A heterogeneous copper catalyst supported on mesoporous MCM-41 was developed. The parent MCM-41 has a large pore area of over 1400 m(2)/g. Copper was chosen as the active element of catalyst and loaded into MCM-41 by adsorption at ambient temperature. The prepared catalysts were evaluated in the catalytic wet oxidation of phenol solution with an initial concentration of 1,300 ppm at 150 and 200 degreesC. The catalyst was found to be of high catalytic activity. It is also shown that the catalyst with a higher copper loading exhibits higher ability of accelerating the catalytic reaction to certain extent but reaches its constant level afterwards. (C) 2001 Elsevier Science B.V. All rights reserved
International audienceThis study presents an original approach to the improvement of advanced oxidat...
Mesoporous MCM-41 based materials containing various transition metals (Cr, Cu and V) were prepared ...
The main objective of the work is to prepare catalysts based on iron supported over activated carbon...
Heterogeneous copper catalyst was developed using the mesoporous molecular sieve MCM-41 as the catal...
Supported Cu(II) polymer catalysts were used for the catalytic oxidation of phenol at 30 degrees C a...
A heterogeneous catalyst was synthesized by supporting copper metal on MCM-41 by chemical vapor depo...
The catalytic performance of mesoporous chromium containing MCM-41 molecular sieves was investigated...
The present study investigated the efficiency of catalytic wet oxidation (CWO) for the destruction o...
A heterogeneous catalyst was synthesized by supporting copper metal on MCM-41 by chemical vapor depo...
Catalytic wet oxidation (CWO) of ferulic acid (a model lignin compound) was investigated at low temp...
Advance oxidation process was employed as a pretreat- ment of industrial wastewater. For this purpos...
Liquid phase catalytic oxidation of phenol was carried out over Cu-Ni-Al hydrotalcite at ambient tem...
Catalytic wet air oxidation is a promising alternative for the treatment of phenolic waste water whi...
In this work the catalytic performance of Cu(5%)/Al2O3 catalysts prepared by wet impregnation and ca...
Focussing on the treatment of industrial effluents with high content of organic compounds, the advan...
International audienceThis study presents an original approach to the improvement of advanced oxidat...
Mesoporous MCM-41 based materials containing various transition metals (Cr, Cu and V) were prepared ...
The main objective of the work is to prepare catalysts based on iron supported over activated carbon...
Heterogeneous copper catalyst was developed using the mesoporous molecular sieve MCM-41 as the catal...
Supported Cu(II) polymer catalysts were used for the catalytic oxidation of phenol at 30 degrees C a...
A heterogeneous catalyst was synthesized by supporting copper metal on MCM-41 by chemical vapor depo...
The catalytic performance of mesoporous chromium containing MCM-41 molecular sieves was investigated...
The present study investigated the efficiency of catalytic wet oxidation (CWO) for the destruction o...
A heterogeneous catalyst was synthesized by supporting copper metal on MCM-41 by chemical vapor depo...
Catalytic wet oxidation (CWO) of ferulic acid (a model lignin compound) was investigated at low temp...
Advance oxidation process was employed as a pretreat- ment of industrial wastewater. For this purpos...
Liquid phase catalytic oxidation of phenol was carried out over Cu-Ni-Al hydrotalcite at ambient tem...
Catalytic wet air oxidation is a promising alternative for the treatment of phenolic waste water whi...
In this work the catalytic performance of Cu(5%)/Al2O3 catalysts prepared by wet impregnation and ca...
Focussing on the treatment of industrial effluents with high content of organic compounds, the advan...
International audienceThis study presents an original approach to the improvement of advanced oxidat...
Mesoporous MCM-41 based materials containing various transition metals (Cr, Cu and V) were prepared ...
The main objective of the work is to prepare catalysts based on iron supported over activated carbon...