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Electrochemically Mediated Direct CO
2
Capture by a Stackable Bipolar Cell
Ali Hemmatifar
, Jin Soo Kang
,
Nil Ozbek
, Kai Jher Tan
, T. Alan Hatton
*
*
Corresponding author for this work
Massachusetts Institute of Technology
Research output
:
Contribution to journal
›
Article
›
peer-review
56
Citations (Scopus)
Overview
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2
Capture by a Stackable Bipolar Cell'. Together they form a unique fingerprint.
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Keyphrases
Atmospheric CO2 Concentration
20%
Bipolar Cell
100%
Capture System
40%
Carbon Capture
20%
Cell Construct
20%
Chemisorption
20%
CO2 Capture
100%
CO2 Concentration
20%
CO2 Emissions
20%
CO2 Molecule
20%
CO2 Release
20%
CO2 Sequestration
20%
Customizable
20%
Direct Air Capture
100%
Distributed Source
20%
Electrochemical Techniques
20%
Energy Consumption
20%
Meso
20%
Moving Forward
20%
Negative Electrode
20%
Overall Emission
20%
PH Swing
20%
Quinones
40%
Redox-active
20%
Reduction Reaction
20%
Stackable
100%
Temperature Swing
20%
Two-electron Oxygen Reduction Reaction
20%
Engineering
Bipolar Cell
100%
Capture System
66%
Carbon Capture and Storage
33%
Carbon Dioxide Capture
100%
CO2 Sequestration
33%
Electrochemical Method
33%
Feed Stream
33%
Mesoscale
33%
Negative Electrode
33%
Chemical Engineering
Carbon Dioxide
100%
Carbon Dioxide Capture
100%
Chemisorption
14%
Material Science
Carbon Dioxide
100%
Chemisorption
10%
Quinone
20%