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Fracture healing and transport properties of wellbore cement in the presence of supercritical CO2

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Chemical Geology 281 (3-4) 195 (2011)
DOI: 10.1016/j.chemgeo.2010.12.008
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Accelerated degradation method for cement under CO2-rich environment: The LIFTCO2 procedure (leaching induced by forced transport in CO2 fluids)

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Cement and Concrete Research 40 (8) 1175 (2010)
DOI: 10.1016/j.cemconres.2010.03.019
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Evolution of the Petrophysical and Mineralogical Properties of Two Reservoir Rocks Under Thermodynamic Conditions Relevant for CO2Geological Storage at 3 km Depth

G. Rimmelé, V. Barlet-Gouédard and F. Renard
Oil & Gas Science and Technology – Revue de l’Institut Français du Pétrole 65 (4) 565 (2010)
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Improving wellbore seal integrity in CO2 injection wells

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Energy Procedia 1 (1) 3523 (2009)
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Experimental Study of Stability and Integrity of Cement in Wellbores Used for CO2 Storage

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Energy Procedia 1 (1) 3633 (2009)
DOI: 10.1016/j.egypro.2009.02.159
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CO2 Storage: Managing the Risk Associated With Well Leakage Over Long Time Scales

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SPE Projects, Facilities & Construction 4 (03) 87 (2009)
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Effect of carbonation on the hydro-mechanical properties of Portland cements

A. Fabbri, J. Corvisier, A. Schubnel, et al.
Cement and Concrete Research 39 (12) 1156 (2009)
DOI: 10.1016/j.cemconres.2009.07.028
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Experimental measurement of portlandite carbonation kinetics with supercritical CO2

Olivier Regnault, Vincent Lagneau and Hélène Schneider
Chemical Geology 265 (1-2) 113 (2009)
DOI: 10.1016/j.chemgeo.2009.03.019
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Heterogeneous porosity distribution in Portland cement exposed to CO2-rich fluids

Gaëtan Rimmelé, Véronique Barlet-Gouédard, Olivier Porcherie, Bruno Goffé and Fabrice Brunet
Cement and Concrete Research 38 (8-9) 1038 (2008)
DOI: 10.1016/j.cemconres.2008.03.022
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Y. Le Guen, J. Le Gouevec, R. Chammas, B. Gerard, O. Poupard, A. Van Der Beken and L. Jammes
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DOI: 10.2118/116424-MS
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E. Lécolier, A. Rivereau, N. Ferrer, A. Audibert and X Longaygue
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