1 |
Process modelling, validation and analysis of rotating packed bed stripper in the context of intensified CO2 capture with MEA Borhani TN, Oko E, Wang M Journal of Industrial and Engineering Chemistry, 75, 285, 2019 |
2 |
Process simulation of dehydration unit for the comparative analysis of natural gas processing and carbon capture application Sakheta A, Zahid U Chemical Engineering Research & Design, 137, 75, 2018 |
3 |
Study on the integration of fluid catalytic cracking unit in refinery with solvent-based carbon capture through process simulation Wei M, Qian F, Du WL, Hu J, Wang MH, Luo XB, Yang ML Fuel, 219, 364, 2018 |
4 |
Model-free adaptive control for MEA-based post-combustion carbon capture processes Li Z, Ding ZT, Wang MH, Oko E Fuel, 224, 637, 2018 |
5 |
Performance, economic and exergy analyses of carbon capture processes for a 300 MW class integrated gasification combined cycle power plant Lee WS, Lee JC, Oh HT, Baek SW, Oh M, Lee CH Energy, 134, 731, 2017 |
6 |
Dynamic exergy method and its application for CO2 compression and purification unit in oxy-combustion power plants Jin B, Zhao HB, Zheng CG Chemical Engineering Science, 144, 336, 2016 |
7 |
Post combustion carbon capture: Does optimization of the processing system based on energy and utility requirements warrant the lowest possible costs? Kazemi A, Mehrabani-Zeinabad A Energy, 112, 353, 2016 |
8 |
Simulation and assessment of an integrated acid gas removal process with higher CO2 capture rate Liu X, Yang SY, Hu ZG, Qian Y Computers & Chemical Engineering, 83, 48, 2015 |
9 |
A parametric study of the impact of membrane materials and process operating conditions on carbon capture from humidified flue gas Low BT, Zhao L, Merkel TC, Weber M, Stolten D Journal of Membrane Science, 431, 139, 2013 |
10 |
Process synthesis for addressing the sustainable energy systems and environmental issues Yuan ZH, Chen BZ AIChE Journal, 58(11), 3370, 2012 |