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Improving energy efficiency for a low-temperature CO2 separation process in natural gas processing

Title
Improving energy efficiency for a low-temperature CO2 separation process in natural gas processing
Author
김진국
Keywords
Energy efficiency; CO2 separation; Process design; Process simulation
Issue Date
2021-01
Publisher
PERGAMON-ELSEVIER SCIENCE LTD
Citation
ENERGY, v. 214, article no. 118844
Abstract
Conventional amine sweetening process is limited to treating gas with high content of CO2, due to significant energy demand for the regeneration of solvent and the compression of CO2 product for Enhanced Oil Recovery (EOR) or sequestration. Although distillation processes operating at sub-ambient conditions have been regarded as an economic and energy-efficient alternative to amine sweetening process, it is not straightforward to materialize the full benefits of the low temperature distillation process in practice because of complex design interactions existed. The distillation process for carbon dioxide separation operated at sub-ambient conditions are modeled with commercial simulator Aspen HYSYS (R). A range of thermodynamic packages are screened for the selection of the most appropriate one to be used, while the validation of the process modeling is made with reference data. Understanding on the dependence of energy cost on the key design and operating variables is obtained with sensitivity studies, with which energy-efficient selection of column configurations and operating conditions throughout the process is made. Suggestion is also made for improving energy efficiency for the process without compromising separation process, by setting different operating pressure and introducing new configuration involving stream splitting and merging.
URI
https://www.sciencedirect.com/science/article/pii/S0360544220319514?via%3Dihubhttps://repository.hanyang.ac.kr/handle/20.500.11754/175485
ISSN
0360-5442; 1873-6785
DOI
10.1016/j.energy.2020.118844
Appears in Collections:
COLLEGE OF ENGINEERING[S](공과대학) > CHEMICAL ENGINEERING(화학공학과) > Articles
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