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Prediction of the adsorption capacity for volatile organic compounds onto activated carbons by the Dubinin-Radushkevich-Langmuir model
Hsu Wen Hung,
Tsair Fuh Lin
Department of Environmental Engineering
Research output
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Contribution to journal
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Article
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peer-review
22
Citations (Scopus)
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Dive into the research topics of 'Prediction of the adsorption capacity for volatile organic compounds onto activated carbons by the Dubinin-Radushkevich-Langmuir model'. Together they form a unique fingerprint.
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Engineering & Materials Science
Activated carbon
100%
Volatile organic compounds
99%
Adsorption
79%
Adsorbents
49%
Isotherms
37%
Pore size
23%
Carbon
23%
Chlorinated Hydrocarbons
17%
Adsorbates
15%
Aromatic hydrocarbons
14%
Organic compounds
14%
Earth & Environmental Sciences
activated carbon
75%
volatile organic compound
74%
adsorption
55%
prediction
40%
isotherm
26%
carbon
17%
chlorinated hydrocarbon
12%
structure-activity relationship
12%
aromatic hydrocarbon
10%
parameter
10%
low pressure
9%
organic compound
9%
kinetics
6%
effect
2%
Chemical Compounds
Volatile Organic Compound
85%
Pressure
41%
Adsorption
40%
Adsorbent
30%
Isotherm
23%
Molecular Size
21%
Pore Size Distribution
20%
Carbon Atom
14%
QSAR Study
10%
Micro Porosity
9%
Pore
6%
Volume
5%
Reduction
4%