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Temperature-programmed desorption for membrane inlet mass spectrometry
Raimo Ketola
*
, Christian Grøn
, Frants Lauritsen
*
Corresponding author for this work
VTT Technical Research Centre of Finland
University of Southern Denmark
Risø DTU National Laboratory for Sustainable Energy
Research output
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Contribution to journal
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Article
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Scientific
›
peer-review
20
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Keyphrases
Adsorbent
100%
Membrane Inlet Mass Spectrometry
100%
Temperature Programmed Desorption
100%
Helium
66%
Volatile Compounds
66%
Membrane Inlet
66%
High Temperature
33%
Order of Magnitude
33%
Organic Compounds
33%
Toluene
33%
Xylene
33%
Volatile Organic Compounds
33%
Dynamic Range
33%
Air Sampling
33%
Mass Spectrometer
33%
Thin Membrane
33%
Novel Technique
33%
Fast Separation
33%
Desorbed
33%
Silicone Membrane
33%
Solid Adsorbent
33%
Trichloroethene
33%
Gaseous Samples
33%
Tetrachloroethene
33%
Limit of Detection
33%
Am(III)
33%
INIS
membranes
100%
mass spectrometry
100%
temperature programmed desorption
100%
adsorbents
57%
volatility
42%
detection
28%
helium
28%
streams
28%
organic compounds
28%
levels
14%
mixtures
14%
interactions
14%
dynamics
14%
high temperature
14%
range
14%
mass spectrometers
14%
air
14%
solids
14%
trapping
14%
toluene
14%
xylenes
14%
detection limits
14%
silicones
14%
Chemistry
Desorption
100%
Mass Spectrometry
100%
Helium
100%
Volatile Agent
100%
Adsorbent
50%
Volatile Organic Compound
50%
Organic Compound
50%
Tetrachloroethene
50%
Trichloroethene
50%
Chemical Engineering
Mass Spectrometry
100%
Temperature Programmed Desorption
100%
Trichloroethylene
50%