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Catalytic ozonation not relying on hydroxyl radical oxidation: A selective and competitive reaction process related to metal-carboxylate complexes
Tao Zhang, Jean-Philippe Croue
King Abdullah University of Science and Technology
Biological, Environmental Science and Engineering
Environmental Science and Engineering
Research output
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Contribution to journal
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Article
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peer-review
49
Scopus citations
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Dive into the research topics of 'Catalytic ozonation not relying on hydroxyl radical oxidation: A selective and competitive reaction process related to metal-carboxylate complexes'. Together they form a unique fingerprint.
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Chemistry
Probe
100%
Ozonation
66%
Oxalate
44%
Pyruvate
44%
Procedure
44%
Surface
44%
Reaction Selectivity
33%
Degradation
33%
Acetate
22%
Hydroxyl Radical
22%
Succinate
22%
Metal
22%
Structure
22%
Oxidation Reaction
11%
Aqueous Solution
11%
Ozone
11%
Copper(II) Oxide
11%
Molecule
11%
Mixture
11%
Rate
11%
Number
11%
Chemical Reaction
11%
Group
11%
Pharmacology, Toxicology and Pharmaceutical Science
Carboxylate
55%
Oxalate
44%
Pyruvic Acid
44%
Metal
33%
Hydroxyl Radical
22%
Potassium Acetate
22%
Malonate
22%
Succinic Acid
22%
Copper
22%
Adsorption
11%
Organic Compound
11%
Ozone
11%
Citrate
11%
Material Science
Surface
44%
Adsorption
44%
Complexation
33%
Catalyst
33%
Solution
11%
Cerium Oxide
11%
Metal Surface
11%
Mixture
11%
Chemical Engineering
Carboxylic Acid
55%
Copper
22%
Ozone
11%
Organic Compound
11%
Immunology and Microbiology
Ozonation
33%