Xun Hu
Xun Hu
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Biomass pyrolysis: A review of the process development and challenges from initial researches up to the commercialisation stage
X Hu, M Gholizadeh
Journal of Energy Chemistry 39, 109-143, 2019
Enhancing carbon dioxide gas-diffusion electrolysis by creating a hydrophobic catalyst microenvironment
Z Xing, L Hu, DS Ripatti, X Hu, X Feng
Nature communications 12 (1), 136, 2021
Levulinic esters from the acid-catalysed reactions of sugars and alcohols as part of a bio-refinery
X Hu, CZ Li
Green Chemistry 13 (7), 1676-1679, 2011
Progress of the applications of bio-oil
X Hu, M Gholizadeh
Renewable and Sustainable Energy Reviews 134, 110124, 2020
Polymerization on heating up of bio‐oil: A model compound study
X Hu, Y Wang, D Mourant, R Gunawan, C Lievens, W Chaiwat, ...
AIChE Journal 59 (3), 888-900, 2013
Investigation of the steam reforming of a series of model compounds derived from bio-oil for hydrogen production
X Hu, G Lu
Applied Catalysis B: Environmental 88 (3-4), 376-385, 2009
Investigation of steam reforming of acetic acid to hydrogen over Ni–Co metal catalyst
X Hu, G Lu
Journal of Molecular Catalysis A: Chemical 261 (1), 43-48, 2007
Acid-catalyzed conversion of xylose in 20 solvents: insight into interactions of the solvents with xylose, furfural, and the acid catalyst
X Hu, RJM Westerhof, D Dong, L Wu, CZ Li
ACS sustainable chemistry & engineering 2 (11), 2562-2575, 2014
Zero‐dimensional perovskite nanocrystals for efficient luminescent solar concentrators
H Zhao, R Sun, Z Wang, K Fu, X Hu, Y Zhang
Advanced Functional Materials 29 (30), 1902262, 2019
Reaction pathways of glucose during esterification: Effects of reaction parameters on the formation of humin type polymers
X Hu, C Lievens, A Larcher, CZ Li
Bioresource technology 102 (21), 10104-10113, 2011
Comparative study of alumina-supported transition metal catalysts for hydrogen generation by steam reforming of acetic acid
X Hu, G Lu
Applied Catalysis B: Environmental 99 (1-2), 289-297, 2010
Effects of heating rate on the evolution of bio-oil during its pyrolysis
Z Xiong, Y Wang, SSA Syed-Hassan, X Hu, H Han, S Su, K Xu, L Jiang, ...
Energy Conversion and Management 163, 420-427, 2018
The significance of pelletization operating conditions: An analysis of physical and mechanical characteristics as well as energy consumption of biomass pellets
ME Mostafa, S Hu, Y Wang, S Su, X Hu, SA Elsayed, J Xiang
Renewable and Sustainable Energy Reviews 105, 332-348, 2019
Steam reforming of acetic acid over Ni/ZrO2 catalysts: Effects of nickel loading and particle size on product distribution and coke formation
Z Li, X Hu, L Zhang, S Liu, G Lu
Applied catalysis A: general 417, 281-289, 2012
Coke formation during thermal treatment of bio-oil
X Hu, Z Zhang, M Gholizadeh, S Zhang, CH Lam, Z Xiong, Y Wang
Energy & Fuels 34 (7), 7863-7914, 2020
Impacts of nickel loading on properties, catalytic behaviors of Ni/γ–Al2O3 catalysts and the reaction intermediates formed in methanation of CO2
Z Zhang, Y Tian, L Zhang, S Hu, J Xiang, Y Wang, L Xu, Q Liu, S Zhang, ...
International Journal of Hydrogen Energy 44 (18), 9291-9306, 2019
Evolution of the functionalities and structures of biochar in pyrolysis of poplar in a wide temperature range
C Zhang, Z Zhang, L Zhang, Q Li, C Li, G Chen, S Zhang, Q Liu, X Hu
Bioresource technology 304, 123002, 2020
Pyrolysis of cellulose: Evolution of functionalities and structure of bio-char versus temperature
C Zhang, L Chao, Z Zhang, L Zhang, Q Li, H Fan, S Zhang, Q Liu, Y Qiao, ...
Renewable and Sustainable Energy Reviews 135, 110416, 2021
Copper-based catalysts with tunable acidic and basic sites for the selective conversion of levulinic acid/ester to γ-valerolactone or 1, 4-pentanediol
Y Shao, K Sun, Q Li, Q Liu, S Zhang, Q Liu, G Hu, X Hu
Green chemistry 21 (16), 4499-4511, 2019
Fundamental advances in biomass autothermal/oxidative pyrolysis: a review
Y Huang, B Li, D Liu, X Xie, H Zhang, H Sun, X Hu, S Zhang
ACS Sustainable Chemistry & Engineering 8 (32), 11888-11905, 2020
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