References

CHEMICAL COMPOSITION CORRECTION OF ALUMINOSILICATE MATERIALS TO ENHANCE THEIR CONDITIONS AS PRECURSORS FOR ALKALINE ACTIVATION


[1] J. Davidovits, Chemistry of geopolymeric systems, terminology, in: Proceedings Second International Conference, Geopolymer 99; J. Davidovits, R. Davidovits and C. James (Eds.), Geopolymer Institute, Saint-Quentin: France, (1999), 9-39.

[2] J. Provis and J. van Deventer, Introduction to Geopolymers, in: Geopolymers-Structure, Processing, Properties and Industrial Applications, Woodhead Publishing Limited (2009), 1-11.

[3] M. L. Granizo, Activación Alcalina de Metacaolino: Desarrollo de Nuevos Materiales Cementantes, Universidad Autónoma de Madrid, 1998.

[4] M. L. Granizo, M. T. Blanco-Varela and S. Martínez-Ramírez, Alkali activation of metakaolins: Parameters affecting mechanical, structural and micro structural properties, Journal of Materials Science 42 (2007), 2934-2943.

[5] P. Duxson, J. L. Provis, G. C. Lukey, S. W. Mallicoat, W. M. Kriven and J. S. J. van Deventer, Understanding the relationship between geopolymer composition, microstructure and mechanical properties, Colloids and Surfaces A: Physicochemical and Engineering Aspects 269 (2005), 47-58.

[6] C. K. Yip, G. C. Lukey and J. S. J. van Deventer, The coexistence of geopolymeric gel and calcium silicate hydrate at the early stage of alkaline activation, Cement and Concrete Research 35 (2005), 1688-1697.

[7] A. S. Vargas, D. C. C. Dal Molin, A. C. F. Vilela, F. J. D. Silva, B. Pavão and H. Veit, The effects of molar ratio, curing temperature and age on compressive strength, morphology and microstructure of alkali-activated fly ash-based geopolymers, Cement and Concrete Composites 33 (2011), 653-660.

[8] A. Fernández-Jiménez and A. Palomo, Composition and microstructure of alkali activated fly ash binder: Effect of the activator, Cement and Concrete Research 35 (2005), 1984-1992.

[9] A. Palomo and F. P. Glasser, Chemically-bonded cementitious materials based on metakaolin, British Ceramic Society Journal 91 (1992), 107-112.

[10] J. Davidovits and J. L. Sawyer, Early High-Strength Mineral Polymer, U.S. Patent 4.509.985, 1985.

[11] H. Xu and J. S. J. V. Deventer, Geopolymerisation of multiple minerals, Minerals Engineering 15 (2002), 1131-1139.

[12] L. Zhang, S. Ahmari and J. Zhang, Synthesis and characterization of fly ash modified mine tailings-based geopolymers, Construction and Building Materials 25 (2011), 3773-3781.

[13] J. Davidovits, Mineral Polymers and Methods of Making them, U.S. Patent 4.349.486, 1982.

[14] A. Teixeira-Pinto, Sistemas Ligantes Obtidos por Activacão Alcalina do Metacaulino, Universidade do Minho, 2004.

[15] B. Varela, T. Fernandez, P. B. Tavares and A. Teixeira-Pinto, Alkaline activation of volcanic ashes, in: 32nd International Cocoa Beach Conference & Exposition on Advanced Ceramics and Composites (2008).