Development of new membranes based on ionic liquid materials for gas separation
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Summary
Thesis Layout and Thesis Guidelines are provided to help students choose the layout they want to use for their thesis work.
- Published
- 2014-12-01
- Cited by
- 1
- References
- 69
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:92813760
References
- I and i
- Solubility of CO2, CH4, C2H6, C2H4, O2, and N2 in 1-hexyl-3-methylpyridinium bis(trifluoromethylsulfonyl)imide: comparison to other ionic liquids.
- Diffusivities of Gases in Room-Temperature Ionic Liquids: Data and Correlations Obtained Using a Lag-Time Technique
- Review on the Use of Ionic Liquids (ILs) as Alternative Fluids for CO2 Capture and Natural Gas Sweetening
- Examination of the Potential of Ionic Liquids for Gas Separations
- The solution-diffusion model: a review
- Determination of the upper limits, benchmarks, and critical properties for gas separations using stabilized room temperature ionic liquid membranes (SILMs) for the purpose of guiding future research
- Effect of water in ionic liquid on the separation performance of supported ionic liquid membrane for CO2/N2
- High temperature separation of carbon dioxide/hydrogen mixtures using facilitated supported ionic liquid membranes !
- CO2 separation facilitated by task-specific ionic liquids using a supported liquid membrane
- Anion effects on gas solubility in ionic liquids.
- Improving carbon dioxide solubility in ionic liquids.
- Bulk-fluid solubility and membrane feasibility of rmim-based room-temperature ionic liquids
- Ideal gas solubilities and solubility selectivities in a binary mixture of room-temperature ionic liquids.
- Ionic liquids for CO2 capture—Development and progress
- Experimental Measurement of the Solubility and Diffusivity of CO2 in Room-Temperature Ionic Liquids Using a Transient Thin-Liquid-Film Method
- Separation of CO2 from the CO2/N2 mixed gas through ionic liquid membranes at the high feed concentration
- Predictive models for permeability and diffusivity of CH4 through imidazolium-based supported ionic liquid membranes
- Why Is CO2 so soluble in imidazolium-based ionic liquids?
- Low-Viscosity Triethylbutylammonium Acetate as a Task-Specific Ionic Liquid for Reversible CO2 Absorption
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