• 제목/요약/키워드: non thermal process

검색결과 395건 처리시간 0.036초

미세여과에 의한 비 가열살균 좁쌀약주의 제조 및 저장 중 품질변화 (Non Thermal Process and Quality Changes of Foxtail Millet Yakju by Micro Filtration)

  • 강영주;오영주;고정삼
    • 한국식품영양과학회지
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    • 제34권2호
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    • pp.277-284
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    • 2005
  • 좁쌀 약주의 가열살균에 따른 품질열화의 대안으로 비 가열공정 시스템인 미세 및 한외여과용 중공사막(hallow fiber membrane) 카트리지 (cartridge)의 도입을 통한 좁쌀 약주의 고품질화를 시도하였다. 비 가열살균 좁쌀 약주의 제조 및 저장 중 품질변화를 조사하기 위하여 0.65, 0.45, 0.2및 0.1 $\mu$m의 MF(micro-filtration) 카트리 지와 500 K의 UF(ultrafiltration) 카트리지 등 중공사막의 공극의 크기에 따른 제조공정상의 효용성을 시험하였다. 시험한 모든 막 카트리지에서 미생물 제거 능력은 확인되었으나 여과 속도 및 안전성 면에서 0.45 $\mu$m 막 카트리지가 적당한 것으로 조사되었다. 저장 중 모든 시료에서 환원당 및 색택 변화의 차이가 측정되었는데, 6개월 저장 결과 가열살균 약주가 비 가열 약주에 비하여 투명도(L 값)가 감소하고 황청도(b 값)는 크게 증가하여 색택이 어두워지는 현상이 관찰되었다. 저장 중 환원당의 감소는 색택이 진해지는 비효소적 갈변과 관련이 있는 것으로 추정되며, 다른 화학적 성분에 대한 변화는 가열 살균과 비 가열 간에 차이가 거의 없는 것으로 조사되었다. 관능검사 결과 카트리지의 종류에 따른 좁쌀약주의 품질에 대한 차이는 인정되지 않았으나, 가열살균과 비 가열에 대한 품질은 유의적인 차이가 있었으며 비 가열처리 공정이 더 우수한 것으로 평가되었다.

Surface Treatment of Air Gap Membrane Distillation (AGMD) Condensation Plates: Techniques and Influences on Module Performance

  • Harianto, Rachel Ananda;Aryapratama, Rio;Lee, Seockheon;Jo, Wonjin;Lee, Heon Ju
    • Applied Science and Convergence Technology
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    • 제23권5호
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    • pp.248-253
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    • 2014
  • Air Gap Membrane Distillation (AGMD) is one of several technologies that can be used to solve problems fresh water availability. AGMD exhibits several advantages, including low conductive heat loss and higher thermal efficiency, due to the presence of an air gap between the membrane and condensation wall. A previous study by Bhardwaj found that the condensation surface properties (materials and contact angle) affected the total collected fresh water in the solar distillation process. However, the process condition differences between solar distillation and AGMD might result in different condensation phenomena. In contrast, N. Miljkovic showed that a hydrophobic surface has higher condensation heat transfer. Moreover, to the best of our knowledge, there is no study that investigates the effect of condensation surface properties in AGMD to overall process performance (i.e. flux and thermal efficiency). Thus, in this study, we treated the AGMD condensation surface to make it hydrophobic or hydrophilic. The condensation surface could be made hydrophilic by immersing and boiling plate in deionized (DI) water, which caused the formation of hydrophilic aluminum hydroxide (AlOOH) nanostructures. Afterwards, the treated plate was coated using hexamethyldisiloxane (HMDSO) through plasma-enhanced chemical vapor deposition (PECVD). The result indicated that condensation surface properties do not affect the permeate flux or thermal efficiency significantly. In general, the permeate flux and thermal efficiency for the treated plates were lower than those of the non-treated plate (pristine). However, at a 1 mm and 3 mm air gap, the treated plate outperformed the non-treated plate (pristine) in terms of permeate flux. Therefore, although surface wettability effect was not significant, it still provided a little influence.

평판형 유전체 장벽 방전 반응기에서 Acetonitrile의 분해 특성 (Decomposition of Acetonitrile by Planar Type Dielectric Barrier Discharge Reactor)

  • 송영훈;김관태;류삼곤;이해완
    • 한국군사과학기술학회지
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    • 제5권3호
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    • pp.105-112
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    • 2002
  • A combined process of non-thermal plasma and catalytic techniques has been investigated to treat toxic gas compounds in air. The treated gas in the present study is $CH_3$CN that has been known to be a simulant of toxic chemical agent. A planar type dielectric barrier discharge(DBD) reactor has been used to generate non-thermal plasma that produces various chemically active species, O, N, OH, $O_3$, ion, electrons, etc. Several different types of adsorbents and catalysts, which are MS 5A, MS 13X, Pt/alumina, are packed into the plasma reactor, and have been tested to save power consumption and to treat by-products. Various aspects of the present techniques, which are decomposition efficiencies along with the power consumption, by-product analysis, reaction pathways modified by the adsorbents and catalysts, have been discussed in the present study.

