금속 프탈로시아닌을 이용한 아세트알데히드의 촉매연소

Catalytic Combustion of Acetaldehyde by Metal Phthalocyanines

  • 서성규 (여수대학교 건설환경공학부)
  • 발행 : 2000.08.01

초록

Catalytic combustion of acetaldehyde has been investigated as a representative of unpleasant odor by its reaction with metal-phthalocyanines(PC). The experiment was conducted at the reaction temperature of 200~41$0^{\circ}C$ and the concentratio of acetaldehyde in air at the range of 0.07~0.94 mole% The pretreated metal-PC has been characterized by UV-VIS and XRD analysis. According to this study catalytic activity of metal -PC was improved by air pretreatment at 45$0^{\circ}C$ for 1hr. Under this pretreatment condition Co-PC and Cu($\alpha$)-PC were destroyed and new metal oxides were formed such as Co3O4 and CuO respectively. However Zn-PC retained its basic structure even afte air pretreatment. The order of catalytic activity on acetaldehyde combustion was summarized as follows : Zn-PC$\alpha$)-PC. It was found that the complete combustin of acetaldehyde with Cu($\alpha$)-PC was accomplished at its concentrations below 0.2mole% (32$0^{\circ}C$) and 0.6 mole%(35$0^{\circ}C$) in air.

키워드

참고문헌

  1. 대한환경공학회지 v.21 메탄올 연소에 대한 구리프탈로시아닌 촉매의 전처리 효과 서성규;윤형선;김상채
  2. VOC 방지기법 세미나: 악취오염의 분석, 예측 및 제어기술 송덕만
  3. 시화악취 배출업체 정밀실태조사 결과 하절기 악취대책, 보도자료 환경부
  4. 대기환경보전법 환경부
  5. 續 色素の化學 北原淸志 西久夫
  6. J. Catal. v.179 Photocatalytic and thermal catalytic oxidation of acetaldehyde on Pt/TiO2 Falconer, J.L.;K.A. Magrini-Bair
  7. PCPDFWIN v.1 JCPDS-International centre for diffraction data Joint Committee on Powder Diffraction Standards
  8. J. Solid State Chem. v.128 Electrical and optical characterization of vacuum evaporated magnesium phthalocyanine thin films Krishnakumar, K.P.;C.S. Menon
  9. J. Catal. v.178 Evaluation of γ-MnO₂as a VOC removal catalyst: comparison with a noble metal catalyst Lahousse, C.;A. Bernier;P. Grange;B. Delmon;P. Papaefthimiou;T. Ioannides;X. Verykios
  10. J. KAPRA v.13 no.E A pilot study if air emission of aldehydes produced during the processing of recycled high density polythlenes Lee, B.K.;R.M. Eraso;M.J. Ginieres;M.J. Ellenbeecker
  11. Environment: Air, Water, and Soil Control odors from CPI facilities Martin, A.M.;S.L. Nolen;P.S. Gess;T.A. Baesen
  12. New directions in phthalocyanine pigments final report NASA-CR-192443
  13. Chemical Engineering Science v.54 Photocatalytic decompositon of acetaldehyde over $TiO_{2}/SiO_{2}$ catalyst Obuchi, E.;T. Sakamoto;K. Nakano
  14. J. Electrochem. Soc. v.143 Electrochemical and spectroelectrochemical studies of cobalt phthalocyanine polymers Orthz, B.;S.M. Park;N. Doddapaneni
  15. Catalysis Today v.54 VOC removal: investigation of ethylacetate oxidation over supported Pt catalysts Papaefthimiou, P.;T. Ioannides;X.E. Verykios
  16. Air pollution technology fact sheet U.S. EPA
  17. 1996 Alabama toxics release inventory report U.S. EPA
  18. CAS No. 75-07-0, EPA749-F-94-003 Chemical in the environment: acetaldehyde prepared by Office of Pollution Prevention and Toxics(OPPT) chemical fact sheet. CAS No. 75-07-0 U.S. EPA
  19. EPA/625/6-91/014 Handbook: control technologies for hazardous air pollutant U.S. EPA
  20. Ind. Eng. Chem. Res. v.34 Catalytic-oxidation of ethanol and acetaldehyde in supercritical carbon-dioxide Zhou, L.B.;A. Akgerman