• Title/Summary/Keyword: Liquid-solid

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Effects of top-dressing period on Yield and Storage Quality of Onion(Allium Cepa L.) (추비시기가 양파의 수량 및 저장성에 미치는 영향)

  • 김희대;이찬중;정은호;서전규
    • Food Science and Preservation
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    • v.10 no.3
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    • pp.267-271
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    • 2003
  • This study was carried out to investigate the yield and storability of onions on top-dressing period. Top-dressing period was applied in February, March and March, April with liquid fertilizer and solid fertilizer of farmhouse practice during the onion growing season. The yields of onion in experimental station field and farmhouse field treated with conventional fertilization were 53.2 and 56.6MT, respectively. However, they were 58.2 and 60.8MT with application of liquid fertilizer in February and March, and 53.6 and 59.1MT with application of liquid fertilizer in March and April. Rotting rates until the end of August were lower with application of liquid fertilizer on February and March(15.8%, 28.9%), compared with application of solid fertilizer by farmhouse practice(23.6%, 41.0%), and were 20.7% and 31.7% by treatment of liquid fertilizer on March and April. In conclusion, treatment of liquid fertilizer on February and March decreased the rotting rate.

The Effect of Fluid Flow on the Primary Particle of Al-7wt%Si Alloy in Electromagnetic Stirring (전자교반시 Al-7wt%Si합금의 초정입자에 미치는 유동의 영향)

  • Lim, Sung-Chul;Yoon, Eui-Pak
    • Journal of Korea Foundry Society
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    • v.16 no.6
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    • pp.565-575
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    • 1996
  • In this study, to gain the semi-solid alloy we employed the electromagnetic rotation by a induction motor of 3-phases and 2-poles for Al-7wt%Si alloy and observed the size of primary solid particle, distribution state of primary solid particle, the degree of sphericity, and fraction of primary solid for the evaluation of its results. The size of primary solid particle increases from $98{\mu}m$ to $118{\mu}m$ as solid fraction increases from 0.2 to 0.5. The degree of sphericity increased as the solid fraction increased. Solid particles obtained from the microstructures of isothermally held sample were coarsened and the degree of sphericity was enhanced as isothermal holding time increased. However, when the sample was stirred for more than 40min, solid particles merged together and liquid phase was entrapped within the cluster of solid particles. The size of primary solid particle was not changed significantly with the variation of input voltages by 160V over which solid particles began to merge together to be a large cluster of about $170{\mu}m$ at 180V. The standard deviation and the degree of sphericity were not changed significantly with the variation of input voltage.

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A Review of Inorganic Solid Electrolytes for All-Solid-State Lithium Batteries: Challenges and Progress

  • Seul Ki Choi;Jaehun Han;Gi Jeong Kim;Yeon Hee Kim;Jaewon Choi;MinHo Yang
    • Journal of Powder Materials
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    • v.31 no.4
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    • pp.293-301
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    • 2024
  • All-solid-state lithium batteries (ASSLBs) are receiving attention as a prospective next-generation secondary battery technology that can reduce the risk of commercial lithium-ion batteries by replacing flammable organic liquid electrolytes with non-flammable solid electrolytes. The practical application of ASSLBs requires developing robust solid electrolytes that possess ionic conductivity at room temperature on a par with that of organic liquids. These solid electrolytes must also be thermally and chemically stable, as well as compatible with electrode materials. Inorganic solid electrolytes, including oxide and sulfide-based compounds, are being studied as promising future candidates for ASSLBs due to their higher ionic conductivity and thermal stability than polymer electrolytes. Here, we present the challenges currently facing the development of oxide and sulfide-based solid electrolytes, as well as the research efforts underway aiming to resolve these challenges.

A Theory of Liquid (액체이론)

  • Park, Hyeong-Seok
    • Journal of the Korean Chemical Society
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    • v.20 no.4
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    • pp.266-269
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    • 1976
  • A theory of liquid is proposed by assuming that the molecules in the liquid state have the solid-like and the gas-like degrees of freedom. The calculated values of the thermodynamic properties of argon, chlorine, ammonia and benzene are in good agreements with those of the observed values.

