The present study is devoted to investigate the removal of phenol, which has been selected as a model for the toxic organic compounds by using a parabolic trough collector (PTC) photo catalysis system. The solar photo-catalytic system performance was tested in terms of the phenol removal (%Rphenol) and TOC mineralization efficiency (%MTOC) by using FeSO4 as a catalyst and Oxalic acid as a solar photo assisted agent to enhance the process efficiency. Different operating conditions were studied to investigate the performance of the photo-catalysis system, such as initial phenol concentration, initial H2O2 concentration, FeSO4/Oxalic weigh ratio, pH of solution, and solution flow rate. The operating variables were optimized to obtain a maximum...
In this study, photocatalytic degradation of phenol by titanium dioxide (TiO2) in aqueous solution ...
This work aimed at investigating the photocatalytic treatment of a synthetic wastewater using UV lig...
Rasul, M ORCiD: 0000-0001-8159-1321In recent years, there has been an enormous amount of research an...
The solar driven photo-Fenton process for treating water containing phenol as a contaminant has been...
The solar driven photo-Fenton process for treating water containing phenol as a contaminant has been...
The solar driven photo-Fenton process for treating water containing phenol as a contaminant has been...
The solar driven photo-Fenton process for treating water containing phenol as a contaminant has been...
Phenol is a recalcitrant anthropogenic compound whose presence has been reported in both wastewater ...
Quantity of water use in Indian industries is very high compared to other countries water usage. Ine...
The analysis of the environmental and human health threats imposed by phenols was conducted to show ...
Photocatalysis is a process in which the rate of photoreaction is accelerated in presence of a catal...
The objective of this study is to promote photocatalytic wastewater treatment by proposing a reactor...
Solar reactors can be attractive in photodegradation processes due to lower electrical energy demand...
Solar reactors can be attractive in photodegradation processes due to lower electrical energy demand...
In this study, photo-catalytic degradation of phenol by titanium dioxide (TiO2) in aqueous solution ...
In this study, photocatalytic degradation of phenol by titanium dioxide (TiO2) in aqueous solution ...
This work aimed at investigating the photocatalytic treatment of a synthetic wastewater using UV lig...
Rasul, M ORCiD: 0000-0001-8159-1321In recent years, there has been an enormous amount of research an...
The solar driven photo-Fenton process for treating water containing phenol as a contaminant has been...
The solar driven photo-Fenton process for treating water containing phenol as a contaminant has been...
The solar driven photo-Fenton process for treating water containing phenol as a contaminant has been...
The solar driven photo-Fenton process for treating water containing phenol as a contaminant has been...
Phenol is a recalcitrant anthropogenic compound whose presence has been reported in both wastewater ...
Quantity of water use in Indian industries is very high compared to other countries water usage. Ine...
The analysis of the environmental and human health threats imposed by phenols was conducted to show ...
Photocatalysis is a process in which the rate of photoreaction is accelerated in presence of a catal...
The objective of this study is to promote photocatalytic wastewater treatment by proposing a reactor...
Solar reactors can be attractive in photodegradation processes due to lower electrical energy demand...
Solar reactors can be attractive in photodegradation processes due to lower electrical energy demand...
In this study, photo-catalytic degradation of phenol by titanium dioxide (TiO2) in aqueous solution ...
In this study, photocatalytic degradation of phenol by titanium dioxide (TiO2) in aqueous solution ...
This work aimed at investigating the photocatalytic treatment of a synthetic wastewater using UV lig...
Rasul, M ORCiD: 0000-0001-8159-1321In recent years, there has been an enormous amount of research an...