In the present study, heterogeneous electro-Fenton (HEF) process using MnFe2O4-GO catalyst is employed for the successful removal of dye from aqueous solution. Pt coated over titanium and graphite felt were used as the electrodes. The study focuses on the efficiency of the electrodes and catalyst used for the successful removal of Rhodamine B (RhB) from aqueous solution and the application of the same in real textile wastewater. The effect of various operational parameters like pH, applied voltage, catalyst concentration, initial pollutant concentration and effect of ions were investigated. The optimized condition of the electrolytic system was found as pH 3, applied voltage of 3 V, and catalyst concentration of 20 mg L−1 for the removal of...
The textile and paper industries require large volumes of water and produce effluents that contain l...
AbstractIn this study, the COD removal and Dye removal efficiencies of homogeneous and heterogeneous...
International audienceNowadays, the water ecosystem is being polluted due to the rapid industrializa...
The main goal of this article is to study a bipolar electro-Fenton process using stainless steel mes...
International audienceAn environmentally friendly electrochemical treatment, electro-Fenton process,...
In this study, colour and chemical oxygen demand (COD) removal from the textile wastewater by hetero...
Background and Objectives: Synthetic dyes represent one of the largest groups of pollutants in waste...
Oxidative treatment of a cationic dye solution, methylene blue, was investigated using magnetite nan...
Abstract--This paper evaluates the treatment of textile dyeing wastewater using new composites as ad...
In many countries, the textile industry remains the major contributor to environmental pollution. Un...
In the present study, GOx/MnFe2O4/calcium alginate nano-composite was prepared by the trapping enzym...
This paper describes the removal of methyl...
Textile wastewater entering natural water bodies could cause serious environment and health issues. ...
In this study, real wastewater from a dyeing factory and previously treated by biological processes ...
Sponge iron was used as heterogeneous electro-Fenton (EF) catalyst. Then, the catalytic activity and...
The textile and paper industries require large volumes of water and produce effluents that contain l...
AbstractIn this study, the COD removal and Dye removal efficiencies of homogeneous and heterogeneous...
International audienceNowadays, the water ecosystem is being polluted due to the rapid industrializa...
The main goal of this article is to study a bipolar electro-Fenton process using stainless steel mes...
International audienceAn environmentally friendly electrochemical treatment, electro-Fenton process,...
In this study, colour and chemical oxygen demand (COD) removal from the textile wastewater by hetero...
Background and Objectives: Synthetic dyes represent one of the largest groups of pollutants in waste...
Oxidative treatment of a cationic dye solution, methylene blue, was investigated using magnetite nan...
Abstract--This paper evaluates the treatment of textile dyeing wastewater using new composites as ad...
In many countries, the textile industry remains the major contributor to environmental pollution. Un...
In the present study, GOx/MnFe2O4/calcium alginate nano-composite was prepared by the trapping enzym...
This paper describes the removal of methyl...
Textile wastewater entering natural water bodies could cause serious environment and health issues. ...
In this study, real wastewater from a dyeing factory and previously treated by biological processes ...
Sponge iron was used as heterogeneous electro-Fenton (EF) catalyst. Then, the catalytic activity and...
The textile and paper industries require large volumes of water and produce effluents that contain l...
AbstractIn this study, the COD removal and Dye removal efficiencies of homogeneous and heterogeneous...
International audienceNowadays, the water ecosystem is being polluted due to the rapid industrializa...