• Title/Summary/Keyword: Electron Beam Irradiation

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Elimination of Escherichia coli O157:H7 Contaminated in Frozen Beef by Electron Beam Irradiation (전자선 조사에 의한 동결육에 오염된 Escherichia coli O157:H7 의 제거)

  • Kwon, Oh-Jin;Yang, Jae-Seung;Lim, Seong-Il;Byun, Myung-Woo
    • Korean Journal of Food Science and Technology
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    • v.29 no.4
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    • pp.771-775
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    • 1997
  • Treatment with electron beam irradiation was investigated for the elimination of Escherichia coli O157:H7 which has been linked to outbreaks of foodborne illness on undercooked and raw meat. Before treatment, the maximum populations were observed at 16 hr when E. coli O157:H7 was incubated in TSB at $37^{\circ}C$. Incubation at $4^{\circ}C$ did not influence survival and growth of the strain. The numbers of E. coli O157:H7 were present about $10^{7}\;CFU/mL$ in the log $(6\;hr\;at\;37^{\circ}C)$ and stationary phase $(16\;hr\;at\;37^{\circ}C)$ of cells, respectively. Freezing $(24\;hr\;at\;-18^{\circ})$ had a more marked lethal effect. The $D_{10}$ value at $-18^{\circ}C$ of E. coli O157:H7 contaminated in frozen beef was 0.45 kGy, and inactivation factor were $6.67{\sim}11.11$ at the radiation doses of $3{\sim}5\;kGy$. Therefore, electron beam irradiation was an effective method to eleminate of E. coli O157:H7.

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A study of the Electron Beam Irradiator for Core-loss reduction of Grain-oriented silicon Steel

  • Kim Min;Yoon Jeong-Phil;Lee Gi-Je;Cha In-Su;Cho Sung-Oh;Lee Byeong-Cheol;Jeong Young-Uk;Yoo Jae-Gwon;Lee Jong-Min
    • Proceedings of the KIPE Conference
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    • 2001.10a
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    • pp.93-97
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    • 2001
  • A new compact, low-energy electron beam irradiator has been developed. The core-loss of silicon steels can be reduced by magnetic-domain refinement method. The irradiator was developed for the application of core-loss reduction using the method. The beam energy of the irradiator can be varied from 35 to 80 keV and the maximum current is 3mA. The irradiation area is designed to be $30\times30mm2$ now and will be upgraded to $30\times150mm2$ using a scanning magnet and scanning cone. The electron beam generated from 3 mm diameter LaB6 is extracted to the air for the irradiation of the silicon steels in the air. A special irradiation port was developed for this low-energy irradiator. A havar foil with $4.08{\mu}m$ thickness were used for the window and a cold air-cooling system keeps the foil structure by removing heat at the window. The irradiator system and its operation characteristics will be discussed.

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The Comparison of a Conformational Alteration of Ovalbumin Irradiated with Radiation of Gamma and Electron Beam (감마선 및 전자선 조사에 따른 Ovalbumin의 구조 변화 비교)

  • 변명우;서지현;김재훈;김미리;오남순;이주운
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.33 no.7
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    • pp.1169-1174
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    • 2004
  • This study was carried out to assess the effects of electron beam (EB) radiation on the conformational changes of ovalbumin (OVA), based on the early works using gamma irradiation. The applied doses of OVA used were 3,5,7, and 10 kGy, respectively. The conformational alterations were measured with SDS-PAGE, GPC-HPLC, and competitive indirect enzyme-linked immunosorbent assay (Ci-ELISA) using monoclonal anti-OVA IgG antibody. Irradiation caused a degradation and/or an aggregation of OVA molecule. Immunochemical structures of irradiated OVA were altered by irradiation. Effects of gamma and electron beam radiation were similar at the same absorbed doses. These results may be used for inhibition of food allergy and development of immunogen with EB radiation.

