1 |
Recent trend in thermal catalytic low temperature CO2 methanation: A critical review Lee WJ, Li CE, Prajitno H, Yoo J, Patel J, Yang YX, Lim S Catalysis Today, 368, 2, 2021 |
2 |
Optimization of CCUS supply chains in the UK: A strategic role for emissions reduction Leonzio G, Bogle D, Foscolo PU, Zondervan E Chemical Engineering Research & Design, 155, 211, 2020 |
3 |
Design under uncertainty of carbon capture, utilization and storage infrastructure considering profit, environmental impact, and risk preference Lee SY, Lee IB, Han J Applied Energy, 238, 34, 2019 |
4 |
Current situation of carbon dioxide capture, storage, and enhanced oil recovery in the oil and gas industry Adu E, Zhang YD, Liu DH Canadian Journal of Chemical Engineering, 97(5), 1048, 2019 |
5 |
An outlook towards 2030: Optimization and design of a CCUS supply chain in Germany Leonzio G, Foscolo PU, Zondervan E Computers & Chemical Engineering, 125, 499, 2019 |
6 |
How can carbon capture utilization and storage be incentivized in China? A perspective based on the 45Q tax credit provisions Fan JL, Xu M, Yang L, Zhang X, Li FY Energy Policy, 132, 1229, 2019 |
7 |
Sustainable development of Turkey: Deployment of geothermal resources for carbon capture, utilization, and storage Kirli MS, Fahrioglu M Energy Sources Part A-recovery Utilization and Environmental Effects, 41(14), 1739, 2019 |
8 |
Assessing the corrosion product scale formation characteristics of X80 steel in supercritical CO2-H(2)o binary systems with flue gas and NaCl impurities relevant to CCUS technology Li C, Xiang Y, Song CC, Ji ZL Journal of Supercritical Fluids, 146, 107, 2019 |
9 |
DDR-type zeolite membrane: A novel CO2 separation technology for enhanced oil recovery Okazaki J, Hasegawa H, Chikamatsu N, Yajima K, Shimizu K, Niino M Separation and Purification Technology, 218, 200, 2019 |
10 |
An optimization model for carbon capture utilization and storage supply chain: A case study in Northeastern China Zhang S, Liu LL, Zhang L, Zhuang Y, Du J Applied Energy, 231, 194, 2018 |