A. , R. G. Chidsey, T. Gwynn, W. Morgan, C. White et al., Natural CO 2 reservoirs on the Colorado Plateau and Southern Rocky Mountains: candidates for CO 2 sequestration, Proc. of 1st National Conference on CO, 2001.

D. Sequestration, . Netl, D. C. Washington, and C. Anbeek, Surface roughness of minerals and implications for dissolution studies, Geochim. Cosmochim. Acta, vol.56, pp.1461-1469, 1992.

E. Ash, M. Archer, T. Barker, G. Boulton, A. Budd et al., Economic instruments for the reduction of carbon dioxide emissions, 2002.

J. L. Baer and J. K. Rigby, Geology of the Crystal Geyser and environmental implications of its effluent, Utah Geological and Mineral Survey, vol.2, pp.125-130, 1978.

S. J. Baines and R. H. Worden, The long term fate of CO 2 in the subsurface: natural analogues for CO 2 storage. In: Geological Storage of Carbon Dioxide for Emissions Reduction, Special Publication, 2004.

C. J. Ballentine, M. Schoell, D. Coleman, and B. A. Cain, , 2001.

, Texas Permian basin, Nature, vol.409, pp.327-331

B. Beitler, M. A. Chan, and W. T. Parry, Bleaching of Jurassic Navajo Sandstone on Colorado Plateau Laramide highs: evidence of exhumed hydrocarbon supergiants?, Geology, vol.31, pp.1041-1044, 2003.

R. F. Biek, G. C. Willis, M. D. Hylland, and H. H. Doelling, (1983) Helium potential of the Four Corners area, Geology of Utah's National Parks and Monuments, vol.28, pp.107-138, 2000.

R. A. Chadwick, P. Zweigel, U. Gregersen, G. A. Kirby, S. Holloway et al., Geological characterisation of CO 2 storage sites: lessons from Sleipner, northern North Sea, Greenhouse Gas Control Technologies, pp.321-326, 2003.

M. A. Chan, W. T. Parry, and J. R. Bowman, Diagenetic hematite and manganese oxides and fault-related fluid flow, AAPG Bulletin, vol.84, pp.1281-1310, 2000.

L. Crossey, Active springs and Quaternary travertines in Grand Canyon, Geol. Soc. America Ann. Mtg. Abs, pp.175-176, 2002.

D. Darby, R. S. Haszeldine, and G. Couples, Pressure cells and pressure seals in the Central North Sea. Marine and Petroleum Geology, vol.13, pp.865-878, 1996.

. Dti-;-london, J. Ennis-king, and L. Paterson, Rate of dissolution due to convective mixing in the underground storage of CO 2, Our Energy Future. White Paper CM5761, pp.1653-1656, 2003.

K. J. Fletcher, . London, and K. J. Fletcher, Stable carbon isotopes in selected granitic mafic and ultramafic rocks, Blocks 16/07a, 16/07b, UK North Sea, vol.37, pp.2509-2521, 1973.

E. M. Galimov, Isotopic composition of carbon in gases of the crust, International Geology Review, vol.11, pp.1092-1104, 1968.

M. Gambardo, V. ;. Donagemma, S. C. Guscott, S. D. Burley, K. A. Foxford et al., An exhumed palaeo-hydrocarbon migration fairway, United Kingdom Oil and Gas fields, vol.1, pp.195-213, 2001.

K. W. Glennie, . Blackwell, . Oxford, W. D. Gunter, . Alberta et al., Implications of surface seepage on the effectiveness of geological storage of carbon dioxide as a climate change mitigation strategy, Petroleum Geology of the North Sea, 4 th, vol.183, pp.261-266, 1994.

L. F. Hintze, Geologic history of Utah, Geology Studies Spec. Publ, vol.7, 1988.

, Oil & Gas Science and Technology-Rev. IFP, vol.60, issue.1, 2005.

J. E. Huntoon, P. L. Hansley, and N. D. Naeser, The search for a source rock for the giant Tar Sand triangle accumulation, southeastern Utah, vol.83, pp.67-495, 1999.

S. Holloway, J. P. Heederik, L. G. Van-der-meer, I. Czernichowski-lauriol, R. Harrison et al., Contribution of Working Groups I, II and III to the Third Assessment Panel of the Intergovernmental Panel on Climate Change, Greenhouse Gas Control Technologies, pp.327-332, 1996.

H. S. Kheshgi, A. K. Jain, and D. J. Wuebbles, Accounting for the missing carbon-sink with the CO 2-fertilization effect, Climatic Change, vol.33, pp.31-62, 1966.

K. G. Knauss, J. W. Johnson, C. I. Steefel, and J. J. Nitao, Evaluation of the impact of CO 2 , aqueous fluid, and reservoir rock interactions on the geologic sequestration of CO 2 , with special emphasis on economic implications, Proc. of 1st National Conference on CO 2 Sequestration, pp.26-37, 2001.

