Folgen
Xiaobo Luo
Xiaobo Luo
University of Sheffield
Keine bestätigte E-Mail-Adresse
Titel
Zitiert von
Zitiert von
Jahr
Study of solvent-based carbon capture for cargo ships through process modelling and simulation
X Luo, M Wang
Applied Energy 195, 402-413, 2017
1092017
A comparative study of MEA and DEA for post-combustion CO2 capture with different process configurations
B Xue, Y Yu, J Chen, X Luo, M Wang
International Journal of Coal Science & Technology 4 (1), 15-24, 2017
1032017
Simulation-based techno-economic evaluation for optimal design of CO2 transport pipeline network
X Luo, M Wang, E Oko, C Okezue
Applied Energy 132, 610-620, 2014
832014
Process design, operation and economic evaluation of compressed air energy storage (CAES) for wind power through modelling and simulation
H Meng, M Wang, O Olumayegun, X Luo, X Liu
Renewable energy 136, 923-936, 2019
792019
Heat integration of natural gas combined cycle power plant integrated with post-combustion CO2 capture and compression
X Luo, M Wang, J Chen
Fuel 151, 110-117, 2015
782015
Study on heat integration of supercritical coal-fired power plant with post-combustion CO2 capture process through process simulation
X Liu, J Chen, X Luo, M Wang, H Meng
Fuel 158, 625-633, 2015
592015
Technical performance analysis and economic evaluation of a compressed air energy storage system integrated with an organic Rankine cycle
H Meng, M Wang, M Aneke, X Luo, O Olumayegun, X Liu
Fuel 211, 318-330, 2018
562018
Optimal operation of MEA-based post-combustion carbon capture for natural gas combined cycle power plants under different market conditions
X Luo, M Wang
International journal of greenhouse gas control 48, 312-320, 2016
472016
Improving prediction accuracy of a rate-based model of an MEA-based carbon capture process for large-scale commercial deployment
X Luo, M Wang
Engineering 3 (2), 232-243, 2017
382017
Modelling and process analysis of post-combustion carbon capture with the blend of 2-amino-2-methyl-1-propanol and piperazine
W Zhang, J Chen, X Luo, M Wang
International Journal of Greenhouse Gas Control 63, 37-46, 2017
312017
Study on the integration of fluid catalytic cracking unit in refinery with solvent-based carbon capture through process simulation
M Wei, F Qian, W Du, J Hu, M Wang, X Luo, M Yang
Fuel 219, 364-374, 2018
242018
Modelling and process analysis of hybrid hydration–absorption column for ethylene recovery from refinery dry gas
X Luo, M Wang, X Li, Y Li, C Chen, H Sui
Fuel 158, 424-434, 2015
192015
Dynamic modelling based on surface renewal theory, model validation and process analysis of rotating packed bed absorber for carbon capture
X Luo, M Wang, J Lee, J Hendry
Applied Energy 301, 117462, 2021
182021
Process simulation and analysis for CO2 transport pipeline design and operation–case study for the Humber region in the UK
X Luo, K Mistry, C Okezue, M Wang, R Cooper, E Oko, J Field
Computer aided chemical engineering 33, 1633-1638, 2014
142014
Process Modelling, Simulation and Optimisation of Natural Gas Combined Cycle Power Plant Integrated with Carbon capture, Compression and Transport
X Luo
University of Hull, 2016
102016
Carbon Capture
AS Joel, AK Olaleye, JGM Lee, KJ Wu, DY Kim, N Shah, C Kolster, ...
The Water-Food-Energy Nexus, 457-632, 2017
42017
Optimal Operation of MEA-Based Post-Combustion Carbon Capture Process for Natural Gas Combined Cycle Power Plants
X Luo, M Wang
Exergy for A Better Environment and Improved Sustainability 1: Fundamentals …, 2018
32018
Advanced Mass Transfer Technology for Post Combustion Carbon Capture
X Luo, K Forthun, J Ying, A Strand, D Eimer
Proceedings of the 16th Greenhouse Gas Control Technologies Conference (GHGT …, 2022
12022
油吸收法回收干气中乙烯新工艺的开发与模拟
李鑫钢, 王珏, 丛山, 罗小波, 王美宏, 李洪
化学工程 44 (2), 1-6, 2016
12016
Novel Cost-Effective Carbon Capture Process Using Phase Change Solvents and Rotating Packed Bed (Rpb) Columns –Study Through Process Modelling and Simulation
X Luo, M Wang
14th Greenhouse Gas Control Technologies Conference Melbourne 21-26 October …, 2018
2018
Das System kann den Vorgang jetzt nicht ausführen. Versuchen Sie es später erneut.
Artikel 1–20