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1) U.S. DOE BES. (2010). Technology and Applied R&D Needs for Carbon Capture Beyond 2020. Carbon . 2) Steeneveldt, R., Berger, B., & Torp, T. A. (2006). CO2 Capture and Storage. Chemical Engineering Research and Design , 84 (9), 739-763. 3) Figueroa, J. D., Fout, T., Plasynski, S., McIlvried, H., & Srivastava, R. D. (2008). Advances in CO2 capture technology-The U.S. Department of Energyʼs Carbon Sequestration Program. International Journal of Greenhouse Gas Control . 4) Kanniche, M., Gros-Bonnivard, R., Jaud, P., Valle-Marcos, J., Amann, J. M., & Bouallou, C. (2010). Pre-combustion, post-combustion and oxy-combustion in thermal power plant for CO2 capture. Applied Thermal Engineering , 30 (1), 53-62. 5) Toftegaard, M. B., Brix, J., Jensen, P. A., Glarborg, P., & Jensen, A. D. (2010). Oxy-fuel combustion of solid fuels. Progress in Energy and Combustion Science , 36 (5), 581-625 6) Thiruvenkatachari, R., Su, S., An, H., & Yu, X. X. (2009). Post combustion CO2 capture by carbon fibre monolithic adsorbents. Progress in Energy and Combustion Science 7) Li, J.-R., Ma, Y., McCarthy, M. C., Sculley, J., Yu, J., Jeong, H.-K., Balbuena, P. B., et al. (2011). Carbon dioxide capture-related gas adsorption and separation in metal-organic frameworks. Coordination Chemistry Reviews , 255 (15-16), 1791-1823. 8) Kenarsari, S. D., Yang, D., Jiang, G., Zhang, S., Wang, J., Russell, A. G., Wei, Q., et al. (2013). Review of recent advances in carbon dioxide separation and capture. RSC Advances , 3 (45), 22739. 9) Sitch, S., Smith, B., Prentice, I. C., Arneth, A., Bondeau, A., Cramer, W., Kaplan, J. O., et al. (2003). Evaluation of ecosystem dynamics, plant geography and terrestrial carbon cycling in the LPJ dynamic global vegetation model. Global Change Biology . Blackwell Science, Ltd. 10) Veneman, R., Li, Z. S., Hogendoorn, J. A., Kersten, S. R. A., & Brilman, D. W. F. (2012). Continuous CO2 capture in a circulating fluidized bed using supported amine sorbents. Chemical Engineering Journal , 207–208 (0), 18-26. 11) Rochelle, G. T. (2009). Amine scrubbing for CO2 capture. Science (New York, N.Y.) , 325 (5948), 1652-1654 12) Samanta, A., Zhao, A., Shimizu, G. K. H., Sarkar, P., & Gupta, R. (2012). Post- combustion CO 2 capture using solid sorbents: A review. Industrial and Engineering Chemistry Research . 13) Davidson, R. M. (2009). Post-combustion carbon capture- solid sorbents and membranes. IEA Clean Coal Centre Reports . 14) Smit, B., & Maesen, T. L. M. (2008). Molecular simulations of zeolites: Adsorption, diffusion, and shape selectivity. Chemical Reviews , 108 (10), 4125-4184. 15) Powell, C. E., & Qiao, G. G. (2006). Polymeric CO2/N2 gas separation membranes for the capture of carbon dioxide from power plant flue gases. Journal of Membrane Science . 16) James, S. L. (2003). Metal-organic frameworks. Chemical Society reviews , 32 (5), 276- 288.

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1) U.S. DOE BES. (2010). Technology and Applied R&D Needs o! "a!#on "ap$%!e Beyond 2020. Carbon.2) S$eene&eld$' R.' Be!ge!' B.' & To!p' T. A. (200(). "O2 "ap$%!e and S$o!age.Chemical Engineering Research and Design' 84())' *+),*(+.+) -ig%e!oa' .. D.' -o%$' T.' /lasyns0i' S.' 1c2l&!ied' 3.' & S!i&as$a&a' R. D. (2004). Ad&ances in "O2 cap$%!e $echnology,The U.S. Depa!$5en$ o Ene!gy s "a!#on Se6%es$!a$ion /!og!a5. International Journal of Greenhouse Gas Control.7) 8anniche' 1.' 9!os,Bonni&a!d' R.' .a%d' /.' :alle,1a!cos' ..' A5ann' .. 1.' & Bo%allo%' ". (2010). /!e,co5#%s$ion' pos$,co5#%s$ion and o;y,co5#%s$ion in $he!5al po%' ?. ?. (200)). /os$ co5#%s$ion "O2 cap$%!e #y ca!#on i#!e 5onoli$hic adso!#en$s. !rogress in Energ" and Combustion #cience%& @i' ..,R.' 1a' >.' 1c"a!$hy' 1. ".' Sc%lley' ..' >%' ..' .eong' 3.,8.' Bal#%ena' /. B.' e$ al. (2011). "a!#on dio;ide cap$%!e,!ela$ed gas adso!p$ion and sepa!a$ion in 5e$al,o!ganic !a5e