Diclofenac (DCF) is one of the most detected pharmaceuticals in environmental water matrices and is known to be recalcitrant to conventional wastewater treatment plants. In this study, degradation of DCF was performed in water by photolysis and photocatalysis using a new synthetized photocatalyst based on hydroxyapatite and TiO2 (HApTi). A degradation of 95% of the target compound was achieved in 24 h by a photocatalytic treatment employing the HApTi catalyst in comparison to only 60% removal by the photolytic process. The investigation of photo-transformation products was performed by means of UPLC-QTOF/MS/MS, and for 14 detected compounds in samples collected during treatment with HApTi, the chemical structure was proposed. The determina...
The occurrence of micropollutants in the environment is an emerging issue. Diclofenac, a non-steroid...
The study explores the potential of immobilized TiO2-based zeolite composite photocatalyst (TiO2-FeZ...
Active pharmaceutical ingredients (APIs), despite their beneficial effects on human or animal health...
Diclofenac (DCF) is one of the most detected pharmaceuticals in environmental water matrices and is ...
Diclofenac (DCF) is one of the most detected pharmaceuticals in environmental water matrices and is ...
Summarization: In this work, the photocatalytic conversion and mineralization of non-steroidal, anti...
The occurrence of diclofenac (DCF) as an emerging pollutant in surface waters and drinking water has...
The occurrence, fate and effects of Pharmaceuticals compounds (PhCs) in the environmental system hav...
The occurrence, fate and effects of pharmaceuticals compounds (PhCs) in the environmental system h...
Pharmaceutical persistent pollutants pose a serious threat to the environment. The aim of this study...
In the present study the degradation kinetics and mineralization of diclofenac (DCF) by the TiO2 ph...
Diclofenac (DCF), a widely used non-steroidal anti-inflammatory drug (NSAID), is a commonly detected...
The occurrence of diclofenac (DCF) as an emerging pollutant in surface waters and drinking water has...
In the present study the degradation kinetics and mineralization of diclofenac (DCF) by the TiO2 ph...
Diclofenac (hereafter DCF) is an extensively used anti-inflammatory drug; therefore, it is found in ...
The occurrence of micropollutants in the environment is an emerging issue. Diclofenac, a non-steroid...
The study explores the potential of immobilized TiO2-based zeolite composite photocatalyst (TiO2-FeZ...
Active pharmaceutical ingredients (APIs), despite their beneficial effects on human or animal health...
Diclofenac (DCF) is one of the most detected pharmaceuticals in environmental water matrices and is ...
Diclofenac (DCF) is one of the most detected pharmaceuticals in environmental water matrices and is ...
Summarization: In this work, the photocatalytic conversion and mineralization of non-steroidal, anti...
The occurrence of diclofenac (DCF) as an emerging pollutant in surface waters and drinking water has...
The occurrence, fate and effects of Pharmaceuticals compounds (PhCs) in the environmental system hav...
The occurrence, fate and effects of pharmaceuticals compounds (PhCs) in the environmental system h...
Pharmaceutical persistent pollutants pose a serious threat to the environment. The aim of this study...
In the present study the degradation kinetics and mineralization of diclofenac (DCF) by the TiO2 ph...
Diclofenac (DCF), a widely used non-steroidal anti-inflammatory drug (NSAID), is a commonly detected...
The occurrence of diclofenac (DCF) as an emerging pollutant in surface waters and drinking water has...
In the present study the degradation kinetics and mineralization of diclofenac (DCF) by the TiO2 ph...
Diclofenac (hereafter DCF) is an extensively used anti-inflammatory drug; therefore, it is found in ...
The occurrence of micropollutants in the environment is an emerging issue. Diclofenac, a non-steroid...
The study explores the potential of immobilized TiO2-based zeolite composite photocatalyst (TiO2-FeZ...
Active pharmaceutical ingredients (APIs), despite their beneficial effects on human or animal health...