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Method for the Accelerated Testing of the Durability of a Construction Binder using the Arrhenius Approach


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Kjellsen, K. O. – Detwiler, R. J., (1992)Reaction kinetics of Portland cement mortars hydrated at different temperatures, Cement and Concrete Research. Vol. 22, pp. 112–120.Search in Google Scholar

D’Aloia, L. – Chanvillard G., (2002)Determining the ‘apparent’ activation energy of concrete: Ea—numerical simulations of the heat of hydration of cement, Cement and Concrete Research. Vol. 32, pp. 1277–1289.Search in Google Scholar

Kishi, T. – Maekawa K., (1995)Multi component model for hydration heating Portland cement, Translation from Proceedings of JSCE. No. 526/V-29.Search in Google Scholar

Lin, F. – Meyer, C. (2009)Hydration kinetics modeling of Portland cement considering the effects of curing temperature and applied pressure, Cement and Concrete Research. Vol. 39, No. 4, pp. 255–265.Search in Google Scholar

Schindler, A. K. (2004)Effect of temperature on the hydration of cementitious materials, ACI Materials Journal. Vol. 101, No 1, pp. 72–81.Search in Google Scholar

Arrhenius, S. (1889)Ober die reacktionsgeschwindigkeit bei der inversion von rohrzucker durch saüren, Z. Physikal. Chemie. Vol. 4, pp. 226–248.10.1515/zpch-1889-0416Search in Google Scholar

Han, C. – Chaloner, K., (2003)D- and c-optimal designs for exponential regression models used in viral dynamics and other applications, Journal of Statistical Planning and Inference. Vol. 155, pp. 585–601.Search in Google Scholar

Rodríguez-Aragón, L. J. – López-Fidalgo, J. (2005)Optimal designs for the Arrhenius equation, Chemometrics and Intelligent Laboratory Systems. Vol. 77, pp. 131–138.Search in Google Scholar

Rodríguez-Torreblanca, C. - Rodríguez Díaz, J.,M., (2007)Locally D- and c-optimal designs for Poisson and Negative Binomial regression models, Metrika 66, pp. 161–172.Search in Google Scholar

Termkhajornkit, P. – Barbarulo, R., (2012)Modeling the coupled effects of temperature and fineness of Portland cement on the hydration kinetics in cement paste, Cement and Concrete Research. Vol. 42, pp. 526–538.Search in Google Scholar

Litherland, K.,L. – Oakley, D.,R. – Proctor, B.,A. (1981)The use of accelerated ageing procedures to predict the long term strength of GRC composites, Cement and Concrete Research. Vol. 11, pp. 455-466.Search in Google Scholar

Silva, M. A. G. – Sena da Fonseca, B. – Biscaia, H. (2014)On estimates of durability of FRP based on accelerated tests, Composite Structures. Vol. 116, pp. 377-387.Search in Google Scholar

Liu, X. – Jiang, Y. – Shen, S. – Luo, Y. – Gao, L. (2014)Comparison of Arrhenius model and artificial neuronal network for the quality prediction of rainbow trout (Oncorhynchus mykiss) fillets during storage at different temperatures, LWT – Food Science and Technology. Vol. 60, pp. 142-147.Search in Google Scholar

Montagnaro, F. – Nobili, M. – Salatino, P. – Telesca, A. – Valenti, G. L., (2007)Hydration products of FBC wastes as SO2 sorbents: comparison between ettrungite and cylcium hydroxide, Fuel Processing Technology. Vol. 89, pp. 47-53.Search in Google Scholar

Magrla, R. – Fridrichova, M. – Kulísek, K. – Dvořák, K. – Hoffman, O. (2014)Utilisation of Fluidised Fly Ash for Reduction of CO2 Emissions at Portland Cement Production. Advanced Materials Research. Vol. 1054, pp. 168-171.Search in Google Scholar

Damidot, D. – Glasser, F. P. (1993)Thermodynamic investigation of the CaO-Al2O3-CaSO4.H2O system at 25°C and influence of Na2O, Cement and Concrete Research. Vol. 23, pp. 221-238.10.1016/0008-8846(93)90153-ZSearch in Google Scholar

Moore, W. J., (1972)Physical Chemistry, Prentice Hall, Inc., USA.Search in Google Scholar

Wu, X. – Langton, C. A. – Roy D. M. (1983)Hydration of slag cement at early stage, Cement and Concrete Research. Vol. 13, pp. 277-286.Search in Google Scholar

Roy, D. M – Idorn, G. M. (1982)Hydration structure and properties of blast furnace slag cements, mortars and concrete, American, Concrete, Institute Proceedings. Vol. 79, pp. 444-457.Search in Google Scholar

Shi, C. – Day, R. L. (1993)Acceleration of strength gain of lime-pozzolan cements by thermal activation, Cement and Concrete Research. Vol. 23, pp. 824-832.Search in Google Scholar

van’t Hoff, J. H. (1884) Études de Dynamique Chimique (Studies in Chemical Dynamics), Utrecht10.1002/recl.18840031003Search in Google Scholar

Minaei, S. – Motevali, A. – Najafi, G. – Seyedi, S. R. M. (2011)Influence of drying methods on activation energy, effective moisture diffusion and drying rate of pomegranate arils, Australian Journal of Crop Science. Vol. 6, pp. 584-591.Search in Google Scholar

Aristov, Y. I. – Tokarev, M. M. – Freni, A. – Glaznev, I. S. – Restuccia, G. (2006)Kinetics of water adsorption on silica Fuji Davison RD, Microporous and Mesoporous Materials. Vol. 96, pp. 65–71.Search in Google Scholar

McCusker, L. B. – Von Dreele, R. B. – Cox, D. E. – Louër, D. – Scardi, P. (1999),Rietveld refinement guidelines, Applied Crystallography. Vol. 32, pp. 36-50.Search in Google Scholar

Zevin, L. S. – Kimmel, G. (1995): Quantitative X-ray Diffractometry. Publisher Springer Verlag. New York10.1007/978-1-4613-9535-5Search in Google Scholar

Scrivener, K. L. et al (2004)Quantitative study of Portland cement hydration by X-ray diffraction/Rietveld analysis and independent methods. Cement and Concrete Research. Vol. 34, pp. 1541-1547.10.1016/j.cemconres.2004.04.014Search in Google Scholar

Zhou, Q. – Glasser, F. P. (2001)Thermal stability and decomposition mechanisms of ettringite at <120°C, Cement and Concrete Research. Vol. 31, pp.1333-1339.Search in Google Scholar

EN 196-3+A1:2009 Methods of testing cement – Part 3: determination of setting time and soundnessSearch in Google Scholar

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