• Title/Summary/Keyword: 온수유량

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A study of geothermal heat dump for solar collectors overheat protection (태양열 집열관 과열방지를 위한 지중열교환기 연구)

  • Hwang, Hyun-Chang;Chi, Ri-Guang;Lee, Kye-Bock;Rhi, Seok-Ho
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.17 no.7
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    • pp.616-622
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    • 2016
  • The heating load using solar hot water is lower in summer than in the other seasons. This decreased heating load leads to the overheating solar collectors and related components. To prevent overheating of the solar collectors, air cooling and shading shields were used. On the other hand, it requires additional mechanical components, and reduces the system reliability. The geothermal heat dump system to release the high temperature heat (over $150^{\circ}C$) transferred from the heat pipe solar collectors was investigated in the present study. Research on the heat dump to cool the solar collector is rare. Therefore, the present study was carried out to collect possible data of a geothermal heat dump to cool the solar collector. A helical type geothermal heat exchanger was buried at a 1.2m depth. Experimentally and numerically, the geothermal heat dump was investigated in terms of the effects of parameters, such as the quantity of solar radiation, aperture area of the collector and the mass flow rate. A pipe length of 50m on the geothermal heat exchanger was suitable with a 0.33 kg/s flow rate. The water reservoir was a possible co-operation solution linked to the geothermal heat exchanger.

Study of γ-Amino Butyric Acid (GABA) Production by Lactobacillus sakei B2-16 (Lactobacillus sakei B2-16에 의한 γ-amino butyric acid(GABA)의 생산에 관한 연구)

  • Kook, Moo Chang;Cho, Seok Cheol;Cheigh, Chan Ick;Park, Hoon;Kim, Seung Seop;Jeong, Myoung Hoon;Pyun, Yu Ryang;Lee, Hyeon Yong
    • Food Engineering Progress
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    • v.13 no.3
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    • pp.183-189
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    • 2009
  • Lactobacillus sakei B2-16 producing high level of $\gamma$-amino butyric acid (GABA) was previously isolated from Korean traditional fermented food, Kimchi. L. sakei B2-16 converted 99.3% of mono sodium glutamate (MSG) to GABA in Lactobacilli MRS broth supplemented with 1% MSG. In order to enhance the production of GABA by L. sakei B2-16, growth parameters such as media components and concentrations of major components were evaluated. The maximum GABA concentration was obtained by a modified rice germ extract broth containing 4%(w/v) sucrose and 1%(w/v) yeast extract. L. sakei B2-16 converted 100% of MSG to GABA in modified rice germ extract broth supplemented with 7% MSG.

A Study on the Optimal Operating Conditions for an Unreacted Hydrogen Oxidation-Heat Recovery System for the Safety of the Hydrogen Utilization Process (수소 활용공정 안전성 확보를 위한 미반응 수소 산화-열 회수 시스템의 운전 조건 최적화 연구)

  • Younghee Jang;Sung Su Kim
    • Applied Chemistry for Engineering
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    • v.34 no.3
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    • pp.307-312
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    • 2023
  • In this study, a catalytic oxidation-heat recovery system was designed that can remove unreacted with a concentration of about 1% to 6% in the exhaust gas of hydrogen fuel cells and recover heat to ensure safety in the hydrogen economy. The safety system was devised by filling hydrogen oxidation catalysts at room temperature that can remove unreacted hydrogen without any energy source, and an exhaust-heat recovery device was integrated to efficiently recover the heat released from the oxidation reaction. Through CFD analysis, variations in pressure and fluid within the system were shown depending on the filling conditions of the hydrogen oxidation system. In addition, it was found that waste heat could be recovered by optimizing the temperature of the exhaust gas, flow rate, and pressure conditions within the heat recovery system and securing hot water above 40 ℃ by utilizing the exhaust gas oxidation heat source above 300 ℃. Through this study, it was possible to confirm the potential of utilizing hydrogen processes, which are applied in small to medium-sized systems such as hydrogen fuel cells, as a safety system by evaluating them at a pilot scale. Additionally, it could be a safety guideline for responding to unexpected hydrogen safety accidents through further pilot-scale studies.