• DocumentCode
    250293
  • Title

    A study about the self-cleaning of a PV module surface using photocatalyst

  • Author

    Nakagawa, Hirotoshi ; Mathuoka, Kouhei ; Yonemori, Hironobu

  • Author_Institution
    Salesian Polytech., Machida, Japan
  • fYear
    2014
  • fDate
    6-9 Aug. 2014
  • Firstpage
    82
  • Lastpage
    87
  • Abstract
    Power generation using a Photo-Voltaic(PV) module has attracted attention because it doesn´t emit harmful substances such as carbon dioxide. One of a use is energy source in regions without electricity. However, as a problem, no one has a technique to maintain of a performance in such areas. If they can´t maintain the performance, power generation will reduce. Therefore, it is necessary for maintenance-free. As one cause, that the power generated is reduced, we focused an adhesion of pollution. We should make a self-cleaning on a PV modules surface. We propose photocatalyst as a solution. Photocatalyst used in the study is Molecular-bond-Titania-Silica-Photocatalyst. It is developed for a PV module. By coating the photocatalyst on a surface of a PV module, we evaluated the self-cleaning effect. We performed separately in short-term and long-term experiments. We used mud as pollution in short-term examination. On the other hand, we exposed a PV module to outdoor air on long-term examination. As these results, we found that self-cleaning effect of the Molecular-bond-Titania-Silica-Photocatalyst is effective.
  • Keywords
    bonds (chemical); carbon compounds; catalysis; photochemistry; silicon compounds; solar cell arrays; titanium compounds; PV module surface; TiO2-SiO2; carbon dioxide; energy source; molecular-bond-titania-silica-photocatalyst; photovoltaic module surface; power generation; self-cleaning effect; Conferences; Decision support systems; Region 10; Molecular-bond-Titania-Silica-Photocatalyst; PV module; regions without electricity; self-cleaning;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Humanitarian Technology Conference (R10-HTC), 2014 IEEE Region 10
  • Conference_Location
    Chennai
  • Type

    conf

  • DOI
    10.1109/R10-HTC.2014.7026325
  • Filename
    7026325