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Theoretical model for the evaporation loss of PM
2.5
during filter sampling
Chun Nan Liu
, Sih Fan Lin
, Chuen-Tinn Tsai
*
, Yueh Chuen Wu
, Chung Fang Chen
*
Corresponding author for this work
Institute of Environmental Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
42
Scopus citations
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2.5
during filter sampling'. Together they form a unique fingerprint.
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Keyphrases
Additional Losses
25%
Ambient Temperature
25%
Average Absolute Difference
25%
Chemical Interaction
25%
Chloride
25%
Evaporation Loss
100%
Filter Sampling
100%
Humidity
50%
Increased Temperature
25%
Micro-Orifice Uniform Deposit Impactor (MOUDI)
25%
Nearly Neutral
25%
Neutral Condition
25%
Neutral pH
25%
Nitrate
25%
Particle Ratios
50%
Particulate Matter 2.5 (PM2.5)
100%
PM2.5 Aerosols
25%
PM2.5 Concentration
75%
PM2.5 Particles
50%
Strong Acid
25%
Temperature-humidity Index
25%
Engineering
Absolute Difference
12%
Additional Loss
12%
Collected Particle
12%
Increasing Temperature
12%
Neutral Condition
12%
Particular Matter 2.5
100%
Relative Humidity
25%
Size Range
12%
Strong Acid
12%
Earth and Planetary Sciences
Particular Matter 2.5
100%
Relative Humidity
25%
Physics
Theoretical Model
100%
Chemical Engineering
Particular Matter 2.5
100%