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Commonly used ultraviolet radiation dose control table, bacteria, viruses, fungi, spores, etc

Last updated: 15:58:43, February 8, 2020

Application of ultraviolet light and sterilization principle

According to the wavelength, ultraviolet (UV) light is usually divided into UVA (315 ~ 400 nm), UVB (280 ~ 315 nm), UVC (200 ~ 280 nm). UVC band is also called "sun blind" band, because of the strong absorption of ozone in the atmosphere, there is almost no ultraviolet light in the near earth solar spectrum.

The main applications of UVC include disinfection / purification of water / air / surface, analytical instruments (spectrophotometry, liquid chromatography, gas chromatography, etc.), and mineral analysis. UVC band has short wavelength and high energy. It can destroy the molecular structure of microbial organism (bacteria, viruses and other pathogens) cells in a short time. By destroying the DNA and RNA of microorganisms to prevent their reproduction, it can achieve efficient and rapid broad-spectrum sterilization effect, so as to sterilize water, air and surface of objects, and make cells unable to regenerate. Therefore, it is widely used in sterilization of water and air Disinfection. Data show that only 30 MW / cm2UV irradiation intensity of UVC can kill almost 100% of most bacteria in one second. The effect is very significant, which can be widely used in the field of medical and health. In the field of personal health and family health, ultraviolet light can be used for disinfection of water cups, bowls and chopsticks, air purification and sterilization, killing insects, sterilization and deodorization of shoes and socks, and disinfection of baby bottles, etc.


Ultraviolet germicidal efficacy

The time and dose of UV sterilization are different according to the types of microorganisms. Different bacteria have different absorption peaks. For example, the maximum absorption wavelengths of DNA and Escherichia coli are 265 nm, while those of Cryptosporidium and bacteriophage are 261 nm and 271 nm respectively. Therefore, the required sterilization time should be different. When the UV radiation intensity is 3 × 104 μW/cm2The time required to kill the virus, bacteria, mould spores and algae was 0.1-1.0 s, 1.0-8.0 s and 5.0-40.0 s, respectively. According to the research team of Dong Xiaoping, an expert from the Institute for virus disease control and prevention of the Chinese Center for Disease Control and prevention, the SARS virus can be killed in 30 minutes by UVC irradiation with an intensity of more than 90 μ w / cm 2.

Ultraviolet dose plays an important role in the sterilization process. The UV dose can be expressed as the product of UV intensity and irradiation time. Under the condition of sufficient ultraviolet dose, the inactivated virus bacteria will not revive, but when the dose is insufficient, many virus bacteria which are inactivated by ultraviolet radiation can repair their damaged structures with the help of light. When the UV dose is the same, high intensity, short time or low intensity and long time irradiation can be used to achieve the purpose of sterilization. Kill 1 × 104&The required UV dose was 30 MJ / cm2About 70 MJ / cm is needed to kill the same number of spores2About the UV dose.


Radiation dose of common ultraviolet sterilization

organismRadiation dose (μ WS / cm)2
Bacteria90% (1 LOG Reduction)99% (2 LOG Reduction)
Bacillus anthracis anthrax45208700
anthrax spore 2432046200
Bacillus megaterium sp. (spores)27305200
Bacillus megaterium sp. (VEGF.)13002500
Paratyphoid Bacillus320061
Spores of Bacillus subtilis 1160022000
Bacillus subtilis580011000
Tetanus bacilli1300022000
Corynebacterium diphtheriae33706510
Salmonella typhi21404100
Escherichia coli30006600
Leptospira - infectious jaundice3150600
Legionella pneumophila605012300
Micrococcus globosus100015400
Mycobacterium tuberculosis620010000
Neisseria44008500
Agrobacterium tumefaciens44008000
Proteus vulgaris30006600
Pseudomonas aeruginosa550010500
Pseudomonas fluorescens35006600
Salmonella enteritidis40007600
Salmonella paratyphi32006100
Salmonella typhi21504100
Salmonella typhimurium800015200
Sarcococcus luteus1970026400
Serratia marcescens24206160
Shigella dysentery22004200
Shigella flexneri dysentery17003400
Shigella paradysentery16803400
Spirillum rubrum44006160
Staphylococcus albus18405720
Staphylococcus pyogenes aureus26006600
Staphylococcus haemolyticus 21605500
Streptococcus lactis61508800
Streptococcus viridis20003800
Vibrio cholerae - cholera33756500
mould90%99%
Aspergillus flavus6000099000
Gray green mold4400088000
Aspergillus niger strain
132000330000
Mucor racemosus a
1700035200
Mucor racemosus B1700035200
Oosporium lactis500011000
Penicillium expansum
1300022000
Penicillium Loudi
1300026400
Penicillium digitatum
4400088000
protozoan
90%99%
Chlorella vulgaris
1300022000
Nematode eggs
4500092000
paramecium
1100020000
virus
90%99%
E. coli
26006600
Infectious hepatitis
58008000
influenza
34006600
Poliovirus
31506600
Tobacco leaf disease
240000440000
Yeast
90%99%
beer yeast
33006600
Common yeast cake
600013200
Saccharomyces cerevisiae
600013200
Saccharomyces ellipsoides
600013200
Yeast spore
800017600