In this study, degradation of Flumequine (FLU) and nalidixic acid (NXA) in distilled water by two solar photocatalytic processes, TiO(2) and photo-Fenton, was evaluated. Intermediates and acute toxicity of the photoproducts generated were also studied. Degradation efficiency by heterogeneous photocatalysis with TiO(2) was similar for NXA and FLU, which were completely degraded after 25 min of illumination. Less NXA mineralisation was reached after 80 min of illumination. Photo-Fenton degradation of both substances was very quick (< 25 min of illumination time), and the same mineralisation was reached in both cases. The kinetic parameters of the two substances were calculated for comparison of their photocatalytic degradation. In all cases, ...
International audienceIn many nations, particularly those experiencing water scarcity, novel approac...
International audienceIn many nations, particularly those experiencing water scarcity, novel approac...
International audienceIn many nations, particularly those experiencing water scarcity, novel approac...
This work assessed the solar photo-Fenton degradation of nalidixic acid (NXA), a quinolone antibacte...
The photodegradation of some among the most frequently prescribed fluoroquinolone antibacterials (FQ...
The photodegradation of some among the most frequently prescribed fluoroquinolone antibacterials (FQ...
The present study investigates the photocatalytic degradation of three quinolone antibiotics (i.e., ...
International audienceThe present study investigates the photocatalytic degradation of three quinolo...
The technical feasibility and performance of photocatalytic degradation of six water-soluble pestici...
This work investigated the application of a solar driven advanced oxidation process (solar Fenton), ...
Direct photolysis of flumequine (FLU, 20mgL ) in different types of water (demineralised water (DW) ...
Several different pesticides (alachlor, atrazine, chlorfenvinphos, diuron, isoproturon and pentachlo...
International audienceIn many nations, particularly those experiencing water scarcity, novel approac...
International audienceIn many nations, particularly those experiencing water scarcity, novel approac...
International audienceIn many nations, particularly those experiencing water scarcity, novel approac...
International audienceIn many nations, particularly those experiencing water scarcity, novel approac...
International audienceIn many nations, particularly those experiencing water scarcity, novel approac...
International audienceIn many nations, particularly those experiencing water scarcity, novel approac...
This work assessed the solar photo-Fenton degradation of nalidixic acid (NXA), a quinolone antibacte...
The photodegradation of some among the most frequently prescribed fluoroquinolone antibacterials (FQ...
The photodegradation of some among the most frequently prescribed fluoroquinolone antibacterials (FQ...
The present study investigates the photocatalytic degradation of three quinolone antibiotics (i.e., ...
International audienceThe present study investigates the photocatalytic degradation of three quinolo...
The technical feasibility and performance of photocatalytic degradation of six water-soluble pestici...
This work investigated the application of a solar driven advanced oxidation process (solar Fenton), ...
Direct photolysis of flumequine (FLU, 20mgL ) in different types of water (demineralised water (DW) ...
Several different pesticides (alachlor, atrazine, chlorfenvinphos, diuron, isoproturon and pentachlo...
International audienceIn many nations, particularly those experiencing water scarcity, novel approac...
International audienceIn many nations, particularly those experiencing water scarcity, novel approac...
International audienceIn many nations, particularly those experiencing water scarcity, novel approac...
International audienceIn many nations, particularly those experiencing water scarcity, novel approac...
International audienceIn many nations, particularly those experiencing water scarcity, novel approac...
International audienceIn many nations, particularly those experiencing water scarcity, novel approac...