Degradation Efficiencies of Gas Phase Hydrocarbons for Photocatalysis Reactor With TiO2Thin Film

TiO2광촉매 반응기의 기체상 탄화수소의 분해효율

  • 이진홍 (충남대학교 환경공학과 대기오염연구실) ;
  • 박종숙 (충남대학교 환경공학과 대기오염연구실) ;
  • 김진석 (한국표준과학연구원 물질량표준부) ;
  • 오상협 (한국표준과학연구원 물질량표준부) ;
  • 김동현 ((주)펩콘)
  • Published : 2002.06.01

Abstract

Titania photocatalytic oxidation reactors were studied to investigate degradation efficiencies of hydrocarbons. In general, it is well known phenomena that thin layered titania oxidizes most of hydrocarbons to carbon dioxide and water under UV light. In this study, degradation efficiencies were measured due to changes in reactor structures, UV sources, the number of titania coatings, and various hydrocarbon chemicals. It was proven that gas degradation efficiencies are related to such factors as UV transmittance of coating substance, collision area of surface, and gas flow rate. For packing type annular reactor, about 98% degradation efficiency was achieved for achieved for propylene of 500 ppm level at a flow rate of 100 ml/min. Several gases were also tested for double-coated titania thin film under the condition of continuous flow of 100 ml/min and 365 nm UV source. It was shown that degradation efficiencies were decreasing in the order: $C_3$ $H_{6}$, n-C$_4$ $H_{10}$, $C_2$ $H_4$, $C_2$ $H_2$, $C_{6}$ $H_{6}$ and $C_2$ $H_{6}$./. 6/./.

Keywords

References

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