Fast purification of air from diethyl sulfide with nanosized TiO sub(2) aerosol

TiO sub(2) aerosol generated by a sonic method has been applied for fast purification of air from diethyl sulfide (DES) vapors inside a closed chamber. Two types of experiments modeling the possible real situations were conducted - (1) aerosol spraying without irradiation followed by UV irradiation...

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Veröffentlicht in:Applied catalysis. B, Environmental Environmental, 2012-01, Vol.129, p.318-324
Hauptverfasser: Vorontsov, Alexander V, Besov, Alexey S, Parmon, Valentin N
Format: Artikel
Sprache:eng
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Zusammenfassung:TiO sub(2) aerosol generated by a sonic method has been applied for fast purification of air from diethyl sulfide (DES) vapors inside a closed chamber. Two types of experiments modeling the possible real situations were conducted - (1) aerosol spraying without irradiation followed by UV irradiation after aerosol deposition and (2) aerosol spraying under UV irradiation. Adsorption of DES on TiO sub(2) particles was complete and fastest at the lowest air relative humidity (RH) while photocatalytic oxidation was fastest at RH 37%. The minimal TiO sub(2) aerosol surface area needed to remove from air one DES molecule is 2.3 nm super(2) at the adsorption and 1.5 nm super(2) at the photocatalytic oxidation. The quantum efficiency of the DES consumption increases from 4.7 to 20% when the initial DES concentration increases from 100 to 1000 ppm. The overall quantum efficiency of the DES deep oxidation reached 41 and 58% for the initial concentration 100 and 1000 ppm, respectively. The results demonstrate unusually high activity of TiO sub(2) aerosol for the adsorption-photocatalytic air purification from DES.
ISSN:0926-3373
DOI:10.1016/j.apcatb.2012.09.019