This study presents our solution of an active nitric oxides (NOx) control method for large traffic tunnels. A titanium dioxide (TiO2) coated carrier material is assessed using lab-based photocatalysis experiments, leading to a coating with high photocatalytic activity (deposition speed of 1.4 cm/s for nitrogen monoxide, NO). The coating is tested on several carrier materials to maximize the interaction between the reactive surface and the pollution molecules in the air. Several reactor prototype geometries and carrier materials are simulated and tested on a pilot plant scale. A coated PU-foam with 3 cm thickness and porosity of five pores per inch proved to be the most effective carrier material, while a reactor design with vertically flowe...
The use of titanium dioxide (TiO2) photocatalytic nanoparticles as road coating to trap and decompos...
An experiment was conducted to test the effectiveness of the FN NANO®2 coating in removing a harmful...
Titanium dioxide (TiO2) photocatalytic nanoparticles have the ability to trap and decompose organic ...
SSCI-VIDE+CARE:+ABO:YDU:CGOInternational audienceDuring the European Life+ project PhotoPAQ (Demonst...
This article reviews the efforts of the last two decades to deNOxify the atmospheric environment wit...
Air pollution measurements were carried out at the Cavallo highway tunnel in Ancona, Italy. The tunn...
Nitrogen oxides are emitted in large quantities by vehicles, and solutions to the problem are sought...
The abatement performance of photocatalytic coatings on NOx concentrations in real-world street cany...
Nitrogen oxides are emitted in large quantities by vehicles, and solutions to the problem are sought...
The ability of titanium dioxide (TiO2) photocatalytic nanoparticles to trap and decompose organic an...
Nitrogen oxides (NOx) emitted from vehicle exhausts are associated with adverse health effects on th...
Titanium dioxide is the most important photocatalysts used for purifying applications. It was the pu...
Numerous laboratory studies have demonstrated the ability of nano and ultrafine titanium dioxide (Ti...
The transportation sector is the biggest contributor to air pollution in Indonesia, especially in me...
An experiment was conducted to test the effectiveness of the FN NANO®2 coating in removing a polluta...
The use of titanium dioxide (TiO2) photocatalytic nanoparticles as road coating to trap and decompos...
An experiment was conducted to test the effectiveness of the FN NANO®2 coating in removing a harmful...
Titanium dioxide (TiO2) photocatalytic nanoparticles have the ability to trap and decompose organic ...
SSCI-VIDE+CARE:+ABO:YDU:CGOInternational audienceDuring the European Life+ project PhotoPAQ (Demonst...
This article reviews the efforts of the last two decades to deNOxify the atmospheric environment wit...
Air pollution measurements were carried out at the Cavallo highway tunnel in Ancona, Italy. The tunn...
Nitrogen oxides are emitted in large quantities by vehicles, and solutions to the problem are sought...
The abatement performance of photocatalytic coatings on NOx concentrations in real-world street cany...
Nitrogen oxides are emitted in large quantities by vehicles, and solutions to the problem are sought...
The ability of titanium dioxide (TiO2) photocatalytic nanoparticles to trap and decompose organic an...
Nitrogen oxides (NOx) emitted from vehicle exhausts are associated with adverse health effects on th...
Titanium dioxide is the most important photocatalysts used for purifying applications. It was the pu...
Numerous laboratory studies have demonstrated the ability of nano and ultrafine titanium dioxide (Ti...
The transportation sector is the biggest contributor to air pollution in Indonesia, especially in me...
An experiment was conducted to test the effectiveness of the FN NANO®2 coating in removing a polluta...
The use of titanium dioxide (TiO2) photocatalytic nanoparticles as road coating to trap and decompos...
An experiment was conducted to test the effectiveness of the FN NANO®2 coating in removing a harmful...
Titanium dioxide (TiO2) photocatalytic nanoparticles have the ability to trap and decompose organic ...