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Direct Air Capture of Carbon Dioxide via Ambient Alkaline Oxide Looping
Noah McQueen
, Peter Kelemen
, Gregory Dipple
,
Phil Renforth
, Wade McGillis
, Dan Nothaft
, Maxwell Pisciotta
, Samuel Layding
Institute of Mechanical, Process & Energy Engineering
School of Engineering & Physical Sciences
Research output
:
Contribution to conference
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Paper
›
peer-review
Overview
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Engineering
Experimental Result
100%
Carbonation
100%
Outdoor Condition
100%
Metrics
100%
Carbon Dioxide Capture
100%
Climate Change
100%
Temperature Reactor
100%
Silicon Dioxide
100%
Climatic Change
100%
INIS
capture
100%
carbon dioxide
100%
air
100%
oxides
100%
cost
27%
solids
27%
atmospheres
27%
liquids
18%
removal
18%
uptake
18%
tea
18%
calcium oxides
18%
potassium hydroxides
18%
magnesium oxides
18%
carbonates
18%
calcination
18%
solutions
9%
units
9%
solvents
9%
storage
9%
climatic change
9%
economics
9%
nanostructures
9%
reactors
9%
lifetime
9%
silica
9%
calcium carbonates
9%
amines
9%
atmospherics
9%
metrics
9%
streams
9%
verification
9%
purity
9%
outdoors
9%
regeneration
9%
carbonate minerals
9%
magnesium carbonates
9%
Chemical Engineering
Carbon Dioxide
100%
Calcination
22%
Magnesia
22%
Potassium Hydroxide
11%
Calcium Carbonate
11%
Carbonate Mineral
11%
Direct Air Capture Methods
11%
Carbon Dioxide Capture
11%
High Purity CO2
11%