Jiawei Hu
Jiawei Hu
Η διεύθυνση ηλεκτρονικού ταχυδρομείου έχει επαληθευτεί στον τομέα nus.edu.sg
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Παρατίθεται από
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Advanced chemical looping materials for CO2 utilization: a review
J Hu, VV Galvita, H Poelman, GB Marin
Materials 11 (7), 1187, 2018
532018
CO2 conversion to CO by auto-thermal catalyst-assisted chemical looping
J Hu, L Buelens, SA Theofanidis, VV Galvita, H Poelman, GB Marin
Journal of CO2 Utilization 16, 8-16, 2016
462016
Selective hydrogenation of phenylacetylene over a nano-Pd/α-Al2O3 catalyst
J Hu, Z Zhou, R Zhang, L Li, Z Cheng
Journal of Molecular Catalysis A: Chemical 381, 61-69, 2014
362014
Catalyst-assisted chemical looping auto-thermal dry reforming: Spatial structuring effects on process efficiency
J Hu, VV Galvita, H Poelman, C Detavernier, GB Marin
Applied Catalysis B: Environmental 231, 123-136, 2018
312018
A core-shell structured Fe2O3/ZrO2@ ZrO2 nanomaterial with enhanced redox activity and stability for CO2 conversion
J Hu, VV Galvita, H Poelman, C Detavernier, GB Marin
Journal of CO2 Utilization 17, 20-31, 2017
302017
High CO2 permeability of ceramic-carbonate dual-phase hollow fiber membrane at medium-high temperature
T Chen, Z Wang, J Hu, MH Wai, S Kawi, YS Lin
Journal of Membrane Science 597, 117770, 2020
172020
Pressure-induced deactivation of core-shell nanomaterials for catalyst-assisted chemical looping
J Hu, VV Galvita, H Poelman, C Detavernier, GB Marin
Applied Catalysis B: Environmental 247, 86-99, 2019
162019
Highly Efficient NO decomposition via dual-functional catalytic perovskite hollow fiber membrane reactor coupled with partial oxidation of methane at medium-low temperature
Z Wang, Z Li, Y Cui, T Chen, J Hu, S Kawi
Environmental Science & Technology, 2019
152019
Revisiting the reaction kinetics of selective hydrogenation of phenylacetylene over an egg-shell catalyst in excess styrene
Z Zhou, J Hu, R Zhang, L Li, Z Cheng
Chemical Engineering Science 138, 663-672, 2015
112015
Bifunctional Ni-Ca based material for integrated CO2 capture and conversion via calcium-looping dry reforming
J Hu, P Hongmanorom, VV Galvita, Z Li, S Kawi
Applied Catalysis B: Environmental 284, 119734, 2021
72021
What Makes Fe-Modified MgAl2O4 an Active Catalyst Support? Insight from X-ray Raman Scattering
A Longo, SA Theofanidis, C Cavallari, NV Srinath, J Hu, H Poelman, ...
ACS Catalysis 10 (12), 6613-6622, 2020
52020
FeO controls the sintering of iron-based oxygen carriers in chemical looping CO2 conversion
J Hu, H Poelman, GB Marin, C Detavernier, S Kawi, VV Galvita
Journal of CO2 Utilization 40, 101216, 2020
32020
苯乙炔选择性加氢滴流床反应器内的液相轴向返混特性
胡佳玮, 黄彬杰, 程振民, 周志明
化工学报 65 (1), 123-130, 2014
32014
Coupling CO2 utilization and NO reduction in chemical looping manner by surface carbon
J Hu, VV Galvita, H Poelman, Z Wang, GB Marin, S Kawi
Applied Catalysis B: Environmental 297, 120472, 2021
2021
Efficient integration of CO2 capture and conversion over a Ni supported CeO2-modified CaO microsphere at moderate temperature
J Hu, P Hongmanorom, P Chirawatkul, S Kawi
Chemical Engineering Journal 426, 130864, 2021
2021
A core-shell structured Ni-Fe bifunctional nanomaterial for catalyst-assisted chemical looping
J Hu, V Galvita, H Poelman, G Marin
12th International Symposium: Scientific Bases For The Preparation of …, 2018
2018
Catalyst-Assisted Chemical Looping Auto-Thermal Dry Reforming: The Effect of Operating Pressure (Invited Lecture)
J Hu, V Galvita, H Poelman
5th International Conference on Chemical Looping (5th ICCL), 2018
2018
CO2 Utilization via Auto-thermal Catalyst-assisted Chemical Looping (Invited Lecture)
J Hu, V Galvita, H Poelman, G Marin
4th International Conference-Catalysis for Renewable Sources: Fuel, Energy …, 2017
2017
Coating of Fe2O3 nanoparticles for enhanced redox activity and stability
J Hu, V Galvita, H Poelman, G Marin
Chemical Research in Flanders (CRF), 2016
2016
Design a novel material for catalyst-assisted chemical looping process
J Hu, VV Galvita, GB Marin
Methusalem International Advisory Board Meeting (M2dcR2), 2015
2015
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