1 |
Development of polyethylenimine (PEI)-impregnated mesoporous carbon spheres for low-concentration CO2 capture Chen QJ, Wang SY, Rout KR, Chen D Catalysis Today, 369, 69, 2021 |
2 |
Thermodynamic modeling of CO2 absorption in aqueous solutions of N,N-diethylethanolamine (DEEA) and N-methyl-1,3-propanediamine (MAPA) and their mixtures for carbon capture process simulation Mouhoubi S, Dubois L, Fosbol PL, De Weireld G, Thomas D Chemical Engineering Research & Design, 158, 46, 2020 |
3 |
Industrial CO2 absorption into methyldiethanolamine/piperazine in place of monoethanolamine in the absorption column Li F, Hemmati A, Rashidi H Process Safety and Environmental Protection, 142, 83, 2020 |
4 |
Development of novel sub-ambient membrane systems for energy-efficient post-combustion CO2 capture Lee S, Yun S, Kim JK Applied Energy, 238, 1060, 2019 |
5 |
Post-combustion CO2 capture from a natural gas combined cycle power plant using activated carbon adsorption Jiang L, Gonzalez-Diaz A, Ling-Chin J, Roskilly AP, Smallbone AJ Applied Energy, 245, 1, 2019 |
6 |
CO2 Adsorption under Dynamic Conditions: An Overview on Rice Husk-Derived Sorbents and Other Materials Gargiulo V, Alfe M, Raganati F, Zhumagaliyeva A, Doszhanov Y, Ammendola P, Chirone R Combustion Science and Technology, 191(9), 1484, 2019 |
7 |
Demonstration of non-linear model predictive control of post-combustion CO(2 )capture processes Hauger SO, Flo NE, Kvamsdal H, Gjertsen F, Mejdell T, Hillestad M Computers & Chemical Engineering, 123, 184, 2019 |
8 |
Investigation of the effect of alumina-aerogel support on the CO2 capture performance of K2CO3 Bararpour ST, Karami D, Mahinpey N Fuel, 242, 124, 2019 |
9 |
Post-combustion CO2 capture with membrane process: Practical membrane performance and appropriate pressure Xu JY, Wang Z, Qiao ZH, Wu HY, Dong SL, Zhao S, Wang JX Journal of Membrane Science, 581, 195, 2019 |
10 |
연소 후 이산화탄소 포집용 흡수제의 비활성화 원인 규명 조민선, 채호진, 이수출, 조성빈, 김태영, 이철호, 백점인, 김재창 Korean Chemical Engineering Research, 57(2), 253, 2019 |