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Electrochemical Properties of Carbonized Phenol Resin (탄화된 페놀레진의 전기화학적 성질)

  • 김한주;박종은;홍지숙;류부형;박수길
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 1999.11a
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    • pp.629-632
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    • 1999
  • For replacing Li metal ai Lithium ton Bakery(LIB) system. we used carbon powder material which prepared by pyrolysis of phenol resin as starting material. It became amorphous carbon by pyrolysis through it\`s self condensation by thermal treatment. Amorphous carbon can be doped with Li intercalation and deintercalation because it has wide interlayer. however it has a problem with structural destroy causing weak carbon-carbon bond. So. we used ZnCl$_2$ as the pore-forming agent. This inorganic salt used together with the resin serves not only as the pore-forming agent to form open pores, which grow Into a three-dimensional network structure in the cured material, foul also as the microstructure-controlling agent to form a loose structure dope with bulky dopants. We analyzed SEM in order to find to different of structure. and can calculate distance of interlayer. CV test showed oxidation and reduction

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On the Feasibility of Minor Actinides Transmutation in a Low Aspect Ratio Tokamak Fusion Reactor

  • Hong, B.G.
    • Proceedings of the Korean Vacuum Society Conference
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    • 2013.08a
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    • pp.311.2-311.2
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    • 2013
  • Transmutation characteristics of minor actinides in a transmutation reactor based on a Low Aspect Ratio (LAR) tokamak are investigated. One-dimensional neutron transport and burn-up calculation coupled with the tokamak systems analysis were performed to find the optimal system parameters. The dependence of the transmutation characteristics such as neutron multiplication factor, produced power and transmutation rate on an aspect ratio A in the range of 1.5 to 2.0 was investigated. By adding Pu239 in the transmutation blanket as a neutron multiplication material, it was shown that the one unit of the transmutation reactor based on the LAR tokamak producing fusion power of 150 MWth can destroy the minor actinides contained in the spent fuels produced from more than 19 units of l GWe PWRs with production of the power being in the range of 0.9 - 3.4 GWth.

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Effects of Albizziae Cortex Extracts on the Elastase Activity and DPPH and NO Scavenging Activities

  • Leem, Kang-Hyun
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.25 no.2
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    • pp.306-310
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    • 2011
  • Elastic fibers are found in the skin, lungs, arteries, veins and other structures. Elastases destroy the elastic fibers and cause the emphysema and pulmonary hypertension. Oxidative stress is needed for these pathologic changes. Accordingly, present study was designed to investigate the effect of Albizziae Cortex extracts (ACE) on elastase activity and anti-oxidative effects of ACE. The in vitro inhibitory effects on elastase and di(phenyl)-(2,4,6-trinitrophenyl)iminoazanium (DPPH) and nitric oxide (NO) free radical scavenging activities of ACE were measured. The elastase activity was significantly inhibited by ACE. DPPH and NO free radicals were significantly scavenged as well. ACE showed the elastase-inhibiting effects and anti-oxidative activities in vitro. These results suggest that ACE may have potential roles in the treatment of pulmonary emphysema and pulmonary hypertension.

Developmental Toxicity Study of 2-Bromopropane in Icr Mice

  • Her, Jeong-Doo;Kim, Jong-Choon;Kim, Moo-Kang;Yasuo Tarumoto;Chung, Moon-Koo
    • Proceedings of the Korean Society of Toxicology Conference
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    • 2003.10b
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    • pp.116-116
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    • 2003
  • 2-Bromopropane (2-BP), a halogenated propane analogue, is a substitute for chlorofluorocarbones (CFCs) which have a great potential to destroy the ozone layer and to warm the earth's environment. The present study was undertaken to evaluate the potential adverse effects of 2-BP on pregnant dams and embryo-fetal development after maternal exposure during the gestational days (GO) 6 through 17 in ICR mice.(omitted)

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Inert and Halogenated compounds Fire Fighting Agent And Fire Fighting System Research (불활성계와 할로카본계 복합 소화약제 및 소화시스템 개발)

  • Choi, Keun-Joo;Ahn, Sang-Soo;Kim, Jong-Won;Jung, Jong-Jin
    • Proceedings of the Korea Institute of Fire Science and Engineering Conference
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    • 2009.04a
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    • pp.165-171
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    • 2009
  • A compound agent that mixes inert gas agents and halocarbon agents and a complex fire suppression system using the compound agent have been developed. The ultimate goal of this study is to develop the extinguishing agent which doesn't destroy the ozone layer and has low GWP and to develop the fire suppression system. As a result of the test and research for inert gas agents and halocarbon agents, nitrogen and FK-5-1-12 were selected finally and have been tested and studies for three years. Thus, the optimal extinguishing agent and fire suppression system have been accomplished. The performance of the agent and system was tested according to KFI performance test technical standards for gas fire extinguishing system and the fitness of the agent and system for a fire was certified by Korea Fire Industry Technology Institute (KFI).

