement Research 21 (2009).
Payá J., Borrachero M.V., Monzó J., Díaz-Pinzón L., Ordóñez L.M. Sugar-cane bagasse ash (SCBA): studies on its properties for reusing in concrete production, Journal of Chemical Technology and Biotechnology 77 (2002) 321-325.
Kyritsis K., Meller N., Hall C. Chemistry and Morphology of Hydrogarnets Formed in Cement-Based CASH Hydroceramics Cured at 200ºC to 350 ºC, Journal of American Ceramic Society 92 (2009) 1105–1111.
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