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Original Articles

Extraction and analysis of pore solution of cement paste: desaturation and resaturation cycles using a non-destructive method by gas injection

, , , &
Pages 1413-1423 | Received 31 Oct 2016, Accepted 26 Aug 2017, Published online: 11 Sep 2017

References

  • Atkinson, A. (1985). The time dependence of pH within a repository for radioactive waste disposal. United Kingdom: UKAEA Atomic Energy Research Establishment.
  • Auroy, M. (2010). Impact de la carbonatation sur les propriétés de transport d’eau des matériaux cimentaires [Carbonation impact on the water transport properties of cementitious materials]. (PhD thesis). Université Paris-Est, France.
  • Barneyback, R. S., & Diamond, S. (1981). Expression and analysis of pore fluids from hardened cement pastes and mortars. Cement and Concrete Research, 11, 279–285.10.1016/0008-8846(81)90069-7
  • Baroghel-Bouny, V. (1994). Caratérisation des pâtes de ciment et des bétons : methode, analyse, interprétations [Caracterisation of cement pastes and concretes: Method, analysis, interpretations]. Paris: Edition du Laboratoire des Ponts et Chaussées.
  • Basheer, L., Kropp, J., & Cleland, D. J. (2001). Assessment of the durability of concrete from its permeation properties: A review. Construction and Building Materials, 15, 93–103.10.1016/S0950-0618(00)00058-1
  • Buckley, L. J., Carter, M. A., Wilson, M. A., & Scantlebury, J. D. (2007). Methods of obtaining pore solution from cement pastes and mortars for chloride analysis. Cement and Concrete Research, 37, 1544–1550.10.1016/j.cemconres.2007.08.009
  • Byfors, K., Hansson, C. M., & Tritthart, J. (1986). Pore solution expression as a method to determine the influence of mineral additives on chloride binding. Cement and Concrete Research, 16, 760–770.10.1016/0008-8846(86)90050-5
  • Diamond, S. (1989). ASR-Another look at the mechanisms. In Proceeding of the 8th International Conference on Alkali-Aggregate Reaction (pp. 83–92), Kyoto: Elsevier Applied Science.
  • Drouet, E. (2010). Impact de la température sur la carbonatation des matériaux cimentaires: prise en compte des transferts hydriques [Impact of temperature on the carbonation of cementitious materials : taking into account water transfers] (PhD thesis). Ecole Normale Supérieure de Cachan, France.
  • Duchesne, J., & Bérubé, M. A. (1994). Evaluation of the validity of the pore solution expression method from hardened cement pastes and mortars. Cement and Concrete Research, 24, 456–462.10.1016/0008-8846(94)90132-5
  • Duchesne, J., & Bérubé, M. A. (2001). Long-term effectiveness of supplementary cementing materials against alkali–silica reaction. Cement and Concrete Research, 31, 1057–1063.10.1016/S0008-8846(01)00538-5
  • Durand, B., Bérand, J., Roux, R., & Soles, J. (1990). Alkali–silica reaction: The relation between pore solution characteristic and expansion test results. Cement and Concrete Research, 20, 419–428.10.1016/0008-8846(90)90032-S
  • Green, K. M., Hoff, W. D., Carter, M. A., Wilson, M. A., & Hyatt, J. P. (1999). A high pressure permeameter for the measurement of liquid conductivity of porous construction materials. Review of Scientific Instruments, 70, 3397–3401.10.1063/1.1149926
  • Larive, C. (1997). Apports combinés de l’expérimentation et de la modélisation à la compréhension de l’alcalis-réaction et de ses effets mécaniques [Combined inputs from experimentation and modeling to the understanding of alkali-reaction and its mechanical effects]. (PhD thesis). Ecole Nationale des Ponts et Chaussées, France.
  • Lendzer, D., & Ludwig, U. (1978). Alkali–aggregate reaction with opaline sandstone from Schleswig-Holstein. Proceeding of the 4th International Conference AAR (pp. 11–34), West Lafayette, IN.
  • Longuet, P. (1973). Essais électrochimiques de la protection des armatures par des ciments CLK [Electrochemical testing of reinforcement protection with clinker type cement]. Bulletin de l’Association pour le Développement de l’Emploi des Ciments au Laitier et Métallurgiques (Vol. 11). (in French).
  • Longuet, P., Burglen, L., & Zelwer, A. (1973). La phase liquide du ciment hydrate [The liquid phase of the hydrated cement]. Revue Matériaux Construction Travaux, 676, 35–41. (in French).
  • Lothenbach, B., & Winnefeld, F. (2006). Thermodynamic modelling of the hydration of Portland cement. Cement and Concrete Research, 36, 209–226.10.1016/j.cemconres.2005.03.001
  • Page, C. L., & Vennesland, Ø. (1983). Pore solution composition and chloride binding capacity of silica-fume cement pastes. Materials and Construction, 16, 19–25.10.1007/BF02474863
  • Polder, R. B., & Peelen, W. H. A. (2002). Characterisation of chloride transport and reinforcement corrosion in concrete under cyclic wetting and drying by electrical resistivity. Cement and Concrete Composites, 24, 427–435.10.1016/S0958-9465(01)00074-9
  • Rivard, P., Bérubé, M. A., Ballivy, G., & Ollivier, J. P. (2003). Effect of drying-rewetting on the alkali concentration of the concrete pore solution. Cement and Concrete Research, 33, 927–929.10.1016/S0008-8846(02)01091-8
  • Snyder, K. A., Feng, X., Keen, B. D., & Mason, T. O. (2003). Estimating the electrical conductivity of cement paste pore solutions from OH–, K+ and Na+ concentrations. Cement and Concrete Research, 33, 793–798.10.1016/S0008-8846(02)01068-2
  • Song, S., & Jennings, H. M. (1999). Pore solution chemistry of alkali-activated ground granulated blast-furnace slag. Cement and Concrete Research, 29, 159–170.10.1016/S0008-8846(98)00212-9
  • Tritthart, J. (1989). Chloride binding in cement: Investigations to determine the composition of pore water in hardened cement. Cement and Concrete Research, 19, 586–594.10.1016/0008-8846(89)90010-0
  • Tumidajski, P., Schumacher, A., Perron, S., Gu, P., & Beaudoin, J. (1996). On the relationship between porosity and electrical resistivity in cementitious systems. Cement and Concrete Research, 26, 539–544.10.1016/0008-8846(96)00017-8
  • Vollpracht, A., Lothenbach, B., Snellings, R., & Haufe, J. (2016). The pore solution of blended cements: A review. Materials and Structures, 49, 3341–3367.10.1617/s11527-015-0724-1
  • Whittington, H., McCarter, J., & Forde, M. (1981). The conduction of electricity through concrete. Magazine of Concrete Research, 33, 48–60.10.1680/macr.1981.33.114.48
  • Yonezawa, T., Ashworth, V., & Procter, R. P. M. (1988). Pore solution composition and chloride effects on the corrosion of steel in concrete. Corrosion Engineering, 44, 489–499.10.5006/1.3583967
  • Zeng, Q., Zhang, D., Sun, H., & Li, K. (2014). Characterizing pore structure of cement blend pastes using water vapor sorption analysis. Materials Characterization, 95, 72–84.10.1016/j.matchar.2014.06.007

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