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Immobilization of Polysiloxane Liquid Phase on the Gas Chromatographic Solid Supports via In-Situ Cross-Linking

  • Kim, Kyoung-Rae;Zlatkis, Albert
    • Bulletin of the Korean Chemical Society
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    • v.8 no.3
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    • pp.133-137
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    • 1987
  • Polysiloxane SE-54 liquid phase was immobilized on the support surface as coated in thin film via in-situ cross-linking. The cross-linking between liquid molecules was initiated by dicumylperoxide. Among the supports investigated, only Chromosorb W provided the cross-linkable surface. The optimal in-situ cross-linking was achieved when Chromosorb W was coated with 5% (w/w) SE-54 and cross-linked with 1% (w/w) dicumylperoxide. The cross-linked support was useful for the trace analysis as well as for the trace enrichment.

Degradation of Three Aromatic Dyes by White Rot Fungi and the Production of Ligninolytic Enzymes

  • Jayasinghe, Chandana;Imtiaj, Ahmed;Lee, Geon-Woo;Im, Kyung-Hoan;Hur, Hyun;Lee, Min-Woong;Yang, Hee-Sun;Lee, Tae-Soo
    • Mycobiology
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    • v.36 no.2
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    • pp.114-120
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    • 2008
  • This study was conducted to evaluate the degradation of aromatic dyes and the production of ligninolytic enzymes by 10 white rot fungi. The results of this study revealed that Pycnoporus cinnabarinus, Pleurotus pulmonarius, Ganoderma lucidum, Trametes suaveolens, Stereum ostrea and Fomes fomentarius have the ability to efficiently degrade congo red on solid media. However, malachite green inhibited the mycelial growth of these organisms. Therefore, they did not effectively decolorize malachite green on solid media. However, P. cinnabarinus and P. pulmonarius were able to effectively decolorize malachite green on solid media. T. suaveolens and F. rosea decolorized methylene blue more effectively than any of the other fungi evaluated in this study. In liquid culture, G. lucidum, P. cinnabarinus, Naematoloma fasciculare and Pycnoporus coccineus were found to have a greater ability to decolorize congo red. In addition, P. cinnabarinus, G lucidum and T. suaveolens decolorized methylene blue in liquid media more effectively than any of the other organisms evaluated in this study. Only F. fomentarius was able to decolorize malachite green in liquid media, and its ability to do so was limited. To investigate the production of ligninolytic enzymes in media containing aromatic compounds, fungi were cultured in naphthalene supple mented liquid media. P. coccineus, Coriolus versicolor and P. cinnabarinus were found to produce a large amount of laccase when grown in medium that contained napthalene.

Effects of Interface Boundary Strength on Wear and Wear Transition during Sliding in Silicon Carbide Ceramics (탄화규소계 세라믹스에서 미끄럼시의 마모 및 마모천이에 미치는 계면강도의 영향)

  • Kim, Dong-Jin;Park, Seong-Khil;Ryu, Hyun;Um, Chang-Do;Cho, Seong-Jai;Kim, Seock-Sam
    • Tribology and Lubricants
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    • v.11 no.4
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    • pp.21-27
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    • 1995
  • The effects of interface boundary strength on wear and wear transition during sliding have been investigated in silicon carbide ceramics. Three different microstructures, i.e., solid state sintered silicon carbide, liquid phase sintered silicon carbide and liquid phase sintered silicon carbide composite reinforced with TiB$_{2}$ particulates, were designed by hot pressing. Examinations of crack patterns and fracture modes indicated that interface boundaries were relatively strong between silicon carbide grains in the solid state sintered silicon carbide, intermediate in the liquid phase sintered silicon carbide and weak between silicon carbide grains and TiB$_{2}$ particles in the composite. Wear data and examinations of worn surfaces revealed that the wear behavior of these silicon carbide ceramics could be significantly affected by the interface strength. In the solid state sintered silicon carbide, the wear occurred by a grooving process. In the liquid phase sintered silicon carbide and composite, on the other hand, an abrupt transition in wear mechanism from initial grooving to grain pull-out process occurred during the test. The transition occurred significantly earlier in the composite than in the carbide.