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Hollow fiber carbon membranes: Investigations for CO
2
capture
Xuezhong He
, May Britt Hägg
*
*
Corresponding author for this work
Research output
:
Contribution to journal
›
Article
›
peer-review
80
Scopus citations
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2
capture'. Together they form a unique fingerprint.
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Physics & Astronomy
carbon fibers
76%
hollow
64%
membranes
51%
carbon
29%
costs
20%
purity
15%
factorial design
13%
carbonization
11%
absorbents
11%
configurations
9%
gases
9%
cascades
7%
flow velocity
7%
simulation
6%
optimization
5%
scanning electron microscopy
5%
performance
3%
temperature
2%
Engineering & Materials Science
Carbon fibers
66%
Membranes
59%
Carbon
38%
Molecular sieves
14%
Membrane technology
14%
Carbonization
13%
Permeation
12%
Costs
11%
Gases
11%
Scanning electron microscopy
7%
Flow rate
7%
Chemical analysis
6%
Temperature
4%
Medicine & Life Sciences
Carbon Fiber
100%
Carbon
43%
Membranes
42%
Costs and Cost Analysis
16%
Gases
15%
Economics
13%
Temperature
6%
Technology
5%
Pressure
5%
Equipment and Supplies
5%
Chemical Compounds
Carbon Fiber
64%
Carbon Atom
33%
Simulation
17%
Gas
14%
Molecular Sieve
14%
Flow Kinetics
10%
Pressure
8%
Purity
7%