References
- Ministry of Environment (2007) Order control task manual. pp. 2- 22 & 299-305. Seoul. Korea.
- Kim, K. H., S. H. Kim, Y. R. Jung, M. G. Kim, J. H. Kim, H. Y. Park, J. K. Lee, Y. J. Jee, and K. H. Kim (2006) A Study on odor evaluation of automobile air conditioner evaporator by using labscale test bench. The Korean Society of Automotive Engineers 11: 685-691.
- Ryu, Y. J., I. H. Lee, and M. G. Kim (2010) Investigation of reproduction method for malodor emitted from automobile air conditioner and identification of VOCs from evaporator using test cooling bench. Korean Soc. Odor Res. Eng. 10: 108-113.
- Uchiyama, K., O. Kasebe, K. Kobayashi, S. Sato, and H. Ito (2003) Analysis for adsorbed odor from car air conditioner evaporator. JSAE Annual Congress 37: 1-4.
- Rose, L. J., R. B. Simmons, S. A. Crow, and D. G. Ahearn (2000) Volatile organic compounds associated with microbial growth in automobile air conditioning systems. Curr. Microbiol. 41: 206-209. https://doi.org/10.1007/s002840010120
- Simmons, R. B., L. J. Rose, S. A. Crow, and D. G. Ahearn (1999) The occurrence and persistence of mixed biofilms in automobile air conditioning systems. Curr. Microbiol. 39:141-145. https://doi.org/10.1007/s002849900435
- Chung, S. K. (2005) Biofilm. J. Rhinol. 12: 5-9.
- Gilbert, P., J. Das, and I. Foley (1997) Biofilms susceptibility to antimicrobials. Adv. Dent. Res. 11: 160-167. https://doi.org/10.1177/08959374970110010701
- Park, S. J. and E. Y. Kim (2014) Determination of malodor-causing chemicals produced by microorganisms inside automobile. KSBB J. 29: 118-123. https://doi.org/10.7841/ksbbj.2014.29.2.118
- Flemming, H. C., R. Thomas, and J. W. Daniel (2007) The EPS matrix: "house of biofilm cells". J. Bacteriol. 189: 7945-7947. https://doi.org/10.1128/JB.00858-07
- Lee, J. H. (2007) The latest research trends in biofilm. KSBMB News. 27: 34-39.
- Simmons, R. B., J. A. Noble, L. Rose, D. L. Price, S. A. Crow, and D. G. Ahearn (1997) Fungal colonization of automobile air conditioning systems. J. Indust. Microbiol. Biotechnol. 19: 150-153. https://doi.org/10.1038/sj.jim.2900451
- Costerton, J. W., P. S. Stewart, and E. P. Greenberg (1999) Bacterial biofilm: a common cause of persistent infection. Science 284: 1318-1322. https://doi.org/10.1126/science.284.5418.1318
- Mori, M., M. Gomi, N. Matsumune, K.Niizeki, and Y. Sakagami (2013) Biofilm-forming activity of bacteria isolated from toilet bowl biofilms and the bactericidal activity of disinfectants against the isolates. Biocontrol Science 18: 129-135. https://doi.org/10.4265/bio.18.129
- Furuhata, K., A.U. Banzai, Y. Kawakami, N. Ishizaki, Y. Yoshida, K. Goto, and M. Fukuyama (2011) Genotyping and chlorine-resistance of Methylobacterium aquaticum isolated from water samples in Japan. Biocontrol Science 16: 103-107. https://doi.org/10.4265/bio.16.103
- Furuhata, K., Y. Kato, K. Goto, M. Hara, S. Yoshida, and M. Fukuyama (2006) Isolation and identification of Methylobacterium species from the tap water in hospitals in Japan and their antibiotic susceptibility. Microbiol. Immunol. 50: 11-17. https://doi.org/10.1111/j.1348-0421.2006.tb03765.x
- Hiraishi, A., K. Furuhata, A. Matsumoto, K. A. Koike, M. Fukuyama, and K. Tabuchi (1995) Phenotypic and genetic diversity of chlorine-resistant Methylobacterium strains isolated from various environments. Appl. Environ. Microbiol. 61: 2009-2107.
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