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Photocatalytic treatment of phenol with visible light irradiation
Tuǧba Ölmez
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Corresponding author for this work
Department of Environmental Engineering
Research output
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Contribution to journal
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Article
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peer-review
4
Citations (Scopus)
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Keyphrases
Visible Light Irradiation
100%
Photocatalytic Treatment
100%
Rutile
75%
TiO2 Catalyst
75%
Ferrous Iron
50%
Photocatalyst
50%
UV Radiation
50%
Degradation Rate
50%
S-doping
50%
N-doped Catalysts
50%
Doped Catalyst
50%
S-doped TiO2
50%
UV Light Source
25%
Removal Efficiency
25%
Visible Light
25%
Frequency of Use
25%
Reaction Time
25%
TOC Removal
25%
Further Application
25%
Industrial Processes
25%
Photocatalytic Degradation
25%
Phenolic Substances
25%
Pollution Reduction
25%
Phenol Degradation
25%
Phenol Solution
25%
Aqueous Flow
25%
Wide Gap
25%
Refractory Compounds
25%
Visible Light Region
25%
Oxidative Decomposition
25%
N-doped TiO2
25%
Engineering
Mols
100%
Removal Efficiency
100%
Mineralisation
100%
Photocatalysts
100%
Degradation Rate
100%
Great Importance
50%
Past Decade
50%
Light Source
50%
Phenolics
50%
Chemistry
Light Irradiation
100%
Photocatalytic
100%
Visible Spectrum
100%
Phenol
100%
Titanium Dioxide
66%
Degradation Rate
33%
Titanium Oxide
33%
Photocatalyst
33%
Ultraviolet Irradiation
16%
Oxidative Decomposition
16%
Chemical Engineering
Phenol
100%
Titanium Dioxide
80%
Titanium Oxide
40%
Photocatalytic Degradation
20%
Material Science
Titanium Dioxide
100%
Titanium Oxide
50%
Photocatalysts
50%