P. C. Bennett, Quartz dissolution in organic-rich aqueous systems, Geochimica et Cosmochimica Acta, vol.55, pp.1781-1797, 1991.
DOI : 10.1016/0016-7037(91)90023-x

B. Bonfils, F. Bourgeois, C. Julcour, F. Guyot, and P. Chiquet, About the foundations of direct aqueous carbonation with dissolution enhancing organic salts. In: Accelerated Carbonation for Environmental and Material Engineering Conference, 2010.

B. Bonfils, F. Bourgeois, C. Julcour, F. Guyot, and P. Chiquet, Understanding the chemistry of direct aqueous carbonation with additives through geochemical modelling, Energy Procedia, vol.4, pp.3809-3816, 2011.
DOI : 10.1016/j.egypro.2011.02.316

URL : https://doi.org/10.1016/j.egypro.2011.02.316

H. Béarat, M. J. Mckelvy, A. V. Chizmeshya, D. Gormley, R. Nunez et al., Carbon sequestration via aqueous olivine mineral carbonation. Role of passivating layer formation, Environmental Science and Technology, vol.40, pp.4802-4808, 2006.

J. W. Carey, H. Ziock, and G. D. Guthrie, Reactivity of serpentine in CO2bearing solutions: application to CO2 sequestration, Division of Fuel Chemistry, vol.49, issue.1, pp.371-372, 2004.

Z. Y. Chen, W. K. O'connor, and S. J. Gerdemann, Chemistry of aqueous mineral carbonation for carbon sequestration and explanation of experimental results, Environmental Progress, vol.25, pp.161-166, 2006.

D. Daval, I. Martinez, J. Corvisier, N. Findling, B. Goffé et al., Carbonation of Ca-bearing silicates, the case of wollastonite: experimental investigations and kinetic modeling, Chemical Geology, vol.265, pp.63-78, 2009.
URL : https://hal.archives-ouvertes.fr/hal-00583749

D. Daval, O. Sissmann, N. Menguy, G. D. Saldi, F. Guyot et al., Influence of amorphous silica layer formation on the dissolution rate of olivine at 90 ? C and elevated pCO2, Chemical Geology, vol.284, pp.193-209, 2011.
URL : https://hal.archives-ouvertes.fr/hal-00591353

D. Antonio, M. C. Mancilla, N. Wladimirsky, A. Palacios, D. González-baró et al., Vibrational spectra of magnesium oxalates, Vibrational Spectroscopy, vol.53, pp.218-221, 2010.

S. J. Gerdemann, W. K. O'connor, D. C. Dahlin, L. R. Penner, and H. Rush, Ex situ aqueous mineral carbonation, Environmental Science and Technology, vol.41, pp.2587-2593, 2007.
DOI : 10.1021/es0619253

F. Goff and K. S. Lackner, Carbon dioxide sequestering using ultramafic rocks, Environmental Geosciences, vol.5, pp.89-101, 1998.

F. Goff, G. D. Guthrie, B. Lipin, M. Fite, S. J. Chipera et al., Evaluation of ultramafic deposits in the eastern United States and Puerto Rico as sources of magnesium for carbon sequestration, 2000.

M. Hänchen, V. Prigiobbe, G. Storti, T. M. Seward, and M. Mazotti, Dissolution kinetics of fosteritic olivine at 90-150 ? C including effect of the presence of CO2, Geochimica et Cosmochimica Acta, vol.70, pp.4403-4416, 2006.

M. Hänchen, V. Prigiobbe, R. Baciocchi, and M. Mazotti, Precipitation in the Mg-carbonate system-effects of temperature and CO2 pressure, Chemical Engineering Science, vol.63, pp.1012-1028, 2008.

W. J. Huijgen, G. Witkamp, and R. N. Comans, Mechanisms of aqueous wollastonite carbonation as a possible CO2 sequestration process, Chemical Engineering Science, vol.61, pp.4242-4251, 2006.

