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CARBON DIOXIDE CAPTURE AND STORAGE

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CARBON DIOXIDE CAPTURE AND STORAGE ( carbon-dioxide-capture-and-storage )

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Chapter 7: Mineral carbonation and industrial uses of carbon dioxide 337 carbonation: process mineralogy of feed and products. Minerals & metallurgical processing 19 (2): 95-101. O’Connor, W.K., D.C. Dahlin, G.E. Rush, S.J. Gedermann, L.R. Penner, D.N. Nilsen, Aqueous mineral carbonation, Final Report, DOE/ARC-TR-04-002 (March 15, 2005). O’Hanley, D. S., 1996: Serpentinites: records of tectonic and petrological history, Oxford University Press, New York Park, A.-H., A., R. Jadhav, and L.-S. Fan, 2003: CO2 mineral sequestration: chemical enhanced aqueous carbonation of serpentine, Canadian J. Chem. Eng., 81, 885-890. Park, A.-H., A., L.-S. Fan, 2004: CO2 mineral sequestration: physically activated dissolution of serpentine and pH swing process, Chem. Eng. Sci., 59, 5241-5247. Pelc, H., B. Elvers, S. Hawkins, 2005: Ullmann’s Encyclopedia of Industrial Chemistry, Wiley-VCH Verlag GmbH & Co. KGaA. Pierantozzi, R., 2003: Carbon Dioxide, Kirk Othmer Encyclopaedia of Chemical Technology, John Wiley and Sons. Pundsack, F. L. 1967: Recovery of Silica, Iron Oxide and Magnesium Carbonate from the Treament of Serpentine with Ammonium Bisulfate, United States Patent No. 3,338,667. Richmond, A., and N. Zou, 1999: Efficient Utilisation of High Photon Irradiance for Mass Production of Photoautotrophic Micro- Organisms. Journal of Applied Phycology 11.1, 123-27. Robie, R. A., Hemingway, B. S., Fischer, J. R. 1978: Thermodynamic properties of minerals and related substances at 298.15 K and 1 bar (105 Pascal) pressure and at higher temperatures, US Geological Bulletin 1452, Washington DC Sano, H., Tamaura, Y.Amano, H. and Tsuji, M. (1998): Global carbon recycling energy delivery system for CO2 mitigation (1) Carbon one-time recycle system towards carbon multi-recycle system, Advances in Chemical Conversions for Mitigating Carbon Dioxide, Elsevier Science B.V., p 273-278. Seifritz, W., 1990: CO2 disposal by means of silicates. Nature 345, 486 Stolaroff, J.K., G.V. Lowry, D.W. Keith, 2005: Using CaO- and MgO- rich industrial waste streams for carbon sequestration. Energy Conversion and Management. 46, 687-699. ushikoshi, K., K. Mori, T. Watanabe, M. Takeuchi and M. Saito, 1998: A 50 kg/day class test plant for methanol synthesis from CO2 and H2, Advances in Chemical Conversions for Mitigating Carbon Dioxide, Elsevier Science B.V., p 357-362. venhuis, M.A., E.J. Reardon, 2001: Vacuum method for carbonation of cementitious wasteforms. Environ. Sci. Technol. 35, 4120-4125. xiaoding, X., Moulijn, J.A., 1996: Mitigation of CO2 by chemical conversion: plausible chemical reactions and promising products. Energy and Fuels, 10, 305-325 Wendt, C. H., D. P. Butt, K. S. Lackner, H.-J. Ziock et al., 1998a: Thermodynamic Considerations of Using Chlorides to Accelerate the Carbonate Formation from Magnesium Silicates. Fourth International Conference on Greenhouse Gas Control Technologies, 30 August - 2 September. Eds. B. Eliasson, P. W. F. Riemer and A. Wokaun. Interlaken Switzerland. Wendt, C. H., K. S. Lackner, D. P. Butt, H.-J. Ziock, 1998b: Thermodynamic Calculations for Acid Decomposition of Serpentine and Olivine in MgCl2 Melts, I. Description of Concentrated MgCl2 Melts. Tech. Report No. LA-UR-98-4528 (Los Alamos National Laboratory). Wendt, C. H., K. S. Lackner, D. P. Butt and H.-J. Ziock, 1998c: Thermodynamic Calculations for Acid Decomposition of Serpentine and Olivine in MgCl2 Melts, II. Reaction Equilibria in MgCl2 Melts. Tech. Report No. LA-UR-98-4529 (Los Alamos National Laboratory) Wendt, C. H., K. S. Lackner, D. P. Butt and H.-J. Ziock, 1998d: Thermodynamic Calculations for Acid Decomposition of Serpentine and Olivine in MgCl2 Melts, III. Heat Consumption in Process Design, Tech. Report No. LA-UR-98-4529 (Los Alamos National Laboratory). Zevenhoven, R., Kavaliauskaite, I. 2004: Mineral carbonation for long- term CO2 storage: an exergy analysis. Int. J. Thermodynamics, 7(1) 23-31 Ziock, H.-J., K. S. Lackner, 2000: Zero Emission Coal. Contribution to the 5th International Conference on Greenhouse Gas Technologies, Cairns, Australia, August 14-18, Tech. Report No. LAUR-00-3573 (Los Alamos National Laboratory.

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