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Abstrakty
The process of biodeterioration of optical glass was studied after being induced by an auxiliary material (lubricant 4CKP) used in the production of optical instruments. It was determined that the lubricant can initiate growth of conidia of Aspergillus niger fungus. Acid spawn metabolites cause deterioration of the glass surface. Measurements of laser light beam transmittance through the glass plate and the AAS chemical analysis method of the post-culture fluid allowed to determine that glass with a high SiO₂ content is most resistant to corrosion caused by the growth of A. niger fungi spawn.
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Opis fizyczny
p.295-300,fig.,ref.
Twórcy
autor
- Institute of Fermentation Technology and Microbiology, Technical University of Lodz, Lodz, Poland
autor
- Institute of Fermentation Technology and Microbiology, Technical University of Lodz,Wolczanska 171/173, 90-924 Lodz, Poland
autor
- Institute of General Food Chemistry, Technical University of Lodz, Lodz, Poland
autor
- Institute of Physics, Technical University of Lodz, Lodz, Poland
Bibliografia
- Bartosik M., Z. Żakowska, L. Klimek and J. Szumigaj. 2007. Korozja mikrobiologiczna szkła optycznego. Ochrona przed Korozją 50, 7: 294-296.
- Carmena N., L. Laiz, J.M. Gonzalez, M. Garcia-Heras, M.A. Villegas and C. Saiz-Jimenez. 2006. Biodeterioration of historic stained glasses from the Cartuja de Miraflores (Spain). International Biodeterioration & Biodegradation 58: 155-161.
- Cwalina B. 2003. Role of microorganisms in deterioration of building stones. Journal of the Polish Mineral Engineering Society 1,9: 39-48.
- Dade H.A. 1958. Moulding of lenses. C.P. News 4: 17-19.
- Drewello R. and R. Weissmann. 1996. Microbially influenced corrosion of silicate glass. Biodeterioration and Biodegradation papers of 10th International Biodeterioration and Biodegradation Symposium, Hamburg, 133, 17-22.
- Drewello R. and R. Weissmann. 1997. Microbially influenced corrosion of glass. Applied Microbiology and Biotechnology 47: 337-346.
- Garcia-Valles M., D. Gimeno-Torrente, S. Martinem-Manent and J.L. Fernandez-Turiel. 2003. Medieval stained glass in a Mediterranean: typology, weathering and glass decay and associated biomineralization processes and products. American Mineralogist 88: 1996-2006.
- Gorbushina A.A. and K.A. Palinska. 1999. Biodeteriorative process on glass: experimental proof of the role of fungi and cyanobacteria. Aerobiologia 15: 183-191.
- Jabłkowski J. 1962. Glass and its properties. Technology of glass (in Polish). Arkady, Warszawa 59-61.
- Janda K. 2005. Microorganisms in mechanical oils lubricants. Microbiology of materials, (eds) B. Zyska, Z. Żakowska (in Polish). Wydawnictwo Politechniki Łódzkiej, Łódź, 459-462.
- Kaiser J.P., S. Trumpler and P. Raschle. 1996. In: Hertz E., Flemming H. C, Sand W. (eds.) Microbially influenced corrosion of materials. Springer, Berlin, 353-357.
- Kerner-Gang W. 1968. Zur frage der Entstehung von Schimmelpilzpuren auf optischen Gläsern. Material und Organismen 4: 291-296.
- Ohtsuki T. 1943. Über das Verschimmeln der gläsernen Gegenstande. Proceedings Imp. Academy of Tokyo 19: 688-693.
- Richens M. (1997): Attack on Glass: Corrosion attack mechanisms. http://ceramic-materials.com/cermat/education/143.html
- Szumigaj J., Z. Żakowska and L. Klimek. 2008. Exopolysaccharide production by Bacillus strains colonizing packaging foils. Polish Journal of Microbiology 57, 4: 281-287.
- Watkins R.D. 2003. Mould in optical instruments. J. Comm. Eye Health 16,46: 28-29.
- Weissman R. and R. Drewello R. 1996. Attack on glass. In: E. Hertz, H.C. Flemming, W. Sand (eds.) Microbially influenced corrosion of materials. Springer, Berlin, 339-352.
- Zyska B. 2001. Microbiological disasters, malfunctions and hazards in industry and heavy constructions (in Polish). Wydawnictwo Politechniki Łódzkiej, Łódź.
Typ dokumentu
Bibliografia
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