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ndltd-NEU--neu-3494902021-05-26T05:10:05ZAmine-pillared nanosheet adsorbents for CO₂ capture applicationsAmine-functionalized solid adsorbents have gained attention within the last decade for their application in carbon dioxide capture, due to their many advantages such as low energy cost for regeneration, tunable structure, elimination of corrosion problems, and additional advantages. However, one of the challenges facing this technology is to accomplish both high CO<sub>2</sub> capture capacity along with high CO<sub>2</sub> diffusion rates concurrently. Current amine-based solid sorbents such as porous materials similar to SBA-15 have large pores diffusion entering molecules; however, the pores become clogged upon amine inclusion.http://hdl.handle.net/2047/d20128334
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Amine-functionalized solid adsorbents have gained attention within the last decade for their application in carbon dioxide capture, due to their many advantages such as low energy cost for regeneration, tunable structure, elimination of corrosion problems, and additional advantages. However, one of the challenges facing this technology is to accomplish both high CO<sub>2</sub> capture capacity along with high CO<sub>2</sub> diffusion rates
concurrently. Current amine-based solid sorbents such as porous materials similar to SBA-15 have large pores diffusion entering molecules; however, the pores become clogged upon amine inclusion.
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Amine-pillared nanosheet adsorbents for CO₂ capture applications
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Amine-pillared nanosheet adsorbents for CO₂ capture applications
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Amine-pillared nanosheet adsorbents for CO₂ capture applications
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title_full |
Amine-pillared nanosheet adsorbents for CO₂ capture applications
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Amine-pillared nanosheet adsorbents for CO₂ capture applications
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Amine-pillared nanosheet adsorbents for CO₂ capture applications
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amine-pillared nanosheet adsorbents for co₂ capture applications
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http://hdl.handle.net/2047/d20128334
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1719406276478238720
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