• Title/Summary/Keyword: 초임계압력

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An Evaluation of Numerical Schemes in a RANS-based Simulation for Gaseous Hydrogen/Liquid Oxygen Flames at Supercritical Pressure (초임계 압력하의 기체수소-액체산소 화염에 대한 난류모델을 이용한 해석에서 수치기법 평가)

  • Kim, Won Hyun;Park, Tae Seon
    • Journal of the Korean Society of Propulsion Engineers
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    • v.17 no.3
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    • pp.21-29
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    • 2013
  • Turbulent flow and thermal fields of gaseous hydrogen/liquid oxygen flames at supercritical pressure are investigated by turbulence models. The modified Soave-Redlich-Kwong (SRK) EOS is implemented into the flamelet model to realize real-fluid combustions. For supercritical fluid flows, the modified pressure-velocity-density coupling are introduced. Based on the algorithm, the relative performance of six convection schemes and the predictions of four turbulence models are compared. The selected turbulence models are needed to be modified to consider various characteristics of real-fluid combustions.

초임계 $CO_2$를 이용한 오염 기름 제거

  • 박승현;류정동;박광헌
    • Proceedings of the Korean Nuclear Society Conference
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    • 1998.05b
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    • pp.814-819
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    • 1998
  • 원자력 발전소의 운영개선에 2차 방사성폐기물을 줄여야 하는 것은 중요한 과제이다. 기존 세탁 법은 2차 방사성폐기물을 상당히 많이 배출는데, 개선방안으로 초임계 유체($CO_2$)를 이용한 제염가능성을 알아보았다. 본 연구에서 순광유, 그리고 산업용으로 쓰이는 기어유와 그리스의 초임계 $CO_2$ 내에서의 용해도와, 제거율을 구하였다. 용해도 측정 실험에서는 초임계 상태에서 압력에 따라 용해도가 급격히 증가하였으며 반응시간 또한 매우 빨라 확산성이 매우 우수하였다. 실제 적용을 위해 소량의 첨가용매를 사용한다면 더욱 큰 성과가 기대된다.

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Supercritical $CO_2$ Extraction of Genistein from Soybean (초임계 $CO_2$를 이용한 대두 Genistein의 추출)

  • Bu, Seong-Jun;Byeon, Sang-Yo
    • KSBB Journal
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    • v.14 no.4
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    • pp.490-494
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    • 1999
  • This study was carried out to examine some factors affecting the supercritical carbon dioxide extraction of genistein from soybean. The factors investigated in this study were pressure, temperature, flow rate of carbon dioxide, and concentration of modifier. It was foumd out that genistein is not extracted in the absence of modifier. Ethanol was found to be more effective modifier than methanol. 70% of genistein was extracted at 35$^{\circ}C$, 300bar and ethanol 15% (w/v) as compared with the performances of organic solvent extraction.

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Changes in The Chemical Composition of Apple Slices Pretreated with Supercritical Carbon Dioxide (건조 전처리 방법으로써 초임계 이산화탄소가 사과절편의 화학적 성분에 미치는 영향)

  • Lee, Bo-Su;Lee, Won-Young
    • Food Science and Preservation
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    • v.17 no.2
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    • pp.256-260
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    • 2010
  • We investigated changes in the chemical composition of apple slices after pretreatment with supercritical $CO_2$. Total phenolic levels increased with increasing temperature, although the concentrations were lower in pretreated material than in fresh or untreated slices. The levels of vitamin C and malic acid in pretreated slices were also lower than in untreated or fresh apple slices. Little difference was evident among various pretreatmentconditions. It was found that supercritical $CO_2$ served not as a solvent but rather as a means of tissue compression. Supercritical $CO_2$ compressed the apple slices, causing juice to be extruded. The juice disappeared when the supercritical $CO_2$ pressure was released.

Enrichment of Coffee Flavors with Supercritical Carbon Dioxide (초임계 이산화탄소를 이용한 커피의 향기 성분 증진)

  • Lee, Joo-Hee;Byun, Sang-Yo
    • KSBB Journal
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    • v.23 no.3
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    • pp.193-198
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    • 2008
  • In this study, the supercritical $CO_2$ extraction was applied for the enrichment of coffee flavors. The extraction efficiency of coffee flavors was dependent on the pressure and temperature and optimized as 350 bar and 80$^\circ$C. Five flavors of high aroma values were analyzed. The flavors extracted by the supercritical $CO_2$ extraction were 76.6 times higher than those by the traditional method, espresso extraction. The modified headspace system proved the enhanced efficiency of supercritical $CO_2$ extraction. The coffee beverage containing the extract of supercritical $CO_2$ resulted 2.3 times of flavor enrichment when it was compared to that without the supercritical extract.

Effects of Supercritical Carbon Dioxide on Sterilization and Enzyme Inactivation in Dongchimi (초임계 이산화탄소의 동치미 살균 및 효소 불활 효과)

  • Park, Joo-Seok;Hong, Joo-Heon;Lee, Won-Young
    • Food Science and Preservation
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    • v.16 no.4
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    • pp.482-489
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    • 2009
  • We investigated how supercritical $CO_2$ affected sterilization and enzyme inactivation in dongchimi, a conventional Korean fermented food. The growth of bacteria, including lactic acid bacteria, in dongchimi juice tended to decrease with increased pressure and temperature during treatment with supercritical $CO_2$. D values were affected by pressure more than by temperature. The lowest total number of cells and D values of lactic acid bacteria were observed after treatment with supercritical $CO_2$ at 25 MPa and $25^{\circ}C$; these conditions also reduced polygalacturonase activity in radishes by approximately 40.3%. Supercritical $CO_2$ can be used as an alternative method of sterilization and enzyme inactivation, minimizing sensory loss and textural changes in vegetable materials.

