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April 12, 2026AIChE Journal2 citations

Carbonyl‐functionalized hydrophobic ionic liquids for the efficient capture and conversion of H 2 S

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CZChengqi ZhaoKHKeyi HuangZXZixuan Xu

Key Points

  • To develop carbonyl-functionalized hydrophobic ionic liquids for efficient capture and conversion of H2S.
  • Designed and tested aprotic and protic carbonyl-functionalized ionic liquids.
  • Measured H2S solubility and selectivity in [TMACAC][Tf2N] under controlled conditions.
  • Calculated thermodynamic parameters for solubility.
  • Conducted breakthrough curve analysis for sequential component separation.
  • Utilized CHILs as catalysts for converting H2S to thiols or thioethers.
  • [TMACAC][Tf2N] showed H2S solubility of 2.286 mol/mol and H2S/CO2 selectivity of 35.7 at specific conditions.
  • Thermodynamic parameters were estimated using solubility measurements and Krichevsky-Kasarnovsky equation.
  • Successful demonstration of sequential separation of natural gas components.
  • Effective conversion of H2S to thiols or thioethers with self-separation of products.

Abstract

Abstract In this study, aprotic and protic carbonyl‐functionalized hydrophobic ionic liquids (CHILs) were designed for the selective separation and conversion of H 2 S. Impressively, TMACACTf 2 N exhibited a remarkable H 2 S solubility of 2.286 mol/mol and the H 2 S/CO 2 selectivity of 35.7 at 313.2 K and 1.0 bar H 2 S partial pressure, exceeding all the reported absorbents under experimental conditions. The thermodynamic parameters for the dissolution of H 2 S, CO 2 , and CH 4 in TMACACTf 2 N were calculated using variable temperature measurements of solubility and the Krichevsky–Kasarnovsky (K–K) equation. The breakthrough curve verifies the possibility of sequential separation of the components in natural gas. Furthermore, CHILs were used as catalysts for the conversion of H 2 S to thiols or thioethers by α, β‐unsaturated carboxylates, and the self‐separation of the products and catalysts was realized. Therefore, these CHILs have obvious superior absorption performance and provide a new strategy for desulfurization of natural gas and utilization of separated H 2 S.

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Cite This Study

Zhao et al. (2026) studied this question.

synapsesocial.com/papers/69db38274fe01fead37c64d8https://doi.org/10.1002/aic.70385
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