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A Modification of A Microbiological Assay of Vitamin $B_{12}$ In Fermented Vegetables

  • Lim, Sook-Ja
    • Journal of Nutrition and Health
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    • v.15 no.3
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    • pp.202-211
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    • 1982
  • A modification of a microbiological assay of vitamin $B_{12}$ was made and used to determine the vita­min levels during kimchi fermentation. A cyanide-buffer solution of pH 6.0 replaced the metabisufite-buffer specified in the A.O.A.C. method. The vitamin $B_{12}$ activity was decreased by blending kimchi samples for 5 minutes and retained the activity by steaming for 10 minutes before blending. The alkali hydrolysis of kimchi at pH 12.0 for 30 minutes at $121^{\circ}C$ was sufficient to destroy the vitamin $B_{12}$ and permit the detection of analogs with the same assay organism. Vitamin $B_{12}$ reached a maximum of 47ng/100g during the fermentation of kimchi ${15}\;4^{\circ}C.$ Inoculation of the kimchi with Propionibacterium shermanii (ATCC 13673) increased the vitamin production to a maximum of 102ng/100g at 1 week of fermentation. Soy flour (0.5%) or beef extract (0.05%), which were regarded as protein sources, added to the inoculated kimchi further increased the vitamin $B_{12}$ activity to 197 and 203ng/100g.

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Short Communication of Novel Application of Food Irradiation

  • Cheorun Jo;Lee, Ju-Wosn;Byunl, Myung-Woo
    • Preventive Nutrition and Food Science
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    • v.6 no.4
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    • pp.253-256
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    • 2001
  • Irradiation of food is not only used for sanitation purposes but can be used for processing techniques to reduce or eliminate toxic or undesirable compounds on food. Irradiation wag effective to reduce the allergenicity of food by modification of the structure of proteins causing allergy reactions. Volatile N-nitrosmaine was reduced or eliminated by irradiation in the model system study and the breakdown products by irradiation did not recombine under human stomach conditions (pH 2,3, and 4,37$^{\circ}C$). The possibility of residual chlorophyll b reduction by irradiation was also found, and the model study indicated that irradiation be used to destroy chlorophyll b, resulting in protection from photooxidation in oil without acceleration of lipid oxidation during irradiation. In this paper, several on-going research projects for the application of food irradiation as a new processing technique are introduced, including reduction of food allergens, breakdown of volatile N-nitrosamine and residual chlorophyll b.

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Comparative Effects of Υ-irradiation and Ethylene Oxide Fumigation on the Quality of Carrot Powder (Υ-선 및 훈증제 처리가 당근분말의 품질에 미치는 영향)

  • 권중호;변명우
    • Food Science and Preservation
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    • v.1 no.1
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    • pp.21-27
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    • 1994
  • For the purpose of improving microbiolgical quality of carrot powder, which is being used as minor ingredients of convenience foods, comparative influence of Υ-irradiation and ethylene oxide(E.O) fumigation was investigated with emphasis on sterilizating effect and physicochemical propertied Carrot powder sample was contaminated with thermophiles 4.0$\times$103/g, acid tolerant bacteria 3.7$\times$103/g and coliforms 1.6$\times$102/g, respectively. And thus sanitation process was required. E.O fumigation in commercial practice was not enough to destroy thermophilic bacteria, while Υ-irradiation at below 5 kGy could reduce all microorganisms up to undectected levels. Radiosensitivity(D10) of thermophiles was shown to be 2.25 kGy. The applicable dose of irradiation to the improvement of microbiological quality showed insignificant influences on the physicochemical quality of the sample.

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The Trend in the Development of Oncolytic Virus Therapy

  • Kwon, Sun-Il
    • Biomedical Science Letters
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    • v.25 no.3
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    • pp.201-210
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    • 2019
  • The oncolytic viruses selectively infect and destroy cancer cells, not harming normal cells. The cancer cell materials released by oncolysis, like tumor antigens, stimulate host antitumor immune responses, which is a long-lasting antitumor immunity removing cancer cells in remote parts of the body by a systemic response. Oncolytic viruses armed with transgenes such as cytokines or other immune stimulating factors enhance the immune responses. The first oncolytic virus approved by US-FDA is $Imlygic^{(R)}$ targeting for melanoma. The oncolytic virus is considered as a revolutionary immunotherapy for tumors together with immune checkpoint inhibitors. A variety of oncolytic viruses are under research in the treatment of kidney cancer, liver cancer, breast cancer, and many others solid tumors. Clinical trials have shown promising results in different types of cancers. Here, we present a brief introduction of various aspects of oncolytic virus, and a review of the current status of oncolytic virus therapy development.

Mitochondrial fatty acid metabolism in acute kidney injury

  • Jang, Hee-Seong;Padanilam, Babu J.
    • Journal of Medicine and Life Science
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    • v.15 no.2
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    • pp.37-41
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    • 2018
  • Mitochondrial injury in renal tubule has been recognized as a major contributor in acute kidney injury (AKI) pathogenesis. Ischemic insult, nephrotoxin, endotoxin and contrast medium destroy mitochondrial structure and function as well as their biogenesis and dynamics, especially in renal proximal tubule, to elicit ATP depletion. Mitochondrial fatty acid ${\beta}$-oxidation (FAO) is the preferred source of ATP in the kidney, and its impairment is a critical factor in AKI pathogenesis. This review explores current knowledge of mitochondrial dysfunction and energy depletion in AKI and prospective views on developing therapeutic strategies targeting mitochondrial dysfunction in AKI.