Solvent Development for Post-Combustion CO2 Capture: Recent Development and Opportunities
Chemical absorption is widely regarded as the most promising technology for post-combustion CO2 capture from large industrial emission sources with CO2 separation from natural gas using aqueous amine solvent system having been applied since the 1930s. The use of monoethanolamine (MEA) in CO2 absorpt...
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2018-01-01
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Series: | MATEC Web of Conferences |
Online Access: | https://doi.org/10.1051/matecconf/201815603015 |
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doaj-d422c1a1a8884ac38a6590e033bf60b52021-03-02T09:00:26ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-011560301510.1051/matecconf/201815603015matecconf_rsce2018_03015Solvent Development for Post-Combustion CO2 Capture: Recent Development and OpportunitiesRaksajati AnggitHo MinhWiley DianneChemical absorption is widely regarded as the most promising technology for post-combustion CO2 capture from large industrial emission sources with CO2 separation from natural gas using aqueous amine solvent system having been applied since the 1930s. The use of monoethanolamine (MEA) in CO2 absorption system possesses several drawbacks, such as high regeneration energy, high solvent loss, and high corrosion tendency. Various solvents have been developed for post-combustion CO2 capture application including the development of aqueous solvents and phase-change solvents. Some of these alternate solvents have been reported to have better solvent properties, which could improve the CO2 absorption system performance. This paper reviews key parameters involved in the design improvement of several chemical absorption process systems. In addition, some novel solvent systems are also discussed, for example encapsulated solvents systems. Some of the key solvent parameters that affect the capture performance, such as heat of reaction, absorption rate, solvent working capacity, solvent concentration, and solvent stability, are discussed in this paper, particularly in relation to the economic viability of the capture process. In addition, some guidelines for the future solvent development are discussed.https://doi.org/10.1051/matecconf/201815603015 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Raksajati Anggit Ho Minh Wiley Dianne |
spellingShingle |
Raksajati Anggit Ho Minh Wiley Dianne Solvent Development for Post-Combustion CO2 Capture: Recent Development and Opportunities MATEC Web of Conferences |
author_facet |
Raksajati Anggit Ho Minh Wiley Dianne |
author_sort |
Raksajati Anggit |
title |
Solvent Development for Post-Combustion CO2 Capture: Recent Development and Opportunities |
title_short |
Solvent Development for Post-Combustion CO2 Capture: Recent Development and Opportunities |
title_full |
Solvent Development for Post-Combustion CO2 Capture: Recent Development and Opportunities |
title_fullStr |
Solvent Development for Post-Combustion CO2 Capture: Recent Development and Opportunities |
title_full_unstemmed |
Solvent Development for Post-Combustion CO2 Capture: Recent Development and Opportunities |
title_sort |
solvent development for post-combustion co2 capture: recent development and opportunities |
publisher |
EDP Sciences |
series |
MATEC Web of Conferences |
issn |
2261-236X |
publishDate |
2018-01-01 |
description |
Chemical absorption is widely regarded as the most promising technology for post-combustion CO2 capture from large industrial emission sources with CO2 separation from natural gas using aqueous amine solvent system having been applied since the 1930s. The use of monoethanolamine (MEA) in CO2 absorption system possesses several drawbacks, such as high regeneration energy, high solvent loss, and high corrosion tendency. Various solvents have been developed for post-combustion CO2 capture application including the development of aqueous solvents and phase-change solvents. Some of these alternate solvents have been reported to have better solvent properties, which could improve the CO2 absorption system performance. This paper reviews key parameters involved in the design improvement of several chemical absorption process systems. In addition, some novel solvent systems are also discussed, for example encapsulated solvents systems. Some of the key solvent parameters that affect the capture performance, such as heat of reaction, absorption rate, solvent working capacity, solvent concentration, and solvent stability, are discussed in this paper, particularly in relation to the economic viability of the capture process. In addition, some guidelines for the future solvent development are discussed. |
url |
https://doi.org/10.1051/matecconf/201815603015 |
work_keys_str_mv |
AT raksajatianggit solventdevelopmentforpostcombustionco2capturerecentdevelopmentandopportunities AT hominh solventdevelopmentforpostcombustionco2capturerecentdevelopmentandopportunities AT wileydianne solventdevelopmentforpostcombustionco2capturerecentdevelopmentandopportunities |
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