International audienceTo reduce the energy cost and environmental impact of biological nitrogen removal in wastewater treatment plants, it would be advantageous to treat urea contained in urine at the source. In this perspective, FTO/Ti-Fe2O3 (nanorods) photoelectrodes decorated with Ni as catalyst are developed and tested for urea photoelectrocatalytic oxidation under solar illumination. Gains up to 0.50 V in oxidation onset potential vs. metallic Ni are obtained thanks to a Ni photoelectrodeposition method. In situ transmission measurements (based on NiOOH light absorption) during electrochemical cycling allowed to evaluate the state of active Ni sites and confirmed that urea oxidation mechanism is of EC type. Photoelectrolyses give farad...
Urine is the main source of nitrogen pollution, while urea is a hydrogen-enriched carrier that has b...
Urine is the main source of nitrogen pollution, while urea is a hydrogen-enriched carrier that has b...
Thesis (Ph.D.)--University of Washington, 2023Two distinct types of photocatalytic material systems ...
The electrochemical oxidation of the urea in near neutral pH is investigated on platinum electrode. ...
International audienceIn this manuscript, we propose to produce and characterize a photoelectrodes b...
International audienceIn this manuscript, we propose to produce and characterize a photoelectrodes b...
International audienceIn this manuscript, we propose to produce and characterize a photoelectrodes b...
International audienceIn this manuscript, we propose to produce and characterize a photoelectrodes b...
International audienceIn this manuscript, we propose to produce and characterize a photoelectrodes b...
The electrochemical oxidation of the urea in near neutral pH is investigated on platinum electrode. ...
International audienceIn this manuscript, we propose to produce and characterize a photoelectrodes b...
This study presents a ternary hybrid solar desalination process coupled with photoelectrocatalytic w...
Hydrogen is a wanted energy carrier in a future society less dependent of fossil fuels. This thesis ...
The fast reaction of forced hydrolysis of iron(III) nitrate in hypochlorite solution at room tempera...
Hydrogen is a wanted energy carrier in a future society less dependent of fossil fuels. This thesis ...
Urine is the main source of nitrogen pollution, while urea is a hydrogen-enriched carrier that has b...
Urine is the main source of nitrogen pollution, while urea is a hydrogen-enriched carrier that has b...
Thesis (Ph.D.)--University of Washington, 2023Two distinct types of photocatalytic material systems ...
The electrochemical oxidation of the urea in near neutral pH is investigated on platinum electrode. ...
International audienceIn this manuscript, we propose to produce and characterize a photoelectrodes b...
International audienceIn this manuscript, we propose to produce and characterize a photoelectrodes b...
International audienceIn this manuscript, we propose to produce and characterize a photoelectrodes b...
International audienceIn this manuscript, we propose to produce and characterize a photoelectrodes b...
International audienceIn this manuscript, we propose to produce and characterize a photoelectrodes b...
The electrochemical oxidation of the urea in near neutral pH is investigated on platinum electrode. ...
International audienceIn this manuscript, we propose to produce and characterize a photoelectrodes b...
This study presents a ternary hybrid solar desalination process coupled with photoelectrocatalytic w...
Hydrogen is a wanted energy carrier in a future society less dependent of fossil fuels. This thesis ...
The fast reaction of forced hydrolysis of iron(III) nitrate in hypochlorite solution at room tempera...
Hydrogen is a wanted energy carrier in a future society less dependent of fossil fuels. This thesis ...
Urine is the main source of nitrogen pollution, while urea is a hydrogen-enriched carrier that has b...
Urine is the main source of nitrogen pollution, while urea is a hydrogen-enriched carrier that has b...
Thesis (Ph.D.)--University of Washington, 2023Two distinct types of photocatalytic material systems ...