Extraction of Athabasca Oil Sand with Sub- and Supercritical Water (아임계 및 초임계수를 이용한 Athabasca 오일샌드의 추출)

  • Park, Jung Hoon;Son, Sou Hwan;Baek, Il Hyun;Nam, Sung Chan
    • Korean Chemical Engineering Research
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    • v.47 no.3
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    • pp.281-286
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    • 2009
  • Bitumen extraction and sulfur removal from Athabasca oil sand were conducted using water in sub- and supercritical condition. Bitumen yield in micro reactor was investigated in the pressure range of 15~30 MPa, the temperature of 360 and $380^{\circ}C$ and water density $0.074{\sim}0.61g/cm^3$ for 0~120 min. Bitumen yield increased with reaction pressure irrespective of temperature and dramatically increased in especially supercritical region due to hydrogen formed from water gas shift reaction. Total amount of gas product decreased with reaction pressure but the portion of sulfur and hydrogen increased a little with increasing pressure to 25 and 30 MPa. It is seen that supercritical condition was favourable to the hydrogen formation and sulfur removal. Bitumen yield and sulfur removal from original oil sand reached a maximum 22% and 40% respectively in supercritical condition(the reaction time of 60 min at $380^{\circ}C$ and 25 or 30 MPa).

Phase Behavior of Simvastatin Drug in Mixtures of Dichloromethane and Supercritical Carbon Dioxide and Microparticle Formation of Simvastatin Drug Usins Supercritical Anti-Solvent Process (디클로로메탄과 초임계 이산화탄소의 혼합용매에서 Simvastatin 약물의 상거동과 초임계 역용매 공정을 이용한 Simvastatin 약물 미세입자의 제조)

  • Oh, Dong-Joon;Lee, Byung-Chul
    • Clean Technology
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    • v.13 no.1 s.36
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    • pp.34-45
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    • 2007
  • Phase behavior of the ternary systems of water-insoluble simvastatin drug, which is well known to be effective drugs for hypercholesterolemia therapy, in solvent mixtures of dichloromethane and supercritical carbon dioxide was investigated to present a guideline of establishing operating conditions in the particle formation of the drugs by a supercritical anti-solvent recrystallization process utilizing dichloromethane as a solvent and carbon dioxide as an anti-solvent. The solubilities of simvastatin in the mixtures of dichloromethane and carbon dioxide were determined as functions of temperature, pressure and solvent composition by measuring the cloud points of the ternary mixtures at various conditions using a high-pressure phase equilibrium apparatus equipped with a variable-volume view cell. The solubility of the drug increased as the dichloromethane composition in solution and the system pressure increases at a fixed temperature. A lower solubility of the drug was obtained at a higher temperature. The second half of this work is focused on the particle formation of the simvastatin drug by a supercritical anti-solvent recrystallization process in a cylindrical high-pressure vessel equipped with an impeller. Microparticles of the simvastatin drug were prepared as functions of pressure (8 MPa to 12 MPa), temperature (303.15 K, 313,15 K), feed flow rate of carbon dioxide, and stirring speed (up to 3000 rpm), in order to observe the effect of those process parameters on the size and shape of the drug microparticles recrystallized.

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Phase Behavior of Simvastatin Drug in Mixtures of Dimethyl Ether and Supercritical Carbon Dioxide (디메틸에베르와 초임계이산화탄소의 혼합물에서 Simvastatin 약물의 상거동)

  • Shin, Eun-Kyoung;Oh, Dong-Joon;Lee, Byung-Chul
    • Clean Technology
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    • v.13 no.4
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    • pp.237-243
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    • 2007
  • Phase behavior of the ternary systems of water-insoluble simvastatin drug, which is well known to be effective drugs for hypercholesterolemia therapy, in solvent mixtures of dimethyl ether (DME) and supercritical carbon dioxide was investigated to present a guideline of establishing operating conditions in the particle formation of the drugs by a supercritical anti-solvent recrystallization process utilizing DME as a solvent and carbon dioxide as an anti-solvent. The solubilities of simvastatin in the mixtures of DME and carbon dioxide were determined as functions of temperature, pressure and solvent composition by measuring the cloud points of the ternary mixtures at various conditions using a high-pressure phase equilibrium apparatus equipped with a variable-volume view cell. The solubility of the drug increased as the DME composition in solution and the system pressure increases at a fixed temperature. A lower solubility of the drug was obtained at a higher temperature.

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Numerical analysis of turbulent combustion in Supercritical combustor with multi-injector (다중 분사기가 장착된 초임계 연소기 난류연소해석)

  • Jeon, Tae Jun;Park, Tae Seon
    • Proceedings of the Korean Society of Propulsion Engineers Conference
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    • 2017.05a
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    • pp.803-810
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    • 2017
  • the liquid oxygen transitions to a supercritical state, causing rapid changes in properties and pseudo boiling in supercritical combustion. the combustion reaction operating in a supercritical state depends on the turbulence diffusion caused by difference of density, therefore, a study of the diffusion flow and pseudo boiling is required. Many researchers have studied these phenomena in the supercritical combustion, but A case study by various variables is inadequate. In this study, the flow field and flame structure were investigated numerically by changing the recirculation flow and liquid oxygen core length through oxygen-fuel ratio(O/F), combustor diameter and recess ratio at supercritical pressure condition.

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