Carbon Dioxide Separation from Flue Gases: A Technological Review Emphasizing Reduction in Greenhouse Gas Emissions
Разделение диоксида углерода из дымовых газов: технологический обзор с акцентом на сокращение выбросов парниковых газов
2014-01-01
SCID: 54.1/msjfp4ug
Discuss with AI
carbon capture and storagecarbon dioxide separationflue gasmembrane separationpost-combustion capture
Figures from the paper
Abstract (AI)
Increasing concentrations of greenhouse gases (GHGs) such as CO2 in the atmosphere is a global warming. Human activities are a major cause of increased CO2 concentration in atmosphere, as in recent decade, two-third of greenhouse effect was caused by human activities. Carbon capture and storage (CCS) is a major strategy that can be used to reduce GHGs emission. There are three methods for CCS: pre-combustion capture, oxy-fuel process, and post-combustion capture. Among them, post-combustion capture is the most important one because it offers flexibility and it can be easily added to the operational units. Various technologies are used for CO2 capture, some of them include: absorption, adsorption, cryogenic distillation, and membrane separation. In this paper, various technologies for post-combustion are compared and the best condition for using each technology is identified.
Key Findings
1
Carbon capture and storage is identified as a major strategy for reducing greenhouse-gas emissions caused by rising atmospheric CO2 concentrations.
2
Post-combustion capture is emphasized as the most important CCS approach because it is flexible and can be added relatively easily to existing operational units.
3
The paper identifies the conditions under which each reviewed CO2-separation technology is most suitable for flue-gas treatment.
4
The review compares post-combustion CO2-capture technologies, including absorption, adsorption, cryogenic distillation, and membrane separation.
Research Object
post-combustion CO2 separation from flue gases
Research Subject
comparative performance and optimal application conditions of absorption, adsorption, cryogenic distillation, and membrane separation technologies for reducing greenhouse-gas emissions
Publication Details
Publication Date
2014-01-01
Journal
Publisher
ISSN
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest