References
- OECD Nuclear Energy Agency (NEA), Nuclear Energy Outlook 2008, OECD (2008).
- D. Bodansky, Nuclear energy: Principles, practices and prospects. 2nd ed. New York, American Institute of Physics (1996).
- A. Kronlöf, "Injection grout for deep repositories-Low pH cementitious grout for larger fractures: Testing technical performance of materials," Posiva Working Report 2004-45. Finland, Posiva Oy (2005).
- U. Sievanen, P. Raivio, U. Vuorinen, J. Hansen, J. Norokallio, P. Syrjänen, "Optimization of technical properties of lowpH cementitious injection grout: Laboratory tests and pilot field test 3," Posiva Working Report 2006-85, Finland, Posiva Oy (2006).
- A. Boden and U. Sievanen, "Low-pH injection grout for deep repositories," Posiva Working Report 2005-24, Finland, Posiva Oy (2006).
- M. Mihara, K. Iriya, A. Neyama and M. Ito, "Experimental and modeling studies on the interaction between cement paste with silica fume and distilled water," Radioactive Wasted Research, 3, 2, p.71-80 (1997).
- K. Orantie and H. Kuosa, "Durability 2007 injection grout investigation-Background description," Posiva Working Report 2008-54, Finland, Posiva Oy (2008).
- H. P. Torbjörn, L. Björn and V. Carsten, "Selective stabilization of deep core drilled boreholes using low-pH cement," Proceedings of the 2nd Low-pH workshop, ESDRED, Madrid, Spain, June, 15-16, 2005.
- S. David and B. Steven, "Low pH cements," SKI Report 2007:32, Sweden, SKI (2007).
- C. L. Page and O. Vennesland, "Pore solution composition and chloride binding capacity of silica fume cement paste," Mat. and Strut., 16, 91, p.19-25 (1983).
- K. Byfors, C. M. Hansson, and J. Tritthart, "Pore solution expression as a method to determine the influence of mineral additives on chloride binding," Cement and Concrete Res., 16, 5, p.760-770 (1986). https://doi.org/10.1016/0008-8846(86)90050-5
- J. Duchesne and M. A. Bérubé, "Evaluation of the validity of the pore solution expression method from hardened cement pastes and mortars," Cement and Concrete Res., 24, 3, p.456-462 (1983).
- H. Ana, L. G. Jose, C. A. Maria, F. L. Luis and A. Carmen, "Testing methodology for pH determination of cementitious materials: Application to low pH binders for use in HLNWR," Proceedings of the 2nd Low-pH workshop, ESDRED, Madrid, Spain, June, 15-16, 2005.
- V. Rasanen and V. Penttala, "The pH measurement of concrete and smoothing mortar using a concrete powder suspension," Cement and Concrete Res., 34, p.813-820 (2004). https://doi.org/10.1016/j.cemconres.2003.09.017
- ASTM C 109, "Standard test method for compressive strength of hydraulic cement mortars," American Society for Testing and Materials (2009).
- N. Swamy and G. Rigby, "Dynamic properties of hardened paste, mortar and concrete," Materials and structures, 4, 1, p.13-40 (1971).
- KS F2437, "Testing method for dynamic modulus of elasticity, rigidity and dynamic Poisson's ratio of concrete specimens by resonance vibration," (2008).
- ASTM C 215, "Standard test method for fundamental transverse longitudinal and torsional resonant frequencies of concrete specimens," American Society for Testing and Materials (2008).
- CRD-C 163-92, "Test method for water permeability of concrete using triaxial cell," U.S. Army Corps of Engineers (1992).
- Korea Concrete Institute, Concrete Engineering. 2nd ed. Seoul: KCI (2007).
- J. M. Soler, "Thermodynamic description of the solubility of CSH gels in hydrated Portland cement_Literature review," Posiva Working Report 2007-88, Finland, Posiva Oy (2007).
- K. O. Kjellsen and R. J. Detwiler, "Reaction kinetics of Portland cement mortars hydrated at different temperatures," Cement and Concrete Res., 22, p.112-120 (1992). https://doi.org/10.1016/0008-8846(92)90141-H
- M. Vuorio and J. Hansen, "Long-term safety and durability related studies on low-pH grouting materials," Proceedings of the 3rd Low-pH workshop, ESDRED, Paris, France, June, 15-16, 2007.
- S. Bhanja and B. Sengupta, "Optimum silica fume content and its mode of action on concrete," ACI Materials Journal, 100, 5, p.407-412 (2003).
- prEN206-1, "Concrete-Part 1: Specification, performance, production and conformity," European Standard (2000).
- E. Holt, "Durability of low-pH injection grout: A literature survey," Posiva Working Report 2007-57, Finland, Posiva Oy (2007).
- J. J. Recalde, "Estimating crack growth in temperature damaged concrete," PhD dissertation, North Carolina State University (2009).
- T. Qiu and P. J. Fox, "Hydraulic damping of saturated poroelastic soils during steady-state vibration," ASCE Journal of engineering mechanics, 132, 8, p.859-870 (2006). https://doi.org/10.1061/(ASCE)0733-9399(2006)132:8(859)
- M. Onofrei, G. Malcolm, W. Coons and S. Alcorn, "High performance cement-based grouts for use in a nuclear waste disposal facility," Waste Materials, 8, p.132-138 (1992).
- A. A. Al-Manaseer, M. Onofrei, M. N. Gray and B. Shenton, "The effect of silica fume and water/cement ratio on the hydraulic conductivity of cement-based grout," Proceeding of Scientific Basis for Nuclear Waste Management XIV Symposium, Pittsburgh, U.S., p.443-440 (1991).
Cited by
- Radiochemistry vol.108, pp.1460-4760, 2012, https://doi.org/10.1039/c2ic90023h