• Title/Summary/Keyword: Capric acid

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Studies on the Fatty Acid Composition of Amorpha-fruticosa Seeds (Amorpha-fruticosa종자(種子)의 지방산조성(脂肪酸組成)에 관한 연구(硏究))

  • Whang, Byung-Ho;Lee, Sang-Young
    • Korean Journal of Food Science and Technology
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    • v.6 no.2
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    • pp.86-90
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    • 1974
  • Quantitative analysis of the fatty acids contained in Amorpha-fruticosa seeds was carried out by means of gas chromatography with F.I.D. The general components and chemical constants have been performed with A.O.A.C methods. The results are summarized as follow: 1. General components of Amorpha-fruticosa seeds come out to be 17.65% moisture, 21.02% crude protein, 12.04% crude lipid and 5.37% ash. 2. Extraction of crude lipids were performed by soxhlet extractor for 14 hour. Amounts of the crude lipids were extracted 80.25% in ether, 80.00% in methanol, 77.34% in benzene and 69.96% in hexane. 3. Chemical constants of Amorpha-fruticosa seed oil were saponification number 178.67, acid number 3.11 and iodine number 54.27. 4. The fatty acid components of Amorpha-fruticosa seeds were quantitatively determined by gas chromatography to give 78.73wt% linoleic, 5.8wt% oleic, 5.68wt% palmitic, 4.8wt% stearic and 3.40wt% linolenic acid in ether solvent and to give 77.86wt% linoleic, 7.77wt% palmitic, 5.84wt oleic and 4.97wt% stearic acid in methanol solvent. The peak of capric acid was not found. Myristic, arachidic and lauric acids were very small.

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Formation of Cyclodextrin Adsorbent Using Fatty Acid as a Ligand and Fractionation of $\alpha$-, $\beta$- and ${\gamma}$-cyclodextrins (Fatty Acid를 Ligand로한 Cyclodextrin Adsorbent의 제조와 $\alpha$-, $\beta$-, ${\gamma}$-Cyclodextrin의 분획)

  • 정승환;박동찬이용현
    • KSBB Journal
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    • v.10 no.5
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    • pp.491-498
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    • 1995
  • In order to fraclionate ${\alpha}$-, ${\beta}$- and ${\gamma}$-cyclodextrins(CDs) from CD reaction mixture, various CD adsorbents were manufactured using fatty acids as the ligand molecules and anion exchange resins as matrix. Among several anion exchange resins, DEAE Cellulose was found to be the most suitable matrix for binding fatty acid. The binding stability between DEAE Cellulose and capric acid was tested under the various operation conditions, such as temperature, ethanol concentration, and ionic strength. Specific CD adsorbents manufactured with different chain-length fatty acids, saturated and unsaturated, were compared in terms of the recovery yield and selectivity of ${\alpha}$-, ${\beta}$- and ${\gamma}$-CDs. Stearic acid (C18, saturated) was identified as the most effective ligand for fractionation of ${\alpha}$-CD, and linoleic acid ((C18, unsaturated ) for ${\beta}$-CD. The spacer length between the matrix and ligand was required for effective adsorption of CDs, and the double bond in fatty acid molecules was also acted as an important factor determining recovery yield and selectivity. The elusion patterns of ${\alpha}$- and ${\alpha}$-, ${\beta}$-CD from column packed with stearic acid and linoleic acid CD adsorbents were also investigated at the various elusion conditions for fractionation of ${\alpha}$- and ${\beta}$-CD.

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Comparative studies on the fatty acids in the green and roasted coffee beans (커피의 원두와 배전두의 지방산조성에 관한 비교연구)

  • 고영수
    • Journal of the Korean Home Economics Association
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    • v.24 no.3
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    • pp.119-127
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    • 1986
  • To investigate differences in fatty acid composition in green coffee beans and roasted coffee beans, the extracts of two beans were subjected to analysis of fatty acid composition by GC and HPLC. The results showed that palmitic and liolneic acid were the main fatty acids of coffee oil and their contents were about 40%. Minor components, such as capric acid, lauric acid and myristic acid were detected in both samples by GC, but nut HPLC.

