Biodegradable betaine-based aprotic task-specific ionic liquids and their application in efficient SO sub(2) absorption

Utilization of cheap and natural resources is an important topic in green chemistry. A new class of betaine-based aprotic task-specific ionic liquids (ILs), including [C sub(4)bet][TFSI], [C sub(4)bet][DCA], [C sub(4)bet][SCN], [1O2bet][TFSI], [1O2bet][DCA], [2O2bet][TFSI], and [2O2bet][DCA], has be...

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Veröffentlicht in:Green chemistry : an international journal and green chemistry resource : GC 2015-07, Vol.17 (7), p.3798-3805
Hauptverfasser: Yang, Benqun, Zhang, Qinghua, Fei, Yuqing, Zhou, Feng, Wang, Peixue, Deng, Youquan
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Sprache:eng
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Zusammenfassung:Utilization of cheap and natural resources is an important topic in green chemistry. A new class of betaine-based aprotic task-specific ionic liquids (ILs), including [C sub(4)bet][TFSI], [C sub(4)bet][DCA], [C sub(4)bet][SCN], [1O2bet][TFSI], [1O2bet][DCA], [2O2bet][TFSI], and [2O2bet][DCA], has been designed and prepared through a new ionic liquidization strategy from the renewable natural resource betaine. Their physicochemical characteristics, including spectral properties, density, viscosity, melting point, glass transition temperature, thermal stability, conductivity and electrochemical window, have been comprehensively studied. They were first applied as new absorbents for SO sub(2) capture, and [C sub(4)bet][SCN] exhibited the maximum absorption capacity of 0.93 mol sub(SO) sub(2)/mol sub( ILs) at 20 degree C and 1 atm (SO sub(2)/N sub(2) = 10% vol.) with rapid absorption rates in 21 min. Moreover, the effect of temperature, pressure, and water content on the absorption performance of SO sub(2) was investigated. The possible absorption mechanism was studied using FT-IR, NMR and quantum chemical calculation. In addition, the [C sub(4)bet][SCN] can maintain the high absorption capacity and the rapid absorption rates for 25 absorption/desorption cycles.
ISSN:1463-9262
1463-9270
DOI:10.1039/c5gc00691k