Photocatalytic equipment with nitrogen-doped titanium dioxide for air cleaning and disinfecting
Фотокаталитическое оборудование с легированным азотом диоксидом титана для очистки и обеззараживания воздуха
2014-02-28
SCID: 54.1/edekk3wa
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acetone photodegradationair disinfectionnitrogen-doped titanium dioxidephotocatalytic air cleanersol–gel synthesis
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Abstract (AI)
Nitrogen-doped TiO 2 nanoparticle photocatalysts were synthesized by a sol–gel procedure using tetra- n -butyl orthotitanate as a titanium precursor and urea as a nitrogen source. Systematic studies for the preparation parameters and their impact on the material's structure were carried out by multiple techniques: thermogravimetric and differential scanning calorimetric analysis, x-ray diffraction, scanning electron microscope, transmission electron microscopy, energy dispersive x-ray spectroscopy and UV–Vis diffuse reflectance spectrophotometry showed that the nitrogen-doped TiO 2 calcined at 500 °C for 3 h exhibited a spherical form with a particle size about 15–20 nm and crystal phase presented a mixture of 89.12% anatase. The obtained product was deposited on a porous quartz tube ( D = 74 mm; l = 418 mm) to manufacture an air photocatalytic cleaner as a prototype of the TIOKRAFT company's equipment. The created air cleaner was able to remove 60% of 10 ppm acetone within 390 min and degrade 98.5% of bacteria (total aerobic bacteria and fungi, 300 cfu m −3 ) within 120 min in a 10 m 3 box. These photodegradation activities of N-TiO 2 are higher than that of the commercial nano-TiO 2 (Skyspring Inc., USA, particle size of 5–10 nm).
Key Findings
1
Calcination at 500 °C for 3 hours produced spherical particles approximately 15–20 nm in size, with a crystal phase containing 89.12% anatase.
2
Nitrogen-doped TiO₂ nanoparticles were synthesized by a sol–gel method using tetra-n-butyl orthotitanate and urea.
3
The N-doped TiO₂ was deposited on a porous quartz tube to construct a prototype photocatalytic air cleaner.
4
The cleaner degraded 98.5% of airborne bacteria and fungi at 300 cfu m⁻³ within 120 minutes, outperforming commercial nano-TiO₂.
5
The prototype removed 60% of 10 ppm acetone within 390 minutes in a 10 m³ box.
Research Object
Nitrogen-doped TiO₂ photocatalytic air cleaner with a porous quartz-tube reactor
Research Subject
Photocatalytic air-cleaning and disinfection performance, specifically acetone removal and bacterial/fungal degradation
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2014-02-28
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