IONIC LIQUID MEMBRANE (ILM) FOR CO2 CAPTURE: PROSPECT AND CHALLENGES
The absorption of carbon dioxide from industrial gases (i.e. exhaust gas and natural gas) demands technological improvements to reduce the environmental impact of acid gas emissions. Recently, ionic liquids (ILs) have emerged as promising candidates for replacing amine-based solvents due to their lo...
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id-itb.:510672020-09-26T12:05:16ZIONIC LIQUID MEMBRANE (ILM) FOR CO2 CAPTURE: PROSPECT AND CHALLENGES Alamsyah Indonesia Final Project carbon dioxide absorption; ionic liquid; ionic liquid membrane; CO2 selectivity; ionic liquid membrane contactor INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/51067 The absorption of carbon dioxide from industrial gases (i.e. exhaust gas and natural gas) demands technological improvements to reduce the environmental impact of acid gas emissions. Recently, ionic liquids (ILs) have emerged as promising candidates for replacing amine-based solvents due to their low vapor pressure (near zero), high stability, and their unique structure and properties. Functionalized IL is considered superior in terms of ease of regeneration as well as high absorption capacity and selectivity to CO2. Combining functionalized IL with membrane processes has opened new horizons in CO2 absorption technology. This review comprehensively summarizes the latest developments in the application of ionic liquid (IL) and ionic liquid membrane (ILM) for CO2 absorption, in particular the Poly-Ionic Liquid Membrane (PILM), Polymer-IL Composite Membrane, and Ionic Liquid Membrane Contactor (ILMC). text |
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The absorption of carbon dioxide from industrial gases (i.e. exhaust gas and natural gas) demands technological improvements to reduce the environmental impact of acid gas emissions. Recently, ionic liquids (ILs) have emerged as promising candidates for replacing amine-based solvents due to their low vapor pressure (near zero), high stability, and their unique structure and properties. Functionalized IL is considered superior in terms of ease of regeneration as well as high absorption capacity and selectivity to CO2. Combining functionalized IL with membrane processes has opened new horizons in CO2 absorption technology. This review comprehensively summarizes the latest developments in the application of ionic liquid (IL) and ionic liquid membrane (ILM) for CO2 absorption, in particular the Poly-Ionic Liquid Membrane (PILM), Polymer-IL Composite Membrane, and Ionic Liquid Membrane Contactor (ILMC).
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Alamsyah IONIC LIQUID MEMBRANE (ILM) FOR CO2 CAPTURE: PROSPECT AND CHALLENGES |
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title |
IONIC LIQUID MEMBRANE (ILM) FOR CO2 CAPTURE: PROSPECT AND CHALLENGES |
title_short |
IONIC LIQUID MEMBRANE (ILM) FOR CO2 CAPTURE: PROSPECT AND CHALLENGES |
title_full |
IONIC LIQUID MEMBRANE (ILM) FOR CO2 CAPTURE: PROSPECT AND CHALLENGES |
title_fullStr |
IONIC LIQUID MEMBRANE (ILM) FOR CO2 CAPTURE: PROSPECT AND CHALLENGES |
title_full_unstemmed |
IONIC LIQUID MEMBRANE (ILM) FOR CO2 CAPTURE: PROSPECT AND CHALLENGES |
title_sort |
ionic liquid membrane (ilm) for co2 capture: prospect and challenges |
url |
https://digilib.itb.ac.id/gdl/view/51067 |
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