1 |
A comparative process simulation study of Ca-Cu looping involving post-combustion CO2 capture Wang XY, Zhao HB, Su MZ Chinese Journal of Chemical Engineering, 28(9), 2382, 2020 |
2 |
Integrated Adsorbent Process Optimization for Minimum Cost of Electricity Including Carbon Capture by a VSA Process Khurana M, Farooq S AIChE Journal, 65(1), 184, 2019 |
3 |
Dynamic modeling of a dual fluidized-bed system with the circulation of dry sorbent for CO2 capture Ju Y, Lee CH Applied Energy, 241, 640, 2019 |
4 |
Robust optimization of a post-combustion CO2 capture absorber column under process uncertainty Cerrillo-Briones IM, Ricardez-Sandoval LA Chemical Engineering Research & Design, 144, 386, 2019 |
5 |
Analysis of a rich vapor compression method for an ammonia-based CO2 capture process and freshwater production using membrane distillation technology Ullah A, Soomro MI, Kim WS Chemical Engineering Research & Design, 147, 244, 2019 |
6 |
연소 후 이산화탄소 포집용 흡수제의 비활성화 원인 규명 조민선, 채호진, 이수출, 조성빈, 김태영, 이철호, 백점인, 김재창 Korean Chemical Engineering Research, 57(2), 253, 2019 |
7 |
Process integration and design for maximizing energy efficiency of a coal-fired power plant integrated with amine-based CO2 capture process Oh SY, Yun S, Kim JK Applied Energy, 216, 311, 2018 |
8 |
Techno-economic analysis of biogas upgrading via amine scrubber, carbon capture and ex-situ methanation Vo TTQ, Wall DM, Ring D, Rajendran K, Murphy JD Applied Energy, 212, 1191, 2018 |
9 |
A systematic procedure for process energy evaluation for post combustion CO2 capture: Case study of two novel strong bicarbonate-forming solvents Tobiesen FA, Haugen G, Hartono A Applied Energy, 211, 161, 2018 |
10 |
Study of intercooling for rotating packed bed absorbers in intensified solvent-based CO2 capture process Oko E, Ramshaw C, Wang MH Applied Energy, 223, 302, 2018 |