• Title/Summary/Keyword: ethanol entrainer

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Extraction of Volatile Essential Oil from Citrus junos Peel by Supercritical Carton Dioxid (초임계 이산화탄소를 이용한 유자과피로부터 휘발성 정유성분의 추출)

  • 이승진;전병수
    • KSBB Journal
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    • v.17 no.2
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    • pp.148-152
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    • 2002
  • The extraction of volatile essential oil using supercritical carbon dioxide with 2%(v/v) ethanol and non-ethanol was performed in a semi-continuous flow extractor at the range of pressures and temperatures 6.9 to 17.2 MPa and 30 to 45$^{\circ}C$, respectively. When ethanol was added to the co-solvent, the solubility of volatile essential oils was increased up to 90% over the neat CO$_2$ value. The most efficiency of extraction of the voilatile essential oils was achieved at 13.8㎫ and 40$^{\circ}C$ by supercritical carbon dioxide with entrainer from Citrus junos peel.

A Study on the Optimization of Process for Ethanol Dehydration Azeotropic Distillation (에탄올 탈수 공비 증류공정 최적화에 대한 연구)

  • Cho, Jungho;Jeon, Jongki
    • Korean Chemical Engineering Research
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    • v.43 no.4
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    • pp.474-481
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    • 2005
  • In this study, modeling and optimization work were performed to obtain nearly pure anhydrous ethanol from aqueous ethanol mixtures using benzene as an entrainer. NRTL liquid activity coefficient model was adopted for phase equilibrium calculations and PRO/II with PROVISION 6.01, a commercial process simulator, was used to simulate the azeotropic distillation process. We used the total reboiler heat duties as an objective function and the concentration of ethanol at concentrator top as a manipulated variable. As a result, 76 mole percent of ethanol at concentrator top gave an optimum value which minimized the total reboiler heat duties of three distillation columns.

Recovery of High Unsaturated Fatty Acid from Squid Processing Wastes using Supercritical Carbon Dioxide Extraction Method (초임계 이산화탄소 추출법을 이용한 오징어 가공 부산물로부터 고도불포화 지방산 회수)

  • KANG Seong-Sil;KIM Byung-Jun;CHUN Byung-Soo
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.32 no.2
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    • pp.217-222
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    • 1999
  • A squid viscera oil contains a high content of EPA, DHA, and other valuable polyunsaturated fatty acids. The extractions of squid viscera oil by supercritical carbon dioxide both with/without $3\%$ (v/v) ethanol were performed in a semicontinuous flow extractor at 8.3 to 13.8 MPa and 25 to $50^{\circ}C$. When ethanol was added to $SC-CO_2$, the extraction ratio of lipid increased. The extracts contained high content of unsaturated oils like DHA and EPA. The highest extraction yield of lipid from squid viscera oil extracted by supercritical carbon dioxide was obtained at 12.4 MPa and $40^{\circ}C$ with/without entrainer. The main fatty acids of squid viscera oil extracted by supercritical carbon dioxide were myristric acid (14:0), palmitic acid (16:0), palmitoleic acid (16:1), oleic acid (18:1), arachidic acid (20:0), eicosapentaenoic acid (20:5), and docosahaxaenoic acid (22:6).

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Separation of Protein and Fatty Acids from Tuna Viscera Using Supercritical Carbon Dioxide

  • Kang Kil-Yoon;Ahn Dong-Hyun;Jung Sun-Mi;Kim Dong-Hun;Chun Byung-Soo
    • Biotechnology and Bioprocess Engineering:BBE
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    • v.10 no.4
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    • pp.315-321
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    • 2005
  • Supercritical carbon dioxide extraction was investigated as a method for removing lipids and bad flavor from tuna viscera. To find the optimum conditions, different experimental variables, such as pressure, temperature, flow rate of solvent and sample size, were evaluated for the effective removal of lipids and the undesirable smell. Ethanol was used as the entrainer, with a $3\%$ by vol $CO_2$ flow rate. By increasing the pressure at constant temperature, the efficiency of the lipid removal was improved and the protein was concentrated without denaturalization. The main fatty acids extracted from the tuna viscera were palmitic acid (16:0), heptadecanoic acid (17:1), oleic acid (18:1) and docosahexaenoic acid (22:6). The major amino acids in the tuna viscera treated by supercritical carbon dioxide were glutamic acid, leucine and lysine, and the free amino acids were L-proline, taurine and L-$\alpha$-aminoadipic acid.

Application of Energy-Efficient Distillation System in Ethanol Process (에너지 절약형 증류시스템의 에탄올 제조공정에의 응용)

  • Lee, Moon Yong;Kim, Young Han
    • Korean Chemical Engineering Research
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    • v.46 no.5
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    • pp.892-897
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    • 2008
  • A new ethanol dehydration process utilizing a thermally coupled distillation column is proposed to reduce the energy requirement of the existing dehydration processes. An entrainer of benzene is used in the proposed system having the column profile similar to the equilibrium composition profile for the maximum distillation column efficiency, and the feed composition is arranged to close to the boundary of different distillation regions. It is found that the proposed distillation system gives some 18% of energy saving over the existing process. In addition, design guidelines are suggested for other azeotropic distillation process.