PVP Hydrogel Coatings on Polypropylene Fibers using E-beam Irradiation (전자 빔을 이용한 폴리프로필렌 섬유의 PVP 하이드로젤 코팅)

  • Lee, Ji Eun;kwak, Hyo-Bin;Lee, Yong-Hyo;Kim, Kyung-Min;Lim, Jung-Hyurk
    • Journal of Adhesion and Interface
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    • v.20 no.2
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    • pp.66-70
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    • 2019
  • The surface of hydrophobic polypropylene (PP) fibers (spun-bonded fabric) was treated by an atmospheric plasma treatment method. These pre-treated hydrophilic PP fabrics were dip-coated in the aqueous poly(N-vinyl pyrrolidone) (PVP) solution. PVP layers on the surface of PP fiber were crosslinked by an irradiation of electron beam. The thickness of PVP hydrogels coated on the surface was easily controlled by changing the concentration of PVP in coating solution. The stepwise surface treatment, PVP coating, and hydrogel formation via electron beam irradiation were analyzed by the measurement of contact angle, scanning electron microscopy, and optical microscopy.

Microstructure, Hardness, and Fracture Toughness of Surface Composites Fabricated by High-Energy Electron-Beam Irradiation of Fe-Based Metamorphic Alloy Powders and VC Powders (철계 반비정질 합금 분말과 VC 분말을 고에너지 전자빔으로 투사하여 제조된 표면복합재료의 미세조직, 경도, 파괴인성)

  • Nam, Duk-Hyun;Do, Junghyun;Lee, Sunghak
    • Korean Journal of Metals and Materials
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    • v.46 no.10
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    • pp.634-645
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    • 2008
  • In this study, surface composites were fabricated with Fe-based amorphous alloy powders and VC powders by high-energy electron beam irradiation, and the correlation of their microstructure with hardness and fracture toughness was investigated. Mixture of Fe-based metamorphic powders and VC powders were deposited on a plain carbon steel substrate, and then electron beam was irradiated on these powders without flux to fabricate surface composites. The composite layers of 1.3~1.8 mm in thickness were homogeneously formed without defects and contained a large amount (up to 47 vol.%) of hard $Cr_2B$ and $V_8C_7$ crystalline particles precipitated in the solidification cell region and austenite matrix, respectively. The hardness of the surface composites was directly influenced by hard $Cr_2B$ and $V_8C_7$ particles, and thus was about 2 to 4 times greater than that of the steel substrate. Observation of the microfracture process and measurement of fracture toughness of the surface composites indicated that the fracture toughness increased with increasing additional volume fraction of $V_8C_7$ particles because $V_8C_7$ particles effectively played a role in blocking the crack propagation along the solidification cell region heavily populated with $Cr_2B$ particles. Particularly in the surface composite fabricated with Fe-based metamorphic powders and 30 % of VC powders, the hardness and fracture toughness were twice higher than those of the surface composite fabricated without mixing of VC powders.

Effect of Electron Irradiation Energy on the Properties of GZO/SiO2 Thin Films on Polycarbonate (PC 기판위에 증착된 SiO2/GZO박막의 전자빔 조사에너지에 따른 특성 변화)

  • Heo, Sung-Bo;Park, Min-Jae;Jung, Uoo-Chang;Kim, Dae-Il;Cha, Byung-Chul
    • Journal of the Korean institute of surface engineering
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    • v.47 no.6
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    • pp.341-346
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    • 2014
  • Ga-doped ZnO (GZO) single layer and $SiO_2/GZO$ bi-layered films were deposited on Polycarbonate(PC) substrate by radio frequency magnetron sputtering. Influence of the structural, electrical, and optical properties of the films was considered. We have considered the influence of electron irradiation energy of 450 and 900 eV on the stuctural, electrical and optical properties of $SiO_2/GZO$ thin films. The optical transmittance in a visible wave length region increased with the electron irradiation energy. The electrical resistivity of the films were dependent on the electron's irradiation energy. The $SiO_2/GZO$ films irradiated at 900 eV were showen the lowest resistivity of $7.8{\times}10^{-3}{\Omega}cm$. The film which was irradiated by electron at 900 eV shows 84.3% optical transmittance and also shows lower than contact angle of $58^{\circ}$ in this study.

