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| Content Provider | Springer Nature Link |
|---|---|
| Author | Mumford, Kathryn A. Wu, Yue Smith, Kathryn H. Stevens, Geoffrey W. |
| Copyright Year | 2015 |
| Abstract | Currently, a large proportion of global fossil fuel emissions originate from large point sources such as power generation or industrial processes. This trend is expected to continue until the year 2030 and beyond. Carbon capture and storage (CCS), a straightforward and effective carbon reduction approach, will play a significant role in reducing emissions from these sources into the future if atmospheric carbon dioxide (CO$_{2}$) emissions are to be stabilized and global warming limited below a threshold of 2 °C. This review provides an update on the status of large scale integrated CCS technologies using solvent absorption for CO$_{2}$ capture and provides an insight into the development of new solvents, including advanced amine solvents, amino acid salts, carbonate systems, aqueous ammonia, immiscible liquids and ionic liquids. These proposed new solvents aim to reduce the overall cost CO$_{2}$ capture by improving the CO$_{2}$ absorption rate, CO$_{2}$ capture capacity, thereby reducing equipment size and decreasing the energy required for solvent regeneration. |
| Starting Page | 125 |
| Ending Page | 141 |
| Page Count | 17 |
| File Format | |
| ISSN | 20950179 |
| Journal | Frontiers of Chemical Engineering in China |
| Volume Number | 9 |
| Issue Number | 2 |
| e-ISSN | 20950187 |
| Language | English |
| Publisher | Higher Education Press |
| Publisher Date | 2015-06-22 |
| Publisher Institution | Chinese Universities |
| Publisher Place | Beijing |
| Access Restriction | One Nation One Subscription (ONOS) |
| Subject Keyword | carbon dioxide carbon capture solvent absorption large scale Industrial Chemistry/Chemical Engineering Nanotechnology |
| Content Type | Text |
| Resource Type | Article |
| Subject | Chemical Engineering |
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