R. M. Kettler, D. J. Wesolowski, and D. A. Palmer, Dissociation constants of oxalic acid in aqueous sodium chloride and sodium trifluoromethanesulfonate media to 175 ? C, J. Chem. Eng. Data, vol.43, pp.337-350, 1998.

S. C. Krevor and K. S. Lackner, Enhancing process kinetics for mineral carbon sequestration, Energy Procedia, vol.1, pp.4867-4871, 2009.
DOI : 10.1016/j.egypro.2009.02.315

URL : https://doi.org/10.1016/j.egypro.2009.02.315

S. C. Krevor and K. S. Lackner, Enhancing serpentine dissolution kinetics for mineral carbon dioxide sequestration, International Journal of Greenhouse Gas Control, vol.5, pp.1073-1080, 2011.
DOI : 10.1016/j.ijggc.2011.01.006

K. S. Lackner, C. H. Wendt, D. Butt, E. Joyce, and D. Sharp, Carbon dioxide disposal in carbonate minerals, Energy, vol.20, pp.1153-1170, 1995.
DOI : 10.1016/0360-5442(95)00071-n

O. Levenspiel, Chemical Reaction Engineering, 1999.

B. Lichstein and F. Brescia, The mechanism of the precipitation of magnesium oxalate from supersaturated solution. 2. The heat and entropy of activation, Journal of the American Chemical Society, vol.79, issue.7, pp.1591-1592, 1957.

Y. Liu, A. A. Olsen, and J. D. Rimstidt, Mechanism for the dissolution of olivine series minerals in acidic solutions, American Mineralogist, vol.91, pp.455-458, 2006.

A. M. Martell and R. M. Smith, NIST Critically Selected Stability Constants of Metal Complexes Database, 2001.

B. Metz, O. Davidson, H. De-coninck, M. Loos, and L. Meyer, Special Report on Carbon Dioxide Capture and Storage, 2005.

P. S. Newall, S. J. Clarke, H. M. Haywood, H. Scholes, N. R. Clarke et al., CO2 storage as carbonates minerals. PH 3/17. IEA Greenhouse Gas R&D Programme, 1999.

W. K. O'connor, D. C. Dahlin, D. N. Nielsen, G. E. Rush, R. P. Walters et al., Carbon dioxide sequestration by direct mineral carbonation: results from recent studies and current status, 2001.

A. A. Olsen and J. D. Rimstidt, Oxalate-promoted forsterite dissolution at low pH, Geochimica et Cosmochimica Acta, vol.72, pp.1758-1766, 2008.

A. H. Park and L. S. Fan, CO2 Mineral sequestration. Physically activated dissolution of serpentine and pH swing process, Chemical Engineering Science, vol.59, pp.5241-5247, 2004.

S. R. Poulson, J. I. Drever, and L. L. Stillings, Aqueous Si-oxalate complexing oxalate adsorption onto quartz, and the effect of oxalate upon quartz dissolution rates, Chemical Geology, vol.140, pp.1-7, 1997.

P. Prapaipong, E. L. Shock, and C. M. Koretsky, Metal-organic complexes in geochemical processes: temperature dependence of the standard thermodynamic properties of aqueous complexes between metal cations and dicarboxylate ligands, Geochimica et Cosmochimica Acta, vol.63, pp.2547-2577, 1999.

V. Prigiobbe and M. Mazzotti, Dissolution of olivine in the presence of oxalate citrate, and CO2 at 90 ? C and 120 ? C, Chemical Engineering Science, vol.66, pp.6544-6554, 2011.

S. Teir, H. Revitzer, S. Eloneva, C. J. Fogelholm, and R. Zevenhoven, Dissolution of natural serpentine in mineral and organic acids, International Journal of Mineral Processing, vol.83, pp.36-46, 2007.

J. Van-der-lee, User's Guide and Tutorial. User's Guide Nr. LHM/RD/05/30, 2007.

R. A. Wogelius and J. V. Walther, Olivine dissolution at 25 ? C: effects of pH, CO2, and organic acids, Geochimica et Cosmochimica Acta, vol.55, pp.943-954, 1991.