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Changes in Compositions of Holstein Colostrum during Lactation Period (Holstein 젖소 초유의 성분 변화에 관한 연구)

  • 이수원;양동훈;황보식
    • Food Science of Animal Resources
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    • v.21 no.4
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    • pp.358-366
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    • 2001
  • To investigate the compositions of Holstein colostrums, samples were collected at 12 hour-interval after 12hrs postpartum. Milk protein, milk fat, SNF and total solid content of the colostum rapidly decreased from 12 hours to 48 hours after calving whereas lactose was the lowest at 12 hours after calving. Ash content was not shown to changes during lactation periods. Immunoglobulin G(IgG) concentration was also significantly(p<0.05) high in both primiparous and multiparous colostrum collected at 12 and 24 hours after calving. IgG concentration of primiparous and multiparous colostrums at 12 hours after calving was 44mg/ml and 44.27mg/ml, respectively. There was no apparent difference in IgG level between primipara and multipara. Fatty acid composition of colostral lipid was not shown to changes during lactation period. However, lauric acid, myristic acid and total saturated, fatty acid were slightly decreased in multiparous colostral lipid. Capric acid, myristic acid and palmitoleic acid composition in primiparous colostral lipid were slightly higher than those of multiparous colostral lipid throughout all lactation periods.

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Studies on the Hydrolysis of Milk Fat by Microbial Lipases (미생물에서 추출된 Lipase의 유지방 분해)

  • Park, Jong-Hack;Lee, Young-Chun
    • Korean Journal of Food Science and Technology
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    • v.17 no.2
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    • pp.60-64
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    • 1985
  • To utilize microbial lipases for hydrolysis of milk fat, optimum reaction conditions and characteristics of enzymatic reactions of lipases originated from Rhizopus delemar, Mucor sp., and Candida cylindracea were investigated. Optimum pH and temperature were pH 5.6 and $45^{\circ}C$ for Rhizopus delemar lipase, pH7.5 and $35^{\circ}C$ for Mucor sp. lipase, and pH7.5 and $35^{\circ}C$ for Candida cylindracea lipase. Optimum lipase concentration and optimum substrate concentration were $600{\sim}800\;units/ml$ and 20% milk fat, regardless of their origin. Km values were 6.06% milk fat for Rhizopus delemar lipase, 7.69% for Mucor sp. lipase and 7.99% for Candida cylindracea lipase. Rate of lipid hydrolysis was Rhizopus delemar lipase>Mucor sp. lipase>Candida cylindracea lipase. As the reaction time was extended, liberation of short chain fatty acids was increased. After 8 hours reaction, capric acid content significantly increased with Candida cylindracea lipase, palmitic acid with Mucor sp. lipase and butyric acid with Rhizopus delemar lipase.

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Studies on the Polymeric Surfactants (III);Synthesis of Sodium ${\alpha}-Sulfo$ Fatty Acid Allyl Ester Oligomers (고분자(高分子) 계면활성제(界面活性劑)에 관한 연구(硏究) (제(第) 3 보(報));알릴에스테르 ${\alpha}$-술폰 지방산(脂肪酸) 고분자(高分子) 화합물(化合物)의 합성(合成))

  • Nam, Ki-Dae;Jeong, No-Hee;No, Sueng-Ho
    • Journal of the Korean Applied Science and Technology
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    • v.6 no.2
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    • pp.45-51
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    • 1989
  • Allyl aliphatic carboxylates were synthesized by azotropic reaction with benzene between allyl alcohol and capric acid, lauric acid, myristic acid, palmitic acid or stearic acid respectively. allyl aliphatic carboxylates oligomers were prepared from polymerization giving allyl aliphatic carvboxylates in the presence of potassium persulfate in methanol, and the ${\alpha}-sulfonation$ of these five allyl aliphatic carboxylates oligomers were carried by direct addition of dry sulfur trioxide. Especially, molecular weights of fatty acid alylester oligomers and their sodium salts of ${\alpha}-sulfo$ fatty acid allylester oligomers were measured by boiling point method.

Studies on Drying Method of the Powder to Utilize Deteriorated Sweet Persimmon (파찌감 이용을 위한 분말화의 건조방법에 관한 연구)

  • 김성규;이용재;권오창;박윤문;김태춘;조영수
    • Food Science and Preservation
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    • v.7 no.4
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    • pp.389-394
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    • 2000
  • To utilize deteriorated sweet persimmon(Diospyros kaki T.) effectively, this study was investigated about the effective (Dying method of the powder. Chemical components, minerals, fatty acids and amino acids of hot-air dried and freeze dried conditions were determined Sample conditions used on analysis as follow; pretreatments of hot-air dry and freeze dry were soft, soft+peel, mixer, mixer+peel. The contents of crude protein, crude lipid, crude ash of hot-air dry were 0.9-1.1%,15.0-39.0% and 2.3-3.3%, respectively. And those of freeze dry were 1.3-2.2%, 27.-49.0% and 2.5%, respectively. Potassium, magnesium, phosphorus, