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CCU 기술 국내외 연구동향 김학민, 나인욱 Korean Chemical Engineering Research, 57(5), 589, 2019 |
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Particle circulation loops in solar energy capture and storage: Gas-solid flow and heat transfer considerations Zhang HL, Benoit H, Gauthier D, Degreve J, Baeyens J, Lopez IP, Hemati M, Flamant G Applied Energy, 161, 206, 2016 |
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A novel CCU approach of CO2 by the system 1,2-ethylenediamine+1,2-ethylene glycol Guo B, Zhao T, Sha F, Zhang F, Li Q, Zhang J Korean Journal of Chemical Engineering, 33(6), 1883, 2016 |
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Perspective and potential of CO2: A focus on potentials for renewable energy conversion in the Mediterranean basin Boubaker K, Colantoni A, Marucci A, Longo L, Gambella F, Cividino S, Gallucci F, Monarca D, Cecchini M Renewable Energy, 90, 248, 2016 |
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An alternate wind power integration mechanism: Coal plants with flexible amine-based CCS Bandyopadhyay R, Patino-Echeverri D Renewable Energy, 85, 704, 2016 |
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Sensitivity of the CO2 storage capacity of underground geological structures to the presence of SO2 and other impurities Ziabakhsh-Ganji Z, Kooi H Applied Energy, 135, 43, 2014 |
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Performance, cost and emissions of coal-to-liquids (CTLs) plants using low-quality coals under carbon constraints Mantripragada HC, Rubin ES Fuel, 103, 805, 2013 |
8 |
Methane reforming of syngas produced by co-gasification of coal and wastes. Effect of catalysts and of experimental conditions Pinto F, Andre RN, Franco C, Costa R, Gulyurtlu I Fuel, 90(4), 1645, 2011 |
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건식흡수제 이용 연소배가스 이산화탄소 포집기술 이창근 Korean Chemical Engineering Research, 48(2), 140, 2010 |
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Coal and energy security for India: Role of carbon dioxide (CO2) capture and storage (CCS) Garg A, Shukla PR Energy, 34(8), 1032, 2009 |