Fast liquid crystal switching performance on indium zinc oxide films with low curing temperature via ion-beam irradiation (이온빔 조사된 저온 소성 인듐 아연 산화막을 이용한 액정의 고속 스위칭 특성 연구)

  • Oh, Byeong-Yun
    • Journal of IKEEE
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    • v.23 no.3
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    • pp.904-909
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    • 2019
  • Using the ion-beam irradiated indium zinc oxide (IZO) films which was cured at $100^{\circ}C$, uniform LC and homogeneous alignment of liquid crystal (LC) molecules was achieved. The IZO film was deposited on the glass substrate at the curing temperature of $100^{\circ}C$ and irradiated by the ion-beam which is an LC alignment method. To verify the LC alignment characteristics, polarizing optical microscope and the crystal rotation method were used. Additionally, it was confirmed that the LC cell with the IZO films had an enough thermal budget for high-quality LC applications. Field emission scanning electron microscope was conducted as a surface analysis to evaluate the effect of the ion-beam irradiation on the IZO films. Through this, it was revealed that the ion-beam irradiation induced rough surface with anisotropic characteristics. Finally, electro-optical (EO) performances of the twisted-nematic cells with the IZO films were collected and it was confirmed that this cell had better EO performances than the conventional rubbed polyimide. Furthermore, the polar anchoring energy was measured and a suitable value for stable LC device operation was achieved.

Facile preparation of self-assembled wool-based graphene hydrogels by electron beam irradiation

  • Park, Mira;Pant, Bishweshwar;Choi, Jawun;Park, Yong Wan;Lee, Chohye;Shin, Hye Kyoung;Park, Soo-Jin;Kim, Hak-Yong
    • Carbon letters
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    • v.15 no.2
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    • pp.136-141
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    • 2014
  • Three dimensional self-assembled graphene hydrogels were easily fabricated by electron beam irradiation (EBI) using an aqueous solution of wool/poly(vinyl alcohol) and graphene oxide (GO). After exposure to various levels of EBI radiation, the highly porous, self-assembled, wool-based graphene hydrogels were characterized using scanning electron microscopy and Fourier-transform infrared spectroscopy; to determine the gel fraction, degree of swelling, gel strength, kinetics-of-swelling analyses and removal of hexavalent chromium (Cr(VI)) from the aqueous solution. X-ray diffraction results confirmed that EBI played a significantly important role in reducing GO to graphene. The adsorption equilibrium of Cr(VI) was reached within 80 min and the adsorption capacity was dramatically increased as the acidity of the initial solution was decreased from pH 5 to 2. Changes in ionic strength did not exert much effect on the adsorption behavior.

Frequency dependance of Transformer Oils due to electron beam irradiation (전자선조사에 따른 변압기유의 주파수의존특성)

  • Hong, Nung-Pyo;Park, Woo-Hyun;So, Byeong-Moon;Kim, Wang-Kon;Hong, Jin-Woong
    • Proceedings of the KIEE Conference
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    • 1995.07c
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    • pp.1126-1128
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    • 1995
  • In order to investigate the electrical properties for transformer oils due to electron bean irradition, the dielectric properties was made researches by dose of irradition To measure the dielectric loss of irradiated specimen, coaxial cylindrical liquid electrode was used, geometric capacitance was confirmed to 16[pF]. Experiments for measuring the dielectric loss were performed at $20{\sim}120[^{\circ}C]$ in temperature range, $30{\sim}1.5{\times}10^5$[Hz] in frequency range and $300{\sim}1500$[mV] in voltage range and then, the result of experiment for the movement of carrier and the physical constants to contribute dielectric properties of specimen due to electron beam irradiation introduced.

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Enhancement of a mechanical property of metal sheaths (Cu and Nb) of MgB2 superconducting wires by E-beam irradiation

  • Kim, C.J.;Lee, T.R.;Jun, B.H.
    • Progress in Superconductivity and Cryogenics
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    • v.24 no.3
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    • pp.30-34
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    • 2022
  • Effects of electron beam (EB) irradiation on the mechanical strength of Cu (conducting sheath) and Nb (diffusion barrier) of Cu/Nb/MgB2 superconducting was investigated. Wire- and tape-type Cu/Nb/MgB2 samples were irradiated at E-beam energy of 2.5 MeV and 5 mA and a maximum E-beam dose was 5×1017 e/m2. The hardness value of Cu and Nb region was measured by the Vickers micro-hardness method. In the case of the wire sample, the hardness of Cu and Nb increased proportionally as the dose was increased up to 5×1017 e/m2, whereas in the case of the tape sample, the hardness increased up to a dose of 0.5×1017 e/m2, and decreased slightly 5×1017 e/m2. The hardness increase of Cu and Nb is believed to be due to the decrease of the deformability of Cu and Nb due to the defects formed inside the materials by E-beam irradiation.