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English
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For å registrere i Cristin må du være vitenskapelig eller administrativt ansatt.
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2019
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1. |
Zhang, Yuanwei; Rout, Kumar Ranjan; He, Li; Chen, De. Kinetic Modelling of CO2 Capture By Solid Sorbent Based on Ion Migration Hypothesis. 2019 North American Catalysis Society Meeting; 2019-06-23 - 2019-06-28 NTNU
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2. |
Zhang, Yuanwei; Rout, Kumar Ranjan; Strand, Asbjørn; Chen, De. Moving Bed Carbonate Looping (MBCL) reactor for post-combustion CO2 capture. The 10th Trondheim CCS conference; 2019-06-17 - 2019-06-19 NTNU
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2017
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3. |
Zhang, Yuanwei; Chao, Zhongxi; Jakobsen, Hugo Atle. Modelling and simulation of chemical looping combustion process in a double loop circulating fluidized bed reactor. Chemical Engineering Journal 2017 ;Volum 320. s. 271-282 NTNU
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4. |
Zhang, Yuanwei; Chao, Zhongxi; Jakobsen, Hugo Atle. Modelling and simulation of hydrodynamics in double loop circulating fluidizedbed reactor for chemical looping combustion process. Powder Technology 2017 ;Volum 310. s. 35-45 NTNU
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5. |
Zhang, Yuanwei; Langørgen, Øyvind; Saanum, Inge; Chao, Zhongxi; Jakobsen, Hugo Atle. Modeling and Simulation of Chemical Looping Combustion Using a Copper-Based Oxygen Carrier in a Double-Loop Circulating Fluidized Bed Reactor System. Industrial & Engineering Chemistry Research 2017 ;Volum 56.(50) s. 14754-14765 NTNU ENERGISINT
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6. |
Zhang, Yuanwei; Langørgen, Øyvind; Saanum, Inge; Chao, Zhongxi; Jakobsen, Hugo Atle. Simulation of chemical looping combustion process in a double looping fluidized bed reactor with cu‐based oxygen carriers. I: Progress in Applied CFD – CFD2017 Selected papers from 12th International Conference on Computational Fluid Dynamics in the Oil & Gas, Metallurgical and Process Industries. SINTEF akademisk forlag 2017 ISBN 978-82-536-1544-8. s. 39-46 ENERGISINT NTNU
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2016
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Chao, Zhongxi; Zhang, Yuanwei; Wang, Yuefa; Jakobsen, Jana Poplsteinova; Jakobsen, Hugo Atle. Modelling of binary fluidized bed reactors for the sorption-enhanced steam methane reforming process. Canadian Journal of Chemical Engineering 2016 ;Volum 95.(1) s. 157-169 ENERGISINT NTNU
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