• Title/Summary/Keyword: Fluid extraction

Search Result 305, Processing Time 0.026 seconds

Supercritical Fluid Extraction of Safflower Yellow Pigments from Carthamus tinctorius L. (초임계 이산화탄소를 이용한 홍화로부터 황색소 추출)

  • Han, Byung-Seok;Kim, Kong-Hwan;Chung, In-Sik
    • Applied Biological Chemistry
    • /
    • v.41 no.5
    • /
    • pp.363-366
    • /
    • 1998
  • Supercritical fluid(SCF) carbon dioxide was used to extract safflower yellow pigments from Carthamus tinctorius L. In this work, supercritical fluid extractions were performed at various conditions; pressure (2000, 3000, 4000, 5000 psig), temperature $(40,\;50,\;60,\;70,\;80^{\circ}C)$ and co-solvent $(0,\;3,\;6,\;10,\;14\;wt%\;H_2O)$. Total concentrations of safflower yellow pigments extracted were determined by spectrophotometric method. A maximum yield of yellow pigments was obtained at 4000psig, $60^{\circ}C$ and 10% co-solvent. The extraction yield of pigments was also closely related to moisture content of the raw material. Extraction yield of safflower yellow pigments by SCF extraction at optimized conditions was 6% higher than that by solvent extraction. Supercritical carbon dioxide was proved to be suitable for the extraction of safflower yellow pigments from Carthamus tinctorius L.

  • PDF

The extraction condition of pungent compounds from Zanthoxylum piperitum D.C pericarps by using supercritical fluid extraction (초임계유체 추출에 의한 초피나무 과피 중 신미성분의 추출조건)

  • Lee, Chang-Joo;Kim, Myung-Seok;Shen, Jing-Yu;Kim, Yong-Doo;Shin, Jae-Han
    • Korean Journal of Medicinal Crop Science
    • /
    • v.11 no.1
    • /
    • pp.19-23
    • /
    • 2003
  • The optimum extraction condition of pungent component from Zanthoxylum piperitum D.C pericarps by using supercritical fluid extraction(SFE) was investigated. The optimum condition of SFE was $300kg/cm^2$ of pressure, $60\;^{\circ}C$ of extraction temperature, 80% of $CO_2$ fluid, 20% of modifier(methanol) volume and 20 min of extraction time. The extraction efficiency between the classical solvent extraction method and SFE was studied. About 40% of extraction efficiency was improved when SFE was applied.

Extraction of Phenolic Compounds from grape Seed Using Supercritical $CO_2$ and Ethanol as a Co-solvent (초임계 이산화탄소와 에탄올 보조용매를 이용한 포도씨로부터의 페놀성 화합물의 추출)

  • Lee, Won-Young;Chang, Kyu-Seob;Choi, Yong-Hee
    • Food Science and Preservation
    • /
    • v.7 no.2
    • /
    • pp.177-183
    • /
    • 2000
  • A supercritical fluid extraction was performed for the extraction of phenolics from grape seeds which up to now have been discarded. The optimum condition for extraction process was predicted through response surface methodology using central composit experimental design. The extraction amount of grape seed phenolics was increased by increasing extraction temperature, pressure, and concentration of co-solvent (ethanol). The optimum extraction conditions were 84.83$^{\circ}$C, 51.50MPa and 1.27% ethanol. The yield of phenolics using SFE was higher with 3 folds than ethanol and 4 folds than hexane but less than 80% methanol. In the respects of food poisoning, the approved solvents were restricted to ethanol and hexane. So, SFE for extraction of phenolics could be powerful alternative method for solvent extraction.

  • PDF

Effect of Solvents as Subcritical and Supercritical Fluid on Decomposition and Extraction of Used Automotive Tire (아임계와 초임계유체로써 폐타이어 분해와 추출에 미치는 용매의 영향)

  • Kang, W.S.;Na, D.Y.;Kim, I.S.;Han, S.B.;Park, P.W.
    • Elastomers and Composites
    • /
    • v.34 no.3
    • /
    • pp.239-246
    • /
    • 1999
  • Side wall samples from a used automotive tire were subjected to subcritical and supercritical decomposition and extraction with three solvents, water, 28% ammonia solution and ammonia. For 6mm cube samples the rate of supercritical extraction with water followed a first-order kinetics with an activation energy of 140 kJ/mol. Solvent power of 28% ammonia so lotion at supercritical condition was found to be higher than supercritical water at initial extraction as pressure decreased. These phenomena were considered to be an effect of ammonia involved in water.