FINITE ELEMENT ANALYSIS AND MEASUREMENT ON THE RELEASE OF RESIDUAL STRESS AND NON-LINEAR BEHAVIOR IN WELDMENT BY MECHANICAL LOADING(I) -FINITE ELEMENT ANALYSIS-

  • Jang, Kyoung-Bok;Kim, Jung-Hyun;Cho, Sang-Myoung
    • 대한용접접합학회:학술대회논문집
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    • 대한용접접합학회 2002년도 Proceedings of the International Welding/Joining Conference-Korea
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    • pp.378-383
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    • 2002
  • In previous study, the decrease and recovery of total stiffness in welded structure was discussed on the basis of experimental examination through tensile loading and unloading test of welded specimen. The recovery of structure stiffness was caused by the release of welding residual stress through mechanical loading. In this study, analysis model that is indispensable for the effective application of MSR method was established on the basis of test and measurement result. Thermal elasto-plastic analysis for welding process was performed by non-coupled analysis. Analysis results of welding process were transfer to elasto-plastic model for tensile loading & unloading by restart technique. In elasto-plastic analysis model for mechanical loading & unloading, hardening appearance of weld metal was considered by rezoning technique and tying technique was used for JIG condition of test machine.

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Finite Element Analysis and Measurement on the Release of Residual Stress and Non-linear Behavior in Weldment by Mechanical Loading(I) -Finite Element Analysis-

  • Jang, K.B.;Kim, J.H.;Cho, S.M.
    • International Journal of Korean Welding Society
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    • 제2권1호
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    • pp.29-32
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    • 2002
  • In previous study, the decrease and recovery of total stiffness in welded structure was discussed on the basis of experimental examination through tensile loading and unloading test of welded specimen. The recovery of structure stiffness was caused by the release of welding residual stress through mechanical loading. In this study, analysis model that is indispensable for the effective application of MSR method was established on the basis of test and measurement result. Thermal elasto-plastic analysis for welding process was performed by non- coupled analysis. Analysis results of welding process were transfer to elasto-plastic model for tensile loading & unloading by restart technique. In elasto-plastic analysis model for mechanical loading & unloading, hardening appearance of weld metal was considered by rezoning technique and tying technique was used for JIG condition of test machine.

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충전형 저온 플라즈마 반응기에서 시안 화합물의 분해 특성 (Decomposition Characteristics of Cyano-compounds in Non-thermal Packed-Bed-Plasma-Reactor)

  • 류삼곤;박명규;이해완
    • Korean Chemical Engineering Research
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    • 제50권2호
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    • pp.343-347
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    • 2012
  • 충전형 저온 플라즈마 반응기 내에서의 가스 상 시안화합물의 분해특성을 반응기로 투입되는 방전 전력, 시안화합물의 유입농도, 운반기체인 공기의 습도 및 반응기 내의 충전물질 등을 변수로 연구하였다. 저온플라즈마 방전의 경우 시안화합물들의 분해는 트리클로로에틸렌에 비하여 상대적으로 매우 낮은 효율을 보였다. 그러나 플라즈마 방전 영역에 알루미나 또는 백금/알루미나 구슬을 충전한 경우 분해효율이 크게 높아졌으며 이는 플라즈마 반응과 더불어 백금/알루미나의 촉매작용에 의한 촉매 반응이 동시에 작용함에 기인한 것으로 판단된다.

비접촉식 열 공구를 이용한 미세 형상 가공에서의 열 영향부에 대한 수치적 모사에 관한 연구 (A study on numerical analysis of heat affected zone in detailed shape processing using Non-contact hot tool)

  • 김효찬;안동규;이상호;양동열
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2003년도 춘계학술대회 논문집
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    • pp.569-572
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    • 2003
  • In VLM-ST process, the fine detailed shape processing process is needed due to the use of thick sheets for layers. The developed process perform the fine detailed shape processing in VLM-ST parts using non-contact hot tool. To predict the heat-affected zone and temperature distribution of VLM-ST parts in detailed shaping, the heat flux from the tool to the surface was calculated for the finite element analysis by modeling the tool as a heat source of radiation. The dominant process parameters such as the radiated heat input, the tool speed, and the gap between the tool tip and the foam sheet (tool height) were considered in the analysis. The results showed a good agreement with the experiments.

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Experimental Observations of Boiling and Flow Evolution in a Coiled Tube

  • Ye, P.;Peng, X.F.;Wu, H.L.;Meng, M.;Gong, Y. Eric
    • International Journal of Air-Conditioning and Refrigeration
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    • 제16권1호
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    • pp.22-29
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    • 2008
  • A sequence of visually experimental observations was conducted to investigate the flow boiling and two-phase flow in a coiled tube. Different boiling modes and bubble dynamical evolutions were identified for better recognizing the phenomena and understanding the two-phase flow evolution and heat transfer mechanisms. The dissolved gases and remained vapor would serve as foreign nucleation sites, and together with the effect of buoyancy, centrifugal force and liquid flow, these also induce very different flow boiling nucleation, boiling modes, bubble dynamical behavior, and further the boiling heat transfer performance. Bubbly flow, plug flow, slug flow, stratified/wavy flow and annular flow were observed during the boiling process in the coiled tube. Particularly the effects of flow reconstructing and thermal non-equilibrium release in the bends were noted and discussed with the physical understanding. Coupled with the effects of the buoyancy, centrifugal force and inertia or momentum ratio of the two fluids, the flow reconstructing and thermal non-equilibrium release effects have critical importance for flow pattern in the bends and flow evolution in next straight sections.