Segui
Changlei QIN (秦昌雷)
Changlei QIN (秦昌雷)
School of Energy and Power Engineering, Chongqing University
Email verificata su cqu.edu.cn
Titolo
Citata da
Citata da
Anno
Performance Enhancement of Calcium Oxide Sorbents for Cyclic CO2 CaptureA Review
W Liu, H An, C Qin, J Yin, G Wang, B Feng, M Xu
Energy & Fuels 26 (5), 2751-2767, 2012
3422012
Understanding the catalytic acceleration effect of steam on CaCO3 decomposition by density function theory
D He, Z Ou, C Qin, T Deng, J Yin, G Pu
Chemical Engineering Journal 379, 122348, 2020
1292020
Performance of Extruded Particles from Calcium Hydroxide and Cement for CO2 Capture
C Qin, J Yin, H An, W Liu, B Feng
Energy & fuels 26 (1), 154-161, 2012
1222012
Roles of alkali/alkaline earth metals in steam reforming of biomass tar for hydrogen production over perovskite supported Ni catalysts
Z Zhang, Z Ou, C Qin, J Ran, C Wu
Fuel 257, 116032, 2019
1202019
Fabrication of efficient and stable Li4SiO4-based sorbent pellets via extrusion-spheronization for cyclic CO2 capture
L Ma, C Qin, S Pi, H Cui
Chemical Engineering Journal 379, 122385, 2020
1002020
The consecutive calcination/sulfation in calcium looping for CO2 capture: Particle modeling and behaviour investigation
C Qin, D He, Z Zhang, L Tan, J Ran
Chemical Engineering Journal 334, 2238-2249, 2018
972018
Modelling of the calcination behaviour of a uniformly-distributed CuO/CaCO3 particle in Ca–Cu chemical looping
C Qin, J Yin, B Feng, J Ran, L Zhang, V Manovic
Applied energy 164, 400-410, 2016
952016
Integrated CO2 capture and utilization with CaO-alone for high purity syngas production
S Sun, Z Lv, Y Qiao, C Qin, S Xu, C Wu
Carbon Capture Science & Technology 1, 100001, 2021
932021
Manufacture of calcium-based sorbents for high temperature cyclic CO2 capture via a sol–gel process
C Luo, Y Zheng, C Zheng, J Yin, C Qin, B Feng
International Journal of Greenhouse Gas Control 12, 193-199, 2013
922013
Fabrication of CaO-Based Sorbents for CO2 Capture by a Mixing Method
C Qin, W Liu, H An, J Yin, B Feng
Environmental science & technology 46 (3), 1932-1939, 2012
922012
Theoretical Study on CO2 Absorption from Biogas by Membrane Contactors: Effect of Operating Parameters
Z Zhang, Y Yan, L Zhang, Y Chen, J Ran, G Pu, C Qin
Industrial & Engineering Chemistry Research 53 (36), 14075-14083, 2014
742014
Adsorption and desorption equilibrium of Li4SiO4-based sorbents for high-temperature CO2 capture
S Chen, J Dai, C Qin, W Yuan, V Manovic
Chemical Engineering Journal 429, 132236, 2022
692022
Behavior of CaO/CuO based composite in a combined calcium and copper chemical looping process
C Qin, J Yin, W Liu, H An, B Feng
Industrial & engineering chemistry research 51 (38), 12274-12281, 2012
692012
Effect of support material on carbonation and sulfation of synthetic CaO-based sorbents in calcium looping cycle
C Luo, Y Zheng, J Yin, C Qin, N Ding, C Zheng, B Feng
Energy & fuels 27 (8), 4824-4831, 2013
662013
Matching of kinetics of CaCO3 decomposition and CuO reduction with CH4 in Ca–Cu chemical looping
C Qin, B Feng, J Yin, J Ran, L Zhang, V Manovic
Chemical Engineering Journal 262, 665-675, 2015
642015
Modeling of CaCO3 decomposition under CO2/H2O atmosphere in calcium looping processes
J Yin, X Kang, C Qin, B Feng, A Veeraragavan, D Saulov
Fuel Processing Technology 125, 125-138, 2014
632014
Reactivation of calcium-based sorbent by water hydration for CO2 capture
J Yin, C Zhang, C Qin, W Liu, H An, G Chen, B Feng
Chemical engineering journal 198, 38-44, 2012
632012
Effect of support material on the performance of K2CO3-based pellets for cyclic CO2 capture
C Qin, J Yin, J Ran, L Zhang, B Feng
Applied energy 136, 280-288, 2014
592014
Recent advances in pyrolysis of cellulose to value-added chemicals
X Huang, J Ren, JY Ran, CL Qin, ZQ Yang, JP Cao
Fuel Processing Technology 229, 107175, 2022
582022
A comprehensive DFT study of CO2 catalytic conversion by H2 over Pt-doped Ni catalysts
Z Ou, C Qin, J Niu, L Zhang, J Ran
International Journal of Hydrogen Energy 44 (2), 819-834, 2019
552019
Il sistema al momento non può eseguire l'operazione. Riprova più tardi.
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