  • PDF

Validation of an Extraction Method for the Determination of Airborne MWFs using Alternative Solvents (대체용매를 이용한 금속가공유 측정방법 타당성 평가)

  • Jeong, Jee Yeon;Baek, Nam Won
    • Journal of Korean Society of Occupational and Environmental Hygiene
    • /
    • v.16 no.2
    • /
    • pp.91-100
    • /
    • 2006
  • The purpose of this study was to validate alternative method by using non-carcinogenic, and less toxic solvents than NIOSH analytical method 5524 for measuring the airborne MWFs in workplaces. In laboratory tests, the ETM solvents(mixture of same volume for ethyl ether, toluene, and ethanol) were selected. The alternative method of analyzing MWFs, referred to as the ETM solvent extraction method, showed 0.04 mg/sample as LOD, and 0.15 mg/sample as LOQ. The analytical precision (pooled CV, coefficient of variation) of the ETM solvent extraction method for analyzing the straight, soluble, semisynthetic, and synthetic metalworking fluid was 1.5%, 2.0%, 2.6%, 1.6%, respectively, which was similar to the precision (2.6%) of NIOSH analytical method (NIOSH 0500) for total dust. The analytical accuracy by recovery test, spiked mass calculated as extractable mass, was almost 100%. As the result of storage stability test, metalworking fluid samples should be stored in refrigerated condition, and be analyzed in two weeks after sampling. The 95% confidence limit of the estimated total standard error for the ETM solvent extraction method for analyzing the straight, soluble, semisynthetic, and synthetic metalworking fluid was ${\pm}12.6%$, ${\pm}12.5%$, ${\pm}14.0%$, and ${\pm}13.6%$, respectively, which satisfied the OSHA sampling and analytical criteria.

Detection of estrogenic hormone 17β-estradiol in soil samples by a recombinant yeast bioassay and supercritical fluid extraction

  • Shim, Jae-Han;Kim, Mi-Ra;Topp, Edward;Choi, Jeong-Heui;Mamun, Iqbal Rouf
    • Korean Journal of Environmental Agriculture
    • /
    • v.27 no.4
    • /
    • pp.447-455
    • /
    • 2008
  • Recombinant yeast estrogenicity (YES) assay was used as a bioanalytical tool in order to screen $17{\beta}$-estradiol in the soil samples collected from different sites of South Korea. Solvent extraction and supercritical fluid extraction (SFE) methods were compared for the extraction of the estradiol from the soils. Most high detection of the estradiol based on YES assay was observed in the soils extracted with methanol. Different types of estrogenic hormones including $17{\beta}$-estradiol were suggested to be possibly exiting in the soils, since the methanol extracts of the soils showed an estrogenic activity that was not observed in the hexane extracts of the soil. SFE extracts showed estrogenic activity in some of the samples but methanol extract showed best activity.

Effects of Particle Size and High Pressure Process on the Extraction Yield of Oil Compounds from Soybean Powder Using Hexane and Supercritical Fluid (입자 크기와 초고압 처리에 따른 유기용매와 초임계 유체 추출법에서의 대두유 추출수율의 변화)

  • Yoon, Won-Byong
    • Food Engineering Progress
    • /
    • v.15 no.3
    • /
    • pp.203-208
    • /
    • 2011
  • Effects of particle size and high pressure processing on the extraction rate of oil compounds from soybean powder were evaluated by Soxhlet method using hexane and supercritical fluid extraction (SFE) using $CO_{2}$. SFE was carried out at 4,000 psi and $50^{\circ}C$ for 4 hr. The mean particle sizes were varied from 26.7 to 862.0 ${\mu}m$ by controlling milling time. Saturation solubility increased as the particle size decreased. At large particle size, high pressure processing (HPP) showed higher extraction yield in both hexane extraction and SFE, but, as the particle size decreased, the HPP was irrelevant to the extraction yield in SFE. The higher extraction rate obtained from the smaller particle size. The scanning electronic microscopy of soybean powder treated by HPP showed pores on the surface of the particle. The higher extraction rate and yield from HPP treatment might be due to the less internal resistance of transferring the solvent and miscellar in the solid matrix by collapsing of tissues.

