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Study of biofilm associated bacteria on polyvinyl chloride, stainless steel and glass surfaces in a model cooling tower system with different microbiological methods

Year 2012, Volume: 71 Issue: 1, 63 - 76, 05.10.2012

Abstract

Cooling towers are an integral part of large range of industrial processes. The conditions of cooling water systems provide an ideal environment for microbial growth and biofilm formation. Microorganisms which enter via makeup water or air to the system form a biofilm layer on the inside surfaces of cooling tower which contain water and limited nutrients. Biofilm formation in cooling tower systems is undesirable for operational and public health reasons. Thus, microbial load should be monitored and kept under control. In this study, bulk water and biofilm associated microbial load were analyzed in terms of heterotrophic plate count (HPC), epifluorescence microscopy, carbohydrate quantity, total and free ATP concentration and compared material dependence. Kruskal-Wallis statistical analysis revealed that there were not significant differences between the tested slide materials according to HPC, DAPI-CTC staining, and ATP measurement. The ATP measurement together with fluorescence staining reflected the changes in the biofilms more distinctly than the HPC.

References

  • Allison D. G. (2003). The biofilm matrix. Biofouling, 19: 139-150.
  • Cloete T.E. (2003) Biofouling control in industrial water systems: What we know and what we need to know?. Materials and Corrosion, 54: 520-526.
  • Costerton J.W. (1999) Introduction to biofilm. International Journal of Antimicrobial Agents, 11: 217-221.
  • Davenport K., Wayman D. and Michie I. (2002) Using ATP to determine biocide efficacy. By Biotrace International, Technical Paper, Issue Ref: MLM197 TEP005.
  • Dubois M., Gilles K.A., Hamilton J.K., Rebers P.A. and Smith F. (1956) Colorimetric method for determination of sugars and related substances. Analytical Chemistry, 28: 350-356.
  • EPA (2003) National emission standards for hazardous air pollutants for semiconductor manufacturing 40. CFR Part 63, RIN 2060- AG93, Federal Register 68: 27913–27931.
  • Gagnon G.A. and Slawson R.M. (1999) An efficient biofilm removal method for bacterial cells exposed Microbiological Method, 34: 203-214. water. Journal of
  • Johansen C., Falholt P. and Gram L. (1997) Enzymatic removal and disinfection of bacterial biofilms. Microbiology, 63: 3724-3728. and Environmental
  • Kimiran-Erdem A., Sanli-Yurudu N.O., Arslan- Aydogdu E.O., Dogruoz N., Zeybek Z., Türetgen, I. and Cotuk A. (2008) Quantitative Microbiological Communities from the Surfaces of Different Cooling Tower Materials. IUFS Journal of Biology, 67(1): 9-16. of Biofilm
  • Kooij D. and Veenendaal H.R. (2002) Biofilm formation and multiplication of Legionella on synthetic pipe materials in contact with treated water under static and dynamic conditions. In: Marre, R., Kwaik, Y.A., Bartlett, C., Cianciotto, N.P., Fields, B.S., Frosch, M., Hacker, J., Luck, P.S. (Eds.) Legionella, ASM Press, Washington D.C., 1-55581-230-9., pp. 176-180.
  • Lim D.V., Simpson J.M., Kearns E.A. and Kramer M.F. technologies bioterrorism Microbiology Reviews, 18(4): 583–607. of biowarfare. Clinical
  • complex microbial flora. Applied Environmental
  • Microbiology, 60 (5): 1585-1592.
  • Rogers J., Dowsett A.B., Dennis P.J., Lee, J.V. and Keevil C.W. (1994b). Influence plumbing materials on biofilm formation and growth of Legionella pneumophila in potable water system. Applied and Environmental Microbiology, 60: 1842-1851.
  • Sanli-Yurudu N.O., Kimiran-Erdem, A. and Cotuk A. (2007) Studies on the efficacy of Chloramine T trihydrate (N-chloro-p-toluene sulfonamide) against planktonic and sessile populations of different International Environmental Health, 210: 147-153. strains. Journal of Hygiene and
  • Schwartz T., Hoffmann S. and Obst U. (2003) Formation of natural biofilms during chlorine dioxide and u.v. disinfection in a public drinking water distribution system. Journal of Applied Microbiology, 95: 591–601.
  • Türetgen I. (2008) Induction of viable but nonculturable (VBNC) state and the effect of multiple subculturing on the survival of Legionella pneumophila strains in the presence of monochloramine. Annals of Microbiology, 58(1): 153-156.
  • Türetgen I. and Cotuk A (2007) Monitoring of biofilm-associated Legionella pneumophila on different substrata in model cooling tower system. Assessment, 125: 271-279. Monitoring and
  • Zacheus O.M., Iivanainen E.K., Nissinen T.K., Lehtola M.J. and Martikainen P.J. (2000) Bacterial biofilm formation on polyvinyl chloride, polyethylene and stainless steel exposed to ozonated water. Water Research, 34 (1): 63-70.
  • Zhang X., Bishop P.L. and Kinkle B.K. (1999) Comparison quantifying extracellular polymers in bioŞlms. Water Science and Technology, 39 (7): 211-218.

