Photocatalytic equipment with nitrogen-doped titanium dioxide for air cleaning and disinfecting

Фотокаталитическое оборудование с легированным азотом диоксидом титана для очистки и обеззараживания воздуха
Thanh Sơn Lê, Quoc Buu Ngo, Việt Dũng Nguyễn, Hoai Chau Nguyen, Trong Hien Dao, Xuan Tin Tran, Е. Н. Кабачков, I. L. Balikhin
2014-02-28

acetone photodegradationair disinfectionnitrogen-doped titanium dioxidephotocatalytic air cleanersol–gel synthesis
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).
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.

Nitrogen-doped TiO₂ photocatalytic air cleaner with a porous quartz-tube reactor

Photocatalytic air-cleaning and disinfection performance, specifically acetone removal and bacterial/fungal degradation

Publication Details
Publication Date
2014-02-28
Journal
Publisher
ISSN
Access Type
Author Information
Authors
Thanh Sơn Lê
Quoc Buu Ngo
Việt Dũng Nguyễn
Hoai Chau Nguyen
Trong Hien Dao
Xuan Tin Tran
Е. Н. Кабачков
I. L. Balikhin
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%