1 |
Desublimation based separation of CO2 inside a cryogenic packed bed: Performance mapping with the spatiotemporal evolution of CO2 frost Debnath B, Mukherjee A, Mullick A, Ghoshdastidar S, Ganguly S, Kargupta K Chemical Engineering Research & Design, 146, 166, 2019 |
2 |
Feasibility and sustainability analyses of carbon dioxide - hydrogen separation via de-sublimation process in comparison with other processes Yurata T, Lei HW, Tang LG, Lu M, Patel J, Lim S, Piumsomboon P, Chalermsinsuwan B, Li CE International Journal of Hydrogen Energy, 44(41), 23120, 2019 |
3 |
Comparison of the biogas upgrading methods as a transportation fuel Hosseinipour SA, Mehrpooya M Renewable Energy, 130, 641, 2019 |
4 |
Optimal cryogenic processes for nitrogen rejection from natural gas Hamedi H, Karimi IA, Gundersen T Computers & Chemical Engineering, 112, 101, 2018 |
5 |
Strategy of effluent recovery technology selection in polyolefin plants Tu GN, Liao ZW, Huang ZL, Jiang BB, Wang JD, Yang YR Process Safety and Environmental Protection, 103, 405, 2016 |
6 |
Integration of light hydrocarbons cryogenic separation process in refinery based on LNG cold energy utilization Li YJ, Luo H Chemical Engineering Research & Design, 93, 632, 2015 |
7 |
Cryogenic carbon dioxide separation from natural gas: a review based on conventional and novel emerging technologies Maqsood K, Mullick A, Ali A, Kargupta K, Ganguly S Reviews in Chemical Engineering, 30(5), 453, 2014 |
8 |
Cryogenic method for H-2 and CH4 recovery from a rich CO2 stream in pre-combustion carbon capture and storage schemes Atsonios K, Panopoulos KD, Doukelis A, Koumanakos A, Kakaras E Energy, 53, 106, 2013 |
9 |
Product Loss Minimization of an Integrated Cryogenic Separation System Yang XT, Xu Q Chemical Engineering & Technology, 35(4), 635, 2012 |
10 |
Liquid hydrogen production via hydrogen sulfide methane reformation Huang CP, T-Raissi A Journal of Power Sources, 175(1), 464, 2008 |