3[1]A Hollaender, B M Duggar. Irradiation of plant viruses and microorganisms with monochromatic light. Ⅲ. Resistance of the Virus of Typical Tobacco Mosaic and Escherichia Coli to Radiation from L 3000 to L 2250.A See Title Proc N A S, 1936,22:19~24
4[2]A M Rauth. The physical state of viral nucleic acid and the sensitivity of viruses to ultraviolet light. Biophysical Journal, 1965, 5:257~273
5[3]W F Powell. Radiosensitivity as an index of herpes simplex virus development. Virology, 1959, 9:1 ~ 19
6[4]K G Linden, G-A Shin, M D Sobsey. Comparison of monchromatic and polychromatic UV light for disinfection efficacy. Proceedings :American Water Works Association Water Quality Technology Conference. Salt Lake City, Utah, American Water Works Association, Denver, Colorado, November 5~9, 2000
7[5]A H Havelaar, C C E Meulemans, W M Pot-Hogeboom, J Koster.Inactivation of bacteriophage MS2 in wastewater effluent with monochromatic and polychromatic ultraviolet light. Wat Res, 1990,24(11):1 387~1 393
8[6]K G Linden, J L Darby. Estimating effective germicidal dose from medium pressure UV lamps. Journal of Environmental Engineering,1997,123(11):1 142~1 149
9[7]H B Wright. Comparison and validation of UV dose calculation for low and medium pressure mercury arc lamps. Wat Environ Res,2000, 7/8
10[8]A Cabaj, R Sommer, W Pribil, T Haider. What means dose in UV disinfection with medium pressure lamps. Ozone Science & Engineering, 2001, 23: 239~ 244