Please use this identifier to cite or link to this item: http://elar.urfu.ru/handle/10995/75681
Title: Surface irradiation of chicken eggs by nanosecond electron beam
Authors: Sokovnin, S. Yu.
Vazirov, R. A.
Balezin, M. E.
Krivonogova, A. S.
Issue Date: 2017
Publisher: RAD Association
Citation: Surface irradiation of chicken eggs by nanosecond electron beam / S. Yu. Sokovnin, R. A. Vazirov, M. E. Balezin et al. // RAD Conference Proceedings. — 2017. — Vol. 2. — P. 11-14.
Abstract: The irradiation exposure experiments were carried out by means of the pulsed repetitive nanosecond accelerator URT-0.5 (electron energy of up to 500 keV, a pulse width of 50 ns, pulse repetition rate of up to 200pps). The determination of the distribution of the absorbed dose (AD) in the depth in the polyethylene was conducted by a gray wedge. The measurement of the electron beam AD on the surface of the shell (removed from the eggs) and under the shell, as well as beneath the absorber layer (polyethylene 80 microns thick) was also performed by the film dosimeter. Thermoluminescent dosimeters, TLD-500, were used to determine the distribution of the bremsstrahlung AD inside chicken eggs. These results lead to the conclusion that the irradiation of an electron beam with the AD level of 5 kGy is sufficient for complete disinfection on the surface of an egg. The AD inside of it will not exceed 8 cGy because of bremsstrahlung. © RAD Conference Proceedings. All rights reserved.
Keywords: BREMSSTRAHLUNG
CHICKEN EGG
DISINFECTION
DOSIMETRY
ELECTRONS
RADIATION TREATMENT
SALMONELLA
ANIMALS
DISINFECTION
DOSIMETERS
DOSIMETRY
ELECTRON BEAMS
ELECTRON ENERGY LEVELS
ELECTRONS
IRRADIATION
POLYETHYLENES
PULSE REPETITION RATE
SALMONELLA
ABSORBER LAYERS
BREMSSTRAHLUNG
CHICKEN EGGS
ELECTRON ENERGIES
NANOSECOND ELECTRON
RADIATION TREATMENTS
SURFACE IRRADIATION
THERMOLUMINESCENT DOSIMETERS
RADIATION
URI: http://elar.urfu.ru/handle/10995/75681
Access: info:eu-repo/semantics/openAccess
Conference name: 5th International Conference on Radiation and Applications in Various Fields of Research, RAD 2017
Conference date: 12 June 2017 through 16 June 2017
SCOPUS ID: 85058130485
PURE ID: 8414410
ISSN: 0094-243X
DOI: 10.21175/RadProc.2017.03
RSCF project card: 16-16-04038
Appears in Collections:Научные публикации ученых УрФУ, проиндексированные в SCOPUS и WoS CC

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