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Moessbauer Spectroscopy : Tutorial Book
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London: Chapman and Hall. Hajimohammadi, A. Effect of alumina release rate on the mechanism of geopolymer gel formation. Henderson, C. Infrared spectra of aluminogermanate- and aluminate-sodalites and a re-examination of the relationship between T-O bond length, T-O-T angle and the position of the main i.
Acta A 35, — Iacobescu, R. The influence of curing conditions on the mechanical properties and leaching of inorganic polymers made of fayalitic slag. Kamnev, A. Krebs, C. Kriskova, L. Inorganic polymers from a plasma convertor slag: effect of activating solution on microstructure and properties. Sustainable Metal. Kumar, S. Influence of reactivity of fly ash on geopolymerisation.
Lemougna, P. Influence of the chemical and mineralogical composition on the reactivity of volcanic ashes during alkali activation. Machiels, L. Inorganic polymer cement from Fe-silicate glasses: varying the activating solution to glass ratio. Waste Biomass Valori. Sustainable Metall. Mysen, B. The structural behavior of ferric and ferrous iron in aluminosilicate glass near meta-aluminosilicate joins. Acta 70, — Onisei, S. Inorganic polymers made of fayalite slag: on the microstructure and behavior of Fe. Early age microstructural transformations of an inorganic polymer made of fayalite slag.
Peys, A. Mix-design parameters and real-life considerations in the pursuit of lower environmental impact inorganic polymers. Potassium-rich biomass ashes as activators in metakaolin-based inorganic polymers.
Clay Sci. Pontikes, Y. Slags with a high Al and Fe content as precursors for inorganic polymers. Provis, J. New York, NY: Springer. Rahier, H. Low-temperature synthesized aluminosilicate glasses: Part IV Modulated DSC study on the effect of particle size of metakaolinite on the production of inorganic polymer glasses. Low-temperature synthesized aluminosilicate glasses: part III Influence of the composition of the silicate solution on production, structure and properties.
Reaction mechanism, kinetics and high temperature transformations of geopolymers. Rees, C. Langmuir 23, — Silver, J. Simon, S. Van De Sande, J. Vandenberghe, R. Yoshida and G. Langouche Berlin Heidelberg: Springer, 91— White, C. In situ synchrotron X-ray pair distribution function analysis of the early stages of gel formation in metakaolin-based geopolymers. In situ X-ray pair distribution function analysis of geopolymer gel nanostructure formation kinetics. Evolution of local structure in geopolymer gels: an in situ neutron pair distribution function analysis.
Combining density functional theory DFT and pair distribution function PDF analysis to solve the structure of metastable materials: the case of metakaolin. Yang, K. Modeling the formation of alkali aluminosilicate gels at the mesoscale using coarse-grained Monte Carlo.
Langmuir 32, — Zhang, Z. Quantitative kinetic and structural analysis of geopolymers. Part 2.
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Thermodynamics of sodium silicate activation of metakaolin. Acta , — Zhou, Y. ACS Appl.
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