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BIBLIOGRAPHY and processes for efficient hydrogen storage. Computers & Chemical Engi- neering 33 (5), 1077 – 1090, chemical Products: From conceptualization to commercialization. [52] Georgis, D., Jogwar, S. S., Almansoori, A. S., Daoutidis, P., 2011. Design and control of energy integrated sofc systems for in situ hydrogen production and power generation. Computers & Chemical Engineering 35 (9), 1691 – 1704, energy Systems Engineering. [53] Gomes, V. G., Hassan, M. M., 2001. Coalseam methane recovery by vacuum swing adsorption. Separation and Purification Technology 24 (1-2), 189 – 196. [54] Gomes, V. G., Yee, K. W. K., 2002. Pressure swing adsorption for car- bon dioxide sequestration from exhaust gases. Separation and Purification Technology 28 (2), 161 – 171. [55] Goto, M., Sato, M., Kodama, A., Hirose, T., 1997. Application of supercrit- ical fluid technology to citrus oil processing. Physica B: Condensed Matter 239 (1-2), 167 – 170, proceedings of the Workshop on Transition Metals and Compounds under Multiextreme Conditions. [56] gPROMS, 2008. Process Systems Enterprise Ltd., gPROMS model devel- oper guide. http://www.psenterprise.com/gproms/index.html. [57] Grancharova, A., Johansen, T. A., Kocijan, J., 2004. Explicit model pre- dictive control of gas-liquid separation plant via orthogonal search tree par- titioning. Computers & Chemical Engineering 28 (12), 2481 – 2491. [58] Grande, C. A., Rodrigues, A. E., 2005. Propane/propylene separation by 183PDF Image | Operation and Control of Pressure Swing Adsorption Systems
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