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Combined Experimental and Theoretical Study of the Competitive Absorption of CO 2 and NO 2 by a Superbase Ionic Liquid
A superbase ionic liquid (IL), trihexyltetradecylphosphonium benzimidazolide ([P ][Benzim]), is investigated for the capture of CO in the presence of NO impurities. The effect of the waste gas stream contaminant on the ability of the IL to absorb simultaneously CO is demonstrated using novel measure...
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Published in: | ACS sustainable chemistry & engineering 2021-06, Vol.9 (22), p.7578-7586 |
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Main Authors: | , , , , , , , |
Format: | Article |
Language: | English |
Citations: | Items that this one cites Items that cite this one |
Online Access: | Get full text |
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Summary: | A superbase ionic liquid (IL), trihexyltetradecylphosphonium benzimidazolide ([P
][Benzim]), is investigated for the capture of CO
in the presence of NO
impurities. The effect of the waste gas stream contaminant on the ability of the IL to absorb simultaneously CO
is demonstrated using novel measurement techniques, including a mass spectrometry breakthrough method and
infrared spectroscopy. The findings show that the presence of an industrially relevant concentration of NO
in a combined feed with CO
has the effect of reducing the capacity of the IL to absorb CO
efficiently by ∼60% after 10 absorption-desorption cycles. This finding is supported by physical property analysis (viscosity,
H and
C NMR, and X-ray photoelectron spectroscopy) and spectroscopic infrared characterization, in addition to density functional theory (DFT) calculations, to determine the structure of the IL-NO
complex. The results are presented in comparison with another flue gas component, NO, demonstrating that the absorption of NO
is more favorable, thereby hindering the ability of the IL to absorb CO
. Significantly, this work aids understanding of the effects that individual components of flue gas have on CO
capture sorbents, through studying a contaminant that has received limited interest previously. |
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ISSN: | 2168-0485 2168-0485 |
DOI: | 10.1021/acssuschemeng.1c01451 |