L. André, P. Audigane, M. Azaroual, and A. Menjoz, Numerical modeling of fluid?rock chemical interactions at the supercritical CO 2 -liquid interface during CO 2 injection into a carbonate reservoir, the Dogger aquifer, Energy Convers. Manage, pp.1782-1797, 2007.

G. Aubertin, Y. Benderitter, E. Cordier, F. Doillon, H. Fabris et al., Détermination expérimentale de la vitesse naturelle d'écoulement de la nappe géothermique du Dogger en région parisienne, Bull. Soc. Géol. Fr, vol.8, pp.5-991, 1987.

M. Azaroual, C. Fouillac, and J. M. Matray, Solubility of silica polymorphs in electrolyte solutions, II. Activity of aqueous silica and solid silica polymorphs in deep solutions from the sedimentary Paris Basin, Chemical Geology, vol.140, issue.3-4, pp.167-179, 1997.
DOI : 10.1016/S0009-2541(97)00047-8

E. Brosse, C. Magnier, and B. Vincent, -Enriched Solutions in Core Samples: the Role of Reactive Surface Area, Oil & Gas Science and Technology, vol.60, issue.2, pp.287-305, 2005.
DOI : 10.2516/ogst:2005018

URL : https://hal.archives-ouvertes.fr/hal-00759859

E. Brosse, V. Hasanov, D. Bonijoly, D. Garcia, C. Rigolet et al., The PICOREF project: Selection of geological sites for pilot CO 2 injection and storage in the Paris Basin, 1st French-German Symposium on Geological Storage of CO, pp.21-22, 2007.
URL : https://hal.archives-ouvertes.fr/ineris-00970243

C. M. Castro, A. Jambon, D. Marsily, G. Schlosser, and P. , Noble gases as natural tracers of water circulation in the Paris Basin: 1. Measurements and discussion of their origin and mechanisms of vertical transport in the basin, Water Resources Research, vol.31, issue.2, pp.2443-2466, 1998.
DOI : 10.1029/98WR01956

C. M. Castro, A. Jambon, D. Marsily, G. Schlosser, and P. , Noble gases as natural tracers of water circulation in the Paris Basin, 1998.

J. P. Chilès and P. Delfiner, Geostatistics Modeling Spatial Uncertainty, 1999.

A. Coudrain-ribstein, P. Gouze, and G. De-marsily, Temperature-carbon dioxide partial pressure trends in confined aquifers, Chemical Geology, vol.145, issue.1-2, pp.73-89, 1998.
DOI : 10.1016/S0009-2541(97)00161-7

D. Lucia and M. , Influence de la variabilité spatiale sur le transport réactif, Thèse de doctorat, 2008.

D. Lucia, M. Lagneau, V. De-fouquet, C. Bruno, and R. , The influence of spatial variability on 2D reactive transport simulations, Comptes Rendus Geoscience, vol.343, issue.6, pp.406-416, 2011.
DOI : 10.1016/j.crte.2011.04.003

URL : https://hal.archives-ouvertes.fr/hal-00613170

J. Delmas, Etude pétrophysique des aquifères du Dogger carbonate dans le secteur Picoref (Sud Champagne, Bassin de Paris) Relation entre la porosité et la perméabilité mesurée sur carottes, 2007.

F. Diedro, Influence de la variabilité pétrophysique et minéralogique des réservoirs géologiques sur le transport réactif, 2009.

E. C. Gaucher, P. Blanc, F. Bardot, G. Braibant, S. Buschaert et al., Modelling the porewater chemistry of the Callovian???Oxfordian formation at a regional scale, Comptes Rendus Geoscience, vol.338, issue.12-13, pp.917-930, 2006.
DOI : 10.1016/j.crte.2006.06.002

URL : https://hal.archives-ouvertes.fr/hal-00664798

W. D. Gunter, E. H. Perkins, and I. Hutcheon, Aquifer disposal of acid gases: modelling of water???rock reactions for trapping of acid wastes, Applied Geochemistry, vol.15, issue.8, pp.1-11, 1999.
DOI : 10.1016/S0883-2927(99)00111-0

S. D. Hovorka, C. Doughty, S. M. Benson, K. Pruess, and P. R. Knox, The impact of geological heterogeneity on CO 2 storage in brine formations: A case study from the Texas Gulf Coast, in Geological storage of carbon dioxide, pp.147-163, 2004.

J. W. Johnson, J. J. Nitao, and K. G. Knaus, Reactive transport modelling of CO 2 storage in saline aquifers to elucidate fundamental processes, trapping mechanisms and sequestration partitioning, in Geological storage of carbon dioxide, pp.107-128, 2004.

É. Kohler, Investigation des couvertures d'intérêt pour le stockage du CO 2 en réservoir géologique dans le bassin de Paris : caractérisation minéralogique et réactivité physico-chimique en milieu enrichi en CO 2, 2006.

A. Lasaga, Kinetic theory in the earth sciences, 1998.
DOI : 10.1515/9781400864874

E. Lindeberg, P. Bergmo, and A. Moen, The long-term fate of CO 2 injected into an aquifer, 6th International Conference on Greenhouse Gas Control Technology (GHGT-6), pp.1-4, 2002.

R. Linder, Les plans d'expériences. Un outil indispensable à l'expérimentateur, Collection du Laboratoire Centrale des Ponts et Chaussées, 2005.

D. Montgomery, Design and analysis of experiments, 2005.

J. L. Palandri and Y. K. Kharaka, A compilation of rate parameters of water-mineral interaction kinetics for application to geochemical modelling, 2004.

K. Pruess, T. Xu, J. Apps, and J. Garcia, Numerical modeling of aquifer disposal of CO 2, Proceedings SPE/EPA/DOE Exploration and Production Environmental Conference, pp.26-28, 2001.