Continuous Cocurrent Extraction of Milk Fat by Supercritical Carbon Dioxide (초임계이산화탄소에 의한 유지방의 연속 병류식 추출)

  • Lim, Sang-Bin;Syed S.H.Rizvi
    • Journal of the Korean Society of Food Science and Nutrition
    • /
    • v.23 no.3
    • /
    • pp.459-465
    • /
    • 1994
  • Performance of a continuous cocurrent supercritical fluid extraction column for processing of anhydrous milk fat (AMF) was determined. The extract loading increased and the extraction yield decreased as the superficial velocity of AMF increased. The maximum solubility of AMF in $CO_2$ at 4$0^{\circ}C$/3,500 psig was 0.0195g/g. The increase of the carbon dioxide density enhanced the solubility of milk fat and decreased the cholesterol concentration in the extract. Three operation conditions, such as recycle , reflux, and temperature gradient of extraction column, were tested. More short-chain fatty acvids were extracted by the reflux operation . Longchain fatty acids and thehighest ratio fo long-chain unsaturated to saturated fatty acids were also obtained in the raffinate phase with refluex.

  • PDF

Operation of a supercritical fluid extraction process using a fuzzy expert control system (Fuzzy 전문가 제어계를 이용한 초임계 유체 추출 장치의 운전)

  • 이대욱;이광순
    • 제어로봇시스템학회:학술대회논문집
    • /
    • 1991.10a
    • /
    • pp.669-675
    • /
    • 1991
  • Based on process analysis as well as extensive operation experience, two fuzzy expert control algorithms, for startup and control, are proposed for a supercritical fluid extraction process which has high interacting multivariable structure. In the proposed algorithms, a new simple defuzzification method which only requires four fundamental arithmetic rules is also presented. Through numerical simulations, control performance using the proposed control algorithm is compared with that of a different fuzzy algorithm by an other researcher and that of conventional PID-type controllers which are tuned by well-known optimal criteria. Also, the proposed control algorithm has been tested to the bench scale supercritical fluid extraction process. As a consequence, the proposed fuzzy expert controller has shown fast and robust control performance while the other controllers show sluggish and/or highly oscillatory responses.

  • PDF

Antimicrobial Activity of Ginger(Zingiber officinale Roscoe) Oleoresin by Supercritical Fluid Extraction (초임계유체 추출에 의한 생강(Zingiber officinale Roscoe) Oleoresin의 항균활성)

  • Lee, Myung-Hee;Lee, Kyoung-Hae;Kim, Kyung-Tack;Kim, Sung-Soo
    • Journal of Food Hygiene and Safety
    • /
    • v.27 no.2
    • /
    • pp.109-116
    • /
    • 2012
  • The study indicated that antimicrobial activity about gram positive and gram negative bacteria of ginger-oleoresin(GO) extract with the condition of ethanol and supercritical fluid extractions. As the concentration of extraction increases, the clear zone of GO ethanol extract also increased dependently. This led the antimicrobial activity of gram positive bacteria to take bigger place than gram negative bacteria especially in Listeria monocytogenes. There was a high antimicrobial activity in E-III treatment where the ratio of the ginger powder extract to ethanol extraction was 1:6. It was quite effective to treat the antimicrobial activity of GO ethanol extract under $80^{\circ}C$ and there was not big difference in the intervals which were the extraction time - 1 to 7 hours. The antimicrobial activity of supercritical fluid extract seemed to take the biggest place in Listeria monocytogenes. From the supercritical fluid extract, it was shown the strong ability of antimicrobial activity in the condition with 100 bar $35^{\circ}C$, 250 bar $35^{\circ}C$ and 250 bar $65^{\circ}C$. Furthermore, according to the case of solvent extract, there was not any significant difference in the antimicrobial activity with condition of extraction. However, there was significant antimicrobial activity in E-III treatment of 100 bar and 500 bar of extraction pressure, and $35^{\circ}C$ and $65^{\circ}C$ of extraction temperature.