Page 157 - Handbook of Thermal Analysis of Construction Materials
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140                           Chapter 3 - Formation and Hydration


                               55. Greene, K. T., Early Hydration Reactions of Portland Cement, 4th Int.
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                               56. Scrivener, K. L., and Wieker, W., Advances in Hydration at Low,
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                                   I:449–482, New Delhi, India (1992)
                               57. Zacedatelev, I. B., Thermochemical Characterisitics of Cement and
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                                   (1980)
                               58. Feldman, R. F., and Ramachandran, V. S., Modified Thermal Analysis
                                   Equipment and Technique for Study Under Controlled Humidity Conditions,
                                   Thermochimica Acta, 2:393–403 (1971)
                               59. Ramachandran, V. S., Evaluation of Concrete Admixtures Using Differential
                                   Thermal Technique, ACI/RILEM Symposium 1985 on Technology of
                                   Concrete When Pozzolans, Slags and Chemical Admixtures are Used, pp.
                                   35–52, Monterry, Mexico (1985)
                               60. Feldman, R. F., and Ramachandran, V. S., Differentiation of Interlayer and
                                   Adsorbed Water in Hydrated in Portland Cement by Thermal Analysis,
                                   Cem. Concr. Res., 1:607–620 (1971)
                               61. El-Jazairi, B., and Illston, J. M., The Hydration of Cement Paste Using the
                                   Semi-Isothermal Method of Derivative Thermogravimetry, Cem. Concr.
                                   Res., 10:361–366 (1980)
                               62. Butler, F. G., and Morgan, S. R., A Thermoanalytical Method for
                                   Determination of the Amount of Ca(OH) Contained in Hydrated Portland
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                                   Cement, Proc. 7  Int. Congr. Chem. Cem., II:43–46, Paris (1980)
                               63. Inn, C. D., and Lee, D. Y., The Engineering Characteristics and Hydration
                                   of High Calcium Sulfate Cement Concrete, Int. Symp. on Advances in
                                   Concrete, II:327–343, Am. Concr. Inst. (1995)
                               64. Lota, S. S., Bensted, J., Munn, J., and Pratt, P. L., Hydration of Class G Oil
                                   Well Cement at 20 and 5°C., Industr. Ital. Cemento, 725:776–798 (1997)
                               65. Klimesch, D. S., and Ray, A., The Use of DTA/TGA to Study the Effects of
                                   Ground Quartz with Different Surface Area in Autoclaved Cement:Quartz
                                   Mixtures, Thermochimica Acta, 289:41–54 (1996)
                               66. Klimesch, D. S., and Ray, A., Use of Second Derivative Differential
                                   Thermal Curve in the Evaluation of Cement–Quartz Paste with Metakaolin
                                   Addition, Autoclaved at 180°C, Thermochimica Acta, 307:167–176 (1997)
                               67. Balek, V., The Hydration of Cement Investigated by Emanation Thermal
                                   Analysis, Thermochimica Acta, 72:147–158 (1984)
                               68. Bensted, J., Some Instrumental Investigation of Portland Cement Hydration-
                                   Part II Differential Thermal Analysis (DTA), Il Cemento,  76:117–126
                                   (1979)
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