International audienceThis paper investigates the behavior of conductive Ti4O7 ceramic anode in different electrolytes during the degradation of the anti-inflammatory drug paracetamol (PCM) by advanced electrochemical oxidation processes mainly anodic oxidation with generation of H2O2 (AO-H2O2) and electro-Fenton (EF). Regardless of the medium, better degradation and mineralization efficiency was always observed with EF compared to AO-H2O2. The degradation of PCM was carried out by hydroxyl radical (OH) produced on the anode surface from water oxidation and mediated oxidation in the solution from oxidant species generated at the anode such as sulfate radicals and active chlorine species depending on the supporting electrolytes used, as well...
The in-situ production of highly oxidizing species represents a sustainable approach for the treatme...
Electrochemical remediation is an innovative technique that utilizes electro-oxidation reactions to ...
Thesis (Master's)--University of Washington, 2022An ideal electrode material for pharmaceutical degr...
This paper investigates the behavior of conductive Ti4O7 ceramic anode in different electrolytes dur...
Electrochemical degradation of aqueous solutions containing antibiotic amoxicillin (AMX) has been ex...
International audienceA cathodic electro-Fenton (EF) process consisting of thermally treated carbon ...
Oxidative degradation of aqueous acidic solutions of the beta-blocker propranolol (PPN) has been stu...
International audienceThe oxidation ability of two prominent eco‐friendly electrochemical advanced o...
The mineralization of tetracycline by electrochemical advanced oxidation processes (EAOPs) as well a...
To achieve low-carbon and sustainable development it is imperative to explore water treatment techno...
International audienceIn this study, the paracetamol degradation in water was investigated using Non...
Titanium suboxide is an excellent electrode material for many oxidization reactions. In this article...
Methyl orange (MO) is an environmental concern because their degradation products are highly toxic t...
In the last years, an increasing attention has been devoted to the utilization of anodic oxidation (...
Electrochemical oxidation of paracetamol on boron-doped diamond (BDD) anode has been studied by cycl...
The in-situ production of highly oxidizing species represents a sustainable approach for the treatme...
Electrochemical remediation is an innovative technique that utilizes electro-oxidation reactions to ...
Thesis (Master's)--University of Washington, 2022An ideal electrode material for pharmaceutical degr...
This paper investigates the behavior of conductive Ti4O7 ceramic anode in different electrolytes dur...
Electrochemical degradation of aqueous solutions containing antibiotic amoxicillin (AMX) has been ex...
International audienceA cathodic electro-Fenton (EF) process consisting of thermally treated carbon ...
Oxidative degradation of aqueous acidic solutions of the beta-blocker propranolol (PPN) has been stu...
International audienceThe oxidation ability of two prominent eco‐friendly electrochemical advanced o...
The mineralization of tetracycline by electrochemical advanced oxidation processes (EAOPs) as well a...
To achieve low-carbon and sustainable development it is imperative to explore water treatment techno...
International audienceIn this study, the paracetamol degradation in water was investigated using Non...
Titanium suboxide is an excellent electrode material for many oxidization reactions. In this article...
Methyl orange (MO) is an environmental concern because their degradation products are highly toxic t...
In the last years, an increasing attention has been devoted to the utilization of anodic oxidation (...
Electrochemical oxidation of paracetamol on boron-doped diamond (BDD) anode has been studied by cycl...
The in-situ production of highly oxidizing species represents a sustainable approach for the treatme...
Electrochemical remediation is an innovative technique that utilizes electro-oxidation reactions to ...
Thesis (Master's)--University of Washington, 2022An ideal electrode material for pharmaceutical degr...