Acknowledgement
본 연구는 2022년도 환경부의 재원으로 한국환경산업기술원(KEITI)의 지원을 받아 "병원 규모에 최적화된 감염 우려 의료폐기물 멸균기 개발"을 수행한 연구결과입니다(No. 2021003350003).
References
- Kim, Y.W., Trends in markets for home meal replacamnets. Food Sci. Ind., 50, 57-66 (2017).
- Kim, T.K., Choi, H.D., Kim, Y.B., Jeon, K.H., Choi, Y.S., Home meal replacement status and technology Trends. Food Ind. Nut., 22, 1-7 (2017).
- Korea Agro-Fisheries & Food Trade Corporation (KAF-FTC), Major statistics of food and restaurant industry in 2022, KAFFTC, Naju, Korea (2022).
- Ministry of Food and Drug Safety (MFDS), Food code, MFDS, Cheongju, Korea (2023).
- Ministry of Food and Drug Safety (MFDS), Guidelines for the recognition of equivalence in sterilization heat treatment of meat, eggs, and dairy products, MFDS, Cheongju, Korea (2018).
- Berendsen, E.M., Zwietering, M.H., Kuipers, O.P., Wells-Bennik, M.H., Two distinct groups within the Bacillus subtilis group display significantly different spore heat resistance properties. Food Microbiol., 45, 18-25 (2015). https://doi.org/10.1016/j.fm.2014.04.009
- Hassan, H.F., Ramaswamy, H.S., Heat resistance of G. stearothermophilus and C. sporogenes in carrot and meat alginate purees. J. Food. Process. Preserv., 35, 376-385 (2011). https://doi.org/10.1111/j.1745-4549.2011.00519.x
- Chung, G.T., Kang, D.H., Yoo, C.K., Choi, J.H., Seong, W.K., The first outbreak of botulism in Korea. Korean J. Clin. Microbiol., 160-163 (2003).
- Lee, J.H., Song, G.C., Lee, K.T., Quality differences of retorted Samgyetangs as affected by F 0-value levels. Korean J. Food Preserv., 23, 848-858 (2016). https://doi.org/10.11002/kjfp.2016.23.6.848
- Coonrod, J.D., Leadley, P.J., Eickhoff, T.C., Antibiotic susceptibility of Bacillus species. J. Infect. Dis., 123, 102-105 (1971). https://doi.org/10.1093/infdis/123.1.102
- Park, W.C., Lee, M.A., Sung, I.W., Phosphorus removal from advanced wastewater treatment process using PAC. J. Korean. Soc. Environ. Eng., 36, 96-102 (2014). https://doi.org/10.4491/KSEE.2014.36.2.96
- Yoon, Y.H., Nam, S.H., Joo, J.C., Ahn, H.S., Photocatalytic disinfection of indoor suspended microorganisms (Escherichia coli and Bacillus subtilis spore) with ultraviolet light. JKAIS, 15, 1204-1210 (2014). https://doi.org/10.5762/KAIS.2014.15.2.1204
- Park, L.Y., Lee, S.H., Effect of chitosan on shelf life of cooked rice contaminated artificially with Bacillus sp. J. Korean. Soc. Food. Sci. Nutr., 36, 1589-1595 (2007). https://doi.org/10.3746/jkfn.2007.36.12.1589
- Kim, H.I., Jeon, D.H., Yoon, H.J., Kwak, I.S., Eom, M.O., Sung, J.H., Park, N.Y., Won, S.A., Bae, S.Y., Lee, Y.J., Kim, S.H., Establishing test method of sporicidal activity of commercial sterilants. J. Food Hyg. Saf., 24, 312-317 (2009).
- Schaeffer, A.B., Fulton, M.D.A., Simplified method of staining endospores. Science, 77, 194 (1933).
- Chan, S.W., Lee, S.Y., Yoon, L.Y., Kim, K.B.W.R., Lee, C.J., Kwak, J.H., Kim, M.J., Kim, D.H., Jung, S.A., Kim, H.J., Ahn, D.H., Effect of physicochemical treatment on growth inhibition of hanseniaspora uvarum Y1 from yogurt. J. Korean Soc. Food Sci. Nutr., 40, 1781-1786 (2011). https://doi.org/10.3746/jkfn.2011.40.12.1781
- Lee, T.K., Roh, M.H., Identification and physiological characteristics of microorganism isolated from spoiled sweetened adzuki ann. J. Korean. Soc. Food. Sci. Nutr., 35, 1456-1460 (2006). https://doi.org/10.3746/jkfn.2006.35.10.1456
- Lee, P.M., Jung, M.G., Park, J.H., Song, C.G.. Investigation of bioaerosol in Arcade-type traditional market. KSW, 16, 1-7 (2021). https://doi.org/10.21097/ksw.2021.11.16.4.1
- Lee, H.E., Park, H.B., Characteristics and Market Trends of Natural Plant Protection Agent. World Agriculture. 176, 1-14 (2015).
- National Institute of Environmental Research (NIER), Waste process test standards, NIER, Incheon, Korea (2023).
- Hwang, C.S., Kim, H.H., Oh, B.C., Kim, Y.S., Shin, D.H., Identification and characteristics of microorganism isolated from spoiled red bean paste. Food Sci. Biotechnol., 13, 758-761 (2004).
- Fraiha, M., Ferraz, A.C.D.O., Biagi, J.D., Determination of thermobacteriological parameters and size of Bacillus stearothermophilus ATCC 7953 spores. Food Sci. Technol., 30, 1041-1045 (2010). https://doi.org/10.1590/S0101-20612010000400032
- Kempf, M.J., Schubert, W.W., Beaudet, R.A., Determination of lethality rate constants and D-values for Bacillus atrophaeus (ATCC 9372) spores exposed to dry heat from 115℃ to 170℃. Astrobiology, 8, 1169-1182 (2008). https://doi.org/10.1089/ast.2007.0208
- Kumars, M., Dunders, G., Morein, N., Medical Microbiology II: Sterilization, Laboratory Diagnosis and Immunological Response, 2th ed, Cambridge Stanford Books, Broken Arrow, OK, USA (2020).
- Gibbons, H.S., Broomall, S.M., McNew, L.A., Daligault, H., Chapman, C., Bruce, D., Karavis, M., Krepps, M., McGregor, P.A., Hong, C., Park, K.H., Akmal, A., Feldman, A., Lin, J.S., Chang, W.E., Higgs, B.W., Demirev, P., Lindquist, J., Liem, A., Fochler, E., Read, T.D., Tapia, R., Johnson, S., Bishop-Lilly, K.A., Detter, C., Han, C., Sozhamannan, S., Rosenzweig, C.N., Skowronski, E.W., Genomic signatures of strain selection and enhancement in Bacillus atrophaeus var. globigii, a historical biowarfare simulant. PLoS One, 6, e17836 (2011).
- Guo, Y., Huang, E., Yang, X., Zhang, L., Yousef, A.E., Zhong, J., Isolation and characterization of a Bacillus atrophaeus strain and its potential use in food preservation. Food Control, 60, 511-518 (2016). https://doi.org/10.1016/j.foodcont.2015.08.029
- Food and Drug Administration (FDA), Biological Indicator (BI) Premarket Notification [510(k)] Submissions, FDA, Rockville, MD, USA (2007).
- Hong, J.T., Treat arthritis with bee venom. The Sci. Technol., 2, 46-47 (2005).