Ferric trisacetylacetonate has been deposited within the zeolite MCM-41 and the product characterized by XRD and IR. In water at pH 7 it catalyzes the oxidation of phenol by H2O2, giving 58% conversion in 1 h at 50 degrees C: products are catechol (66%), hydroquinone (27%) and benzoquinone (7%). Other oxidants and solvents are much less effective. UV-VIS spectra suggest a radical substitution mechanism, and a pollution-free process for phenol hydroxylation is now possible
Cobalt(II), Copper(II) and Zinc (II) complexes of 2-methylbenzimidazole (Mebzlh) encapsulated in the...
The catalytic performance of mesoporous chromium containing MCM-41 molecular sieves was investigated...
The oxidation and hydroxylation of phenols to dihydroxy aromatic compounds have been investigated us...
MCM-41 mesoporous molecular sieve and iron(II)-Phen/MCM-41 have been prepared and characterized by X...
Phenol and substituted phenols are toxic organic pollutants commonly present in industrial water str...
International audienceThis letter presents an original approach to the treatment of phenolic aqueous...
Iron(II)-8-quinolino/MCM-41 is prepared. Its catalysis is studied in phenol hydroxylation using H2O2...
Hydroxylation reaction of phenol into diphenol, such as hydroquinone and catechol, has a great role ...
Reaction of phenol with hydrogen peroxide over H-MFI, Fe-MFI, H-BEA, Fe-BEA and TS-1 zeolite catalys...
Phenol with contained in waste water has to be reduced and it could be done by oxygen. In order to i...
Two types of iron-containing zeolites with different surface hydrophobicity, Fe-ZSM5 (SiO2/Al2O3 = 2...
Phenol hydroxylation catalyzed by iron(II)-1,10-phenanthroline is investigated through kinetics, ESR...
Wet peroxide oxidation (WPO) of phenol is an effective means for the production of diphenols, which ...
The necessity to remove organic pollutants from the industrial wastewater streams has forced the dev...
This study focused on the investigation on the efficiency of sodium percarbonate (SPC) and sodium pe...
Cobalt(II), Copper(II) and Zinc (II) complexes of 2-methylbenzimidazole (Mebzlh) encapsulated in the...
The catalytic performance of mesoporous chromium containing MCM-41 molecular sieves was investigated...
The oxidation and hydroxylation of phenols to dihydroxy aromatic compounds have been investigated us...
MCM-41 mesoporous molecular sieve and iron(II)-Phen/MCM-41 have been prepared and characterized by X...
Phenol and substituted phenols are toxic organic pollutants commonly present in industrial water str...
International audienceThis letter presents an original approach to the treatment of phenolic aqueous...
Iron(II)-8-quinolino/MCM-41 is prepared. Its catalysis is studied in phenol hydroxylation using H2O2...
Hydroxylation reaction of phenol into diphenol, such as hydroquinone and catechol, has a great role ...
Reaction of phenol with hydrogen peroxide over H-MFI, Fe-MFI, H-BEA, Fe-BEA and TS-1 zeolite catalys...
Phenol with contained in waste water has to be reduced and it could be done by oxygen. In order to i...
Two types of iron-containing zeolites with different surface hydrophobicity, Fe-ZSM5 (SiO2/Al2O3 = 2...
Phenol hydroxylation catalyzed by iron(II)-1,10-phenanthroline is investigated through kinetics, ESR...
Wet peroxide oxidation (WPO) of phenol is an effective means for the production of diphenols, which ...
The necessity to remove organic pollutants from the industrial wastewater streams has forced the dev...
This study focused on the investigation on the efficiency of sodium percarbonate (SPC) and sodium pe...
Cobalt(II), Copper(II) and Zinc (II) complexes of 2-methylbenzimidazole (Mebzlh) encapsulated in the...
The catalytic performance of mesoporous chromium containing MCM-41 molecular sieves was investigated...
The oxidation and hydroxylation of phenols to dihydroxy aromatic compounds have been investigated us...