C. Koeberl, J. B. Plescia, C. L. Hayward, and W. U. Reimold, A petrographic study of quartzose rocks from Upheaval Dome, Meteoritics and Planet Science, vol.34, pp.861-868, 1999.

R. Korbol and A. Kaddour, Sleipner-Vest CO 2 disposalinjection of removed CO 2 into the Utsira Formation. Energy Conversion and Management, vol.36, pp.509-512, 1995.

M. R. Lee, M. E. Hodson, and I. Parsons, The role of intragranular microtextures and microstructures in chemical and mechanical weathering: direct comparisons of experimentally and naturally weathered alkali feldspars, Geochim. Cosmochim. Acta, vol.62, pp.2771-2788, 1998.

E. Lindeberg, The quality of a CO 2 repository: what is the sufficient retention time of CO 2 storged underground, Greenhouse Gas Technologies, pp.255-260, 2003.

C. I. Macaulay, R. S. Haszeldine, and A. E. Fallick, Diagenetic pore waters stratified for at least 35 million years: Magnus oil field, North Sea, Bulletin American Association Petroleum Geologists, vol.76, pp.1625-1634, 1992.

C. I. Macaulay, R. S. Haszeldine, and A. E. Fallick, Distribution, chemistry, isotopic composition and origin of diagenetic carbonates: Magnus sandstone, North Sea, J. Sedimentary Petrology, vol.63, pp.33-43, 1993.

C. I. Macaulay, A. E. Fallick, G. E. Mcaulay, R. S. Watson, R. N. Stewart et al., Oil migration makes the difference: regional distribution of carbonate cement ? 13 C in northern North Sea Tertiary sandstones, Clay Minerals, vol.35, pp.73-80, 2000.

O. M. Mclaughlin, R. S. Haszeldine, and A. E. Fallick, Quartz diagenesis in layered fluids in the South Brae Oilfield, North Sea, Siliclastic Diagenesis Fluid Flow: Concepts and Applications, vol.55, pp.103-113, 1996.

F. T. Mackenzie, A. Lerman, L. M. Ver, O. K. Tulsa, L. B. Magoon et al., Recent past and future of the global carbon cycle, Evidence for reduced quartz cementation rates in oil-filled sandstones, vol.47, pp.915-918, 1994.

J. Moore, A. , R. Lutz, S. , A. et al., Differential incision of the Grand Canyon related to Quaternary faulting-Constraints from U-series and Ar/Ar dating, ) Investigations of CO 2 mobility in natural reservoirs beneath the Colorado Plateau and Southern Rocky Mountains. Second Annual Conference on Carbon Sequestration, NETL Proceedings, vol.22, pp.2313-2319, 1978.

H. K. Ranaweera, . Graham, . Trotman, L. W. Roberts, and J. A. Godfrey, History of Bravo Dome CO 2-discovery and early development, Geology of the Norwegian Oil and Gas Fields, vol.150, pp.9-12, 1987.

Z. K. Shipton, J. P. Evans, B. Dockrill, J. Heath, A. Williams et al., Natural leaking CO 2charged systems as analogs for failed geologic storage reservoirs. In: The CO 2 Capture and Storage Project (CCP), Fluids in the Crust, vol.95, pp.971-999, 1995.

S. Spence, H. Kreutz, . London, and W. L. Stokes, USGS (2003) Petroleum systems and geologic assessment of oil and gas in the Uinta-Piceance Province, Utah and Colorado. Digital Data Series DDS-69-B Version 1.0, US Geological Survey, Constancy of silicate mineral weathering ratios between natural and experimental weathering: implications for hydrologic control of differences in absolute rate, vol.2, pp.89-99, 1988.

M. N. Watson, N. Zwingmann, and N. M. Lemon, The Ladbroke Grove-Katnook carbon dioxide natural laboratory: a recent CO 2 accumulation in a lithic sandstone reservoir, Greenhouse Gas Technologies, pp.435-440, 2003.

A. F. White and S. L. Brantley, The effect of time on the weathering of silicate minerals: why do weathering rates differ in the laboratory and field?, Chemical Geology, vol.202, pp.479-506, 2003.

T. M. Wigley, The Kyoto protocol: CO 2 , CH 4 and climate implications, Geophysical Research Letters, vol.25, pp.2285-2288, 1998.

G. Yohe, N. Andronova, and M. Schlesinger, To hedge or not against an uncertain climate future?, Science, vol.306, pp.416-417, 2004.

P. Zweigel, R. Arts, T. Bidstrup, A. Chadwick, O. Eiken et al., Results and experiences from the first industrial-scale underground CO 2 sequestration case, Sleipner. AAPG Ann. Mtg, 2001.

©. Copyright, Institut français du pétrole Permission to make digital or hard copies of part or all of this work for personal or classroom use is granted without fee provided that copies are not made or distributed for profit or commercial advantage and that copies bear this notice and the full citation on the first page. Copyrights for components of this work owned by others than IFP must be honored. Abstracting with credit is permitted. To copy otherwise, to republish, to post on servers, or to redistribute to lists, requires prior specific permission and/or a fee: Request permission from Documentation, 2005.