Youwei Cheng
Affiliations: | Zhejiang University, Hangzhou Shi, Zhejiang Sheng, China |
Area:
reaction kinetics; reactor; biomass; oxidationGoogle:
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Publications
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Ban H, Zhang Y, Chen S, et al. (2020) Production of 2,5-Furandicarboxylic Acid by Optimization of Oxidation of 5-Methyl Furfural over Homogeneous Co/Mn/Br Catalysts Acs Sustainable Chemistry & Engineering. 8: 8011-8023 |
Liu Y, Jiang S, Shi Q, et al. (2020) Kinetic Investigation of the Pyrolysis of Isobutyric Anhydride and Isobutyric Acid Industrial & Engineering Chemistry Research. 59: 14747-14757 |
Chen S, Cheng Y, Ban H, et al. (2020) Liquid Phase Aerobic Oxidation of 5-Hydroxymethylfurfural to 2,5-Furandicarboxylic Acid over Co/Mn/Br catalyst Industrial & Engineering Chemistry Research |
Tian Z, Li X, Cheng Y, et al. (2020) Interaction of two in-line bubbles of equal size rising in viscous liquid Chinese Journal of Chemical Engineering. 28: 54-62 |
Ban H, Zhang Y, Cheng Y, et al. (2019) Solubilities of 2,6-Dimethylnaphthalene in Six Pure Solvents and Two Binary Solvent Systems Journal of Chemical & Engineering Data. 64: 1705-1712 |
Ban H, Chen S, Zhang Y, et al. (2019) Kinetics and Mechanism of Catalytic Oxidation of 5-Methylfurfural to 2,5-Furandicarboxylic Acid with Co/Mn/Br Catalyst Industrial & Engineering Chemistry Research. 58: 19009-19021 |
Pan T, Liu Y, Qin W, et al. (2019) Thermodynamic Modeling of CaSO4–(NH4)2SO4–NH3–H2O Quaternary System with Asymmetric E-NRTL Model Industrial & Engineering Chemistry Research. 58: 6811-6821 |
Ban H, Yang S, Cheng Y, et al. (2019) Kinetics and Mechanism of Catalytic Oxidation of 2,6-Dimethylnaphthalene to 2,6-Naphthalenedicarboxylic Acid Industrial & Engineering Chemistry Research. 58: 2704-2716 |
Tian Z, Cheng Y, Li X, et al. (2019) Bubble shape and rising velocity in viscous liquids at high temperature and pressure Experimental Thermal and Fluid Science. 102: 528-538 |
Gao Y, Hong D, Cheng Y, et al. (2019) CFD simulation for up flow jet-loop reactors by use of bi-dispersed bubble model Chemical Engineering Research & Design. 141: 66-83 |