|
Type
|
Journal
Article
|
|
Author
|
Qian-Qian
Song
|
|
Author
|
Qing-Zhe
Jiang
|
|
URL
|
Free
Full Text Source: http://link.springer.com/article/10.1007/s12182-014-0001-x
|
|
Pages
|
1-10
|
|
Publication
|
Petroleum
Science
|
|
Date
|
2015/01/22
|
|
Abstract
|
This
study aims at determining the optimal CO2 separation technology for Chinese refineries, based on current
available technologies, by the method of comprehensive evaluation. Firstly,
according to the characteristics of flue gas from Chinese refineries,
three feasible CO2 separation technologies are selected. These are pressure
swing adsorption (PSA), chemical absorption (CA), and
membrane absorption (MA). Secondly, an economic assessment of
these three techniques is carried out in accordance with cash flow analysis.
The results show that these three techniques all have economic feasibility
and the PSA technique is the best. Finally, to further optimize the three
techniques, a two-level fuzzy comprehensive evaluation model is established,
including economic, technological, and environmental factors.
Considering all the factors, PSA is optimal for Chinese refineries, followed by CA and MA. Therefore, to reduce Chinese refineries carbon emission, it is suggested that CO2 should be captured from off-gases using PSA. |
Wednesday, February 18, 2015
Optimization of CO2 separation technologies for Chinese refineries based on a fuzzy comprehensive evaluation model
Subscribe to:
Post Comments (Atom)
No comments:
Post a Comment