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Assessment and influence of operational parameters on the TiO2 photocatalytic degradation of sodium benzene sulfonate under highly concentrated solar light illumination

✍ Scribed by Tianyong Zhang; Toshiyuki Oyama; Satoshi Horikoshi; Jincai Zhao; Hisao Hidaka; Nick Serpone


Publisher
Elsevier Science
Year
2001
Tongue
English
Weight
205 KB
Volume
71
Category
Article
ISSN
0038-092X

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✦ Synopsis


Sodium benzene sulfonate (BS) was decomposed in aqueous TiO dispersions under highly 2 concentrated solar light illumination to examine the photocatalytic characteristics of a parabolic round concentrator (PRC) reactor to degrade the pollutant without visible light absorption. The effects of such operational parameters as initial concentration, volume of the aqueous BS solution, oxygen purging, and TiO 2 loading on the kinetics of decomposition of BS were investigated. An effective photodegradation necessitates a suitable combination of initial volume and concentration of BS solution. Relative to atmospheric air, oxygen purging significantly accelerates the degradation process at high initial concentrations of BS (0.40 mM or 1.0 21 mM). Optimal TiO loading was 9 g l , greater than previously reported. Elimination of TOC (total organic 2 carbon) followed pseudo first-order kinetics in the initial stages of the photodegradation process. The relative photonic efficiency for the photodegradation of BS is z 5 1.0.