The Fenton process coupled to photosonolysis (UV light and Us), using Fe2O3 catalyst supported on Al2O3, was used to oxidize a model pollutant like acid green 50 textile dye (AG50). Dye degradation was followed by AG50 concentration decay analyses. It was observed that parameters like iron content on a fixed amount of catalyst supporting material, catalyst annealing temperature, initial dye concentration, and the solution pH influence the overall treatment efficiency. High removal efficiencies of the model pollutant are achieved. The stability and reusability tests of the Fe2O3 catalyst show that the catalyst can be used up to three cycles achieving high discoloration. Thus, this catalyst is highly efficient for the degradation of AG50 in t...
In this study, real wastewater from a dyeing factory and previously treated by biological processes ...
Advanced oxidation processes (AOPs) are projected as relatively cleaner technologies for the abateme...
The textile industry is responsible for the generation of highly colored effluents, which need adequ...
The degradation and decolorization of direct dye (Everdirect supra turquoise blue FBL), acidic dye (...
A photo-Fenton process using a local iron oxide as a natural catalyst was compared to Fenton and UV/...
A photo-Fenton process using a local iron oxide as a natural catalyst was compared to Fenton and UV/...
Degradation of 20 different dyes in aqueous solutions by the Fenton process was performed. These dye...
This work focuses on the use of Fenton reagent and UV-irradiation, in a lab-scale experiment, for th...
The present study aimed to evaluate the applicability of photo-Fenton process for the degradation of...
Les procédés dits d'oxydation avancés (POA) permettent la dégradation totale (minéralisation) en mil...
This study provides a comparison between classic and modified (i.e., ultrasound) Fenton process on t...
In this study, the oxidative decolorization of C.I. reactive yellow 145 (RY 145) from synthetic tex...
Advanced Fenton process (AFP) using zero valent metallic iron (ZVMI) is studied as a potential techn...
Textile industry wastewaters are complex and hazardous because of the variety of dyestuffs and chemi...
The application of homogeneous photo-Fenton water treatment was tested for the degradation of dyestu...
In this study, real wastewater from a dyeing factory and previously treated by biological processes ...
Advanced oxidation processes (AOPs) are projected as relatively cleaner technologies for the abateme...
The textile industry is responsible for the generation of highly colored effluents, which need adequ...
The degradation and decolorization of direct dye (Everdirect supra turquoise blue FBL), acidic dye (...
A photo-Fenton process using a local iron oxide as a natural catalyst was compared to Fenton and UV/...
A photo-Fenton process using a local iron oxide as a natural catalyst was compared to Fenton and UV/...
Degradation of 20 different dyes in aqueous solutions by the Fenton process was performed. These dye...
This work focuses on the use of Fenton reagent and UV-irradiation, in a lab-scale experiment, for th...
The present study aimed to evaluate the applicability of photo-Fenton process for the degradation of...
Les procédés dits d'oxydation avancés (POA) permettent la dégradation totale (minéralisation) en mil...
This study provides a comparison between classic and modified (i.e., ultrasound) Fenton process on t...
In this study, the oxidative decolorization of C.I. reactive yellow 145 (RY 145) from synthetic tex...
Advanced Fenton process (AFP) using zero valent metallic iron (ZVMI) is studied as a potential techn...
Textile industry wastewaters are complex and hazardous because of the variety of dyestuffs and chemi...
The application of homogeneous photo-Fenton water treatment was tested for the degradation of dyestu...
In this study, real wastewater from a dyeing factory and previously treated by biological processes ...
Advanced oxidation processes (AOPs) are projected as relatively cleaner technologies for the abateme...
The textile industry is responsible for the generation of highly colored effluents, which need adequ...