Model bir soğutma kulesi sisteminde polivinil klorid, paslanmaz çelik ve cam yüzeyler üzerindeki biyofilmle ilişkili bakterilerin farklı mikrobiyolojik yöntemlerle incelenmesi

Year 2012, Volume: 71 Issue: 1, 63 - 76, 05.10.2012

Abstract

Soğutma kuleleri birçok endüstriyel sürecin parçasıdır. Soğutma suyu sistemindeki koşullar mikrobiyal gelişim ve biyofilm oluşumu için ideal bir ortam sağlar. Tamamlama suyu veya havadan sisteme giren mikroorganizmalar su ve kısıtlı besin içeren soğutma kulesinin iç yüzeylerinde biyofilm tabakası oluştururlar. Soğutma kulesi sistemlerinde biyofilm oluşumu, sistemin çalışma koşulları ve kamu sağlığı nedenleri ile istenmeyen bir durumdur. Bu nedenle mikrobiyal yük takip edilmeli ve kontrol altında tutulmalıdır. Çalışmada su ve biyofilmle ilişkili mikrobiyal yük heterotrofik plak sayım, epifloresan mikroskobi, karbonhidrat miktarı, toplam ve serbest ATP konsantrasyonu açısından incelenmiş ve materyaller kıyaslanmıştır. Kruskal-Wallis istatistik analizine göre test edilen malzemeler arasında heterotrofik plak sayım, epifloresan mikroskobi, toplam ve serbest ATP konsantrasyonu açısından önemli bir fark tespit edilmemiştir. Floresan boyama ve ATP ölçümü tekniklerinin birlikte kullanımı biyofilmdeki değişiklikleri heterotrofik plak sayımdan daha net yansıtmaktadır

References

  • Allison D. G. (2003). The biofilm matrix. Biofouling, 19: 139-150.
  • Cloete T.E. (2003) Biofouling control in industrial water systems: What we know and what we need to know?. Materials and Corrosion, 54: 520-526.
  • Costerton J.W. (1999) Introduction to biofilm. International Journal of Antimicrobial Agents, 11: 217-221.
  • Davenport K., Wayman D. and Michie I. (2002) Using ATP to determine biocide efficacy. By Biotrace International, Technical Paper, Issue Ref: MLM197 TEP005.
  • Dubois M., Gilles K.A., Hamilton J.K., Rebers P.A. and Smith F. (1956) Colorimetric method for determination of sugars and related substances. Analytical Chemistry, 28: 350-356.
  • EPA (2003) National emission standards for hazardous air pollutants for semiconductor manufacturing 40. CFR Part 63, RIN 2060- AG93, Federal Register 68: 27913–27931.
  • Gagnon G.A. and Slawson R.M. (1999) An efficient biofilm removal method for bacterial cells exposed Microbiological Method, 34: 203-214. water. Journal of
  • Johansen C., Falholt P. and Gram L. (1997) Enzymatic removal and disinfection of bacterial biofilms. Microbiology, 63: 3724-3728. and Environmental
  • Kimiran-Erdem A., Sanli-Yurudu N.O., Arslan- Aydogdu E.O., Dogruoz N., Zeybek Z., Türetgen, I. and Cotuk A. (2008) Quantitative Microbiological Communities from the Surfaces of Different Cooling Tower Materials. IUFS Journal of Biology, 67(1): 9-16. of Biofilm
  • Kooij D. and Veenendaal H.R. (2002) Biofilm formation and multiplication of Legionella on synthetic pipe materials in contact with treated water under static and dynamic conditions. In: Marre, R., Kwaik, Y.A., Bartlett, C., Cianciotto, N.P., Fields, B.S., Frosch, M., Hacker, J., Luck, P.S. (Eds.) Legionella, ASM Press, Washington D.C., 1-55581-230-9., pp. 176-180.
  • Lim D.V., Simpson J.M., Kearns E.A. and Kramer M.F. technologies bioterrorism Microbiology Reviews, 18(4): 583–607. of biowarfare. Clinical
  • complex microbial flora. Applied Environmental
  • Microbiology, 60 (5): 1585-1592.
  • Rogers J., Dowsett A.B., Dennis P.J., Lee, J.V. and Keevil C.W. (1994b). Influence plumbing materials on biofilm formation and growth of Legionella pneumophila in potable water system. Applied and Environmental Microbiology, 60: 1842-1851.
  • Sanli-Yurudu N.O., Kimiran-Erdem, A. and Cotuk A. (2007) Studies on the efficacy of Chloramine T trihydrate (N-chloro-p-toluene sulfonamide) against planktonic and sessile populations of different International Environmental Health, 210: 147-153. strains. Journal of Hygiene and
  • Schwartz T., Hoffmann S. and Obst U. (2003) Formation of natural biofilms during chlorine dioxide and u.v. disinfection in a public drinking water distribution system. Journal of Applied Microbiology, 95: 591–601.
  • Türetgen I. (2008) Induction of viable but nonculturable (VBNC) state and the effect of multiple subculturing on the survival of Legionella pneumophila strains in the presence of monochloramine. Annals of Microbiology, 58(1): 153-156.
  • Türetgen I. and Cotuk A (2007) Monitoring of biofilm-associated Legionella pneumophila on different substrata in model cooling tower system. Assessment, 125: 271-279. Monitoring and
  • Zacheus O.M., Iivanainen E.K., Nissinen T.K., Lehtola M.J. and Martikainen P.J. (2000) Bacterial biofilm formation on polyvinyl chloride, polyethylene and stainless steel exposed to ozonated water. Water Research, 34 (1): 63-70.
  • Zhang X., Bishop P.L. and Kinkle B.K. (1999) Comparison quantifying extracellular polymers in bioŞlms. Water Science and Technology, 39 (7): 211-218.
There are 20 citations in total.

Details

Primary Language English
Journal Section Makaleler
Authors

Nazmiye Ozlem Sanli Yurudu This is me

Publication Date October 5, 2012
Submission Date October 5, 2012
Published in Issue Year 2012 Volume: 71 Issue: 1

Cite

AMA Sanli Yurudu NO. Study of biofilm associated bacteria on polyvinyl chloride, stainless steel and glass surfaces in a model cooling tower system with different microbiological methods. Eur J Biol. October 2012;71(1):63-76.