Pancreatin Production by Removal of Lipid from Hog Pancreas using Supercritical Carbon Dioxide with Entrainer (초임계 이산화탄소와 보조용매를 이용한 돼지췌장 지질제거에 의한 판크레아틴의 생산)

  • 권혁수;박선영;전병수
    • KSBB Journal
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    • v.18 no.4
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    • pp.301-305
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    • 2003
  • The study of pancreatin extraction was investigated by supercritical fluid process. Using supercritical carbon dioxide extraction with entrainer the purification of pancreatin was possible to remove lipids from Hog pancreas. To observe the optimum conditions different experimental variables were changed as pressure, temperature, flow rate of solvent and 0.25 mm of sample size were evaluated for effective removal of lipids. Ethanol and n-hexane were used as an entrainer with 5 mL/min. Increasing pressure at constant temperature the efficiency of the lipid removal in Hog pancreas was improved and the protein was concentrated without denaturalization, compared that of the control Hog pancreas. The most efficient conditions of lipid elimination were 17 MPa of pressure and 35$^{\circ}C$ of temperature and 0.25 mm of sample size.

Extraction of Pigment from Sea Mustard ( Undaiia pinnatinda) using Supercritical Carbon Dioxide and Entrainer (초임계 이산화탄소와 보조용매를 이용한 미역으로부터 색소 추출)

  • HONG Seok-Ki;CHUN Byung-Soo;PARK Sun-Young
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.34 no.3
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    • pp.213-217
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    • 2001
  • In order to develop a new separation technology, supercritical fluid extraction process was used to produce high purity pigments and fatty acids from seaweed (Undaria pinnatifida). Supercritical carbon dioxide was used as a solvent and ethanol as an entrainer. The sample was treated by a frozen drier and experiments were conducted with a semi-batch flow system at various operating conditions (pressure range, $10.3\~17.2$ MPa; temperature range, $30\~45^{\circ}C$: particle size, $500\~1,000{\mu}m$ extraction time, 60 min). Characteristics of the recovered pigment (chlorophyll a) and fatty acids were determined by UV-spectrophotometry and gas chromatography, respectively. The highest extraction efficiency for fatty acids and pigments was achieved at 12.4 MPa, $35^{\circ}C$, $500{\mu}m$of seaweed size.

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Ethanol dehydration pilot test with pervaporation technology (투과증발법을 이용한 에탄올 탈수 파일럿 시험)

  • 이규현;유제강;장재화;안승호
    • Proceedings of the Membrane Society of Korea Conference
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    • 1994.10a
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    • pp.42-45
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    • 1994
  • 정밀화학, 제약산업 등에 필요한 에탄올, IPA 등과 같은 유기용매를 고순도로 농축하는 공정은 유기용매와 물과의 혼합물이 일정 농도에서 공비점을 형성하여 일반 증류로는 분리하기 힘들어 Benzene, Cycloheaxane 드의 Entrainer를 첨가하여 상대휘발도를 변화시켜 분리하는 공비증류가 이용되고 있다. 그러나 공비증류는 에너지 사용량이 많고 유독한 물질을 사용하므로 투과증발법과 같은 저에너지 소비형, 환경 친화적인 공정에 대한 관심이 높아지고 있다. 투과증발법에 의한 유기용매 농축공정은 물과의 친화성이 높은 비다공성 막을 이용하여 선택적으로 물을 투과하여 유기용매를 탈수하는 방법으로 투과를 위한 Driving force는 Feed side와 Permeate side사이의 Chemical potential gradient로 이는 물에 대한 Partial vapor pressure differnece로 다음과 같이 표시된다. $\Delta \mu_{F/P.W} = RT ln\frac{y_WP_P}{x_W\gamma_WP_{o.W}}$ 따라서 투과속도를 높이기 위해서 Permeate side를 진공상태로 하여 투과하는 물질을 기화시키고 이를 다시 응축하여 Permeate side의 압력을 낮게 유지시켜야 한다.

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Pervaporation process simulation for ethanol dehydration (에탄올 탈수를 위한 투과증발 공정 모사)

  • 이규현;유제강;장재화;안승호
    • Proceedings of the Membrane Society of Korea Conference
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    • 1995.04a
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    • pp.38-39
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    • 1995
  • 최근 자동차 대체 연료로 가솔린에 10% 무수에탄올이 혼합된 Gasohol 사용에 관한 관심이 고조되고 있으며, 이는 Gasohol이 자동차 배기 가스중의 일산화탄소 및 탄화수소 함유량을 감소시켜 대기 오염을 줄일 수 있기 때문이다. Gasohol에 사용되는 무수에탄올의 농도는 99.5% 이상이어야 하며, 이러한 고순도의 에탄올을 제조하기 위해서는 물과 에탄올의 공비 혼합물(95.6% 에탄올)로부터 공비증류, 분자체 흡착, 투과증발과 같은 분리 조작을 이용하여 물을 제거하는 공정이 필요하다. 현재 에탄올 탈수에는 공비증류가 많이 사용되고 있으나 공비증류는 에너지 사용량이 많을 뿐더러 유독한 Entrainer를 첨가하기 때문에 투과증발과 같은 저 에너지 소비형, 환경친화적인 공정으로의 전환이 이루어지고 있다. 에탄올 탈수용 투과증발 플랜트는 전세계 20여개가 가동되고 있으며, 상업화된 플랜트의 대부분은 독일의 Deutsche Carbone사가 제조한 PVA/PAN 투과증발 복합막을 사용하고 있다. 투과증발 시스템은 물에 대한 친화도가 높은 투과증발막 및 모듈, 기타 분리 구동력을 높여주기 위한 Heater, 진공펌프, 냉각기, 열 교환기 등의 주변 설비로 구성되며, 투과증발 시스템 개발을 위해서는 우수한 막/모듈 제조와 아울러 최적 공정 설계 기술 개발이 필수적이라 하겠다.

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