Hospital effluents are a major source for the occurrence of pharmaceuticals in the environment. In this work, the treatment of synthetic urine polluted with chloramphenicol is studied by using three different conductive-diamond electrochemical oxidation technologies: electrolysis (single electrolysis), photoelectrolysis and high-frequency ultrasound sonoelectrolysis. These technologies were evaluated at 10 and 100 mA cm−2. Results shows that not only chloramphenicol but also other organics contained in urine are completely mineralized by electrolysis. Ammonium is the main inorganic nitrogen species formed and it can react with the electrogenerated hypochlorite, favouring the formation of chloramines. These species prevent the potential form...
This work focuses on the treatment of synthetic wastewater polluted with dye Procion Red MX-5B by di...
This work focuses on the treatment of synthetic wastewater polluted with dye Procion Red MX-5B by di...
In this work, the electrolysis, photoelectrolysis and sonoelectrolysis with diamond electrodes of am...
The electrolysis with diamond anodes of synthetic urines containing different concentrations of ibup...
This work focuses on the application of electrolysis with diamond anodes for the disinfection of uri...
In this work, the electrochemical oxidation of synthetic urine by anodic oxidation using boron-doped...
In the present work, electrochemical technology was used simultaneously for the deactivation of micr...
In this work, the electrochemical oxidation of synthetic urine by anodic oxidation using boron-doped...
In this work, it is studied the treatment of real wastewater (intensified with two target compounds)...
This work focuses on improving the biodegradability of hospital urines polluted with antibiotics by ...
A combined advanced oxidation process based on the electrochemical oxidation of chloramphenicol (CHL...
Show more authors Abstract This paper analyzes the advantages and drawbacks of the combination of ...
Chlorination byproducts (CBPs) are harmful to human health and the environment. Their formation in c...
In this work, the degradation of hydroxychloroquine (HCQ) drug in aqueous solution by electrochemica...
In this work, the removal of antibiotic penicillin G by electrolysis with boron doped diamond (BDD)...
This work focuses on the treatment of synthetic wastewater polluted with dye Procion Red MX-5B by di...
This work focuses on the treatment of synthetic wastewater polluted with dye Procion Red MX-5B by di...
In this work, the electrolysis, photoelectrolysis and sonoelectrolysis with diamond electrodes of am...
The electrolysis with diamond anodes of synthetic urines containing different concentrations of ibup...
This work focuses on the application of electrolysis with diamond anodes for the disinfection of uri...
In this work, the electrochemical oxidation of synthetic urine by anodic oxidation using boron-doped...
In the present work, electrochemical technology was used simultaneously for the deactivation of micr...
In this work, the electrochemical oxidation of synthetic urine by anodic oxidation using boron-doped...
In this work, it is studied the treatment of real wastewater (intensified with two target compounds)...
This work focuses on improving the biodegradability of hospital urines polluted with antibiotics by ...
A combined advanced oxidation process based on the electrochemical oxidation of chloramphenicol (CHL...
Show more authors Abstract This paper analyzes the advantages and drawbacks of the combination of ...
Chlorination byproducts (CBPs) are harmful to human health and the environment. Their formation in c...
In this work, the degradation of hydroxychloroquine (HCQ) drug in aqueous solution by electrochemica...
In this work, the removal of antibiotic penicillin G by electrolysis with boron doped diamond (BDD)...
This work focuses on the treatment of synthetic wastewater polluted with dye Procion Red MX-5B by di...
This work focuses on the treatment of synthetic wastewater polluted with dye Procion Red MX-5B by di...
In this work, the electrolysis, photoelectrolysis and sonoelectrolysis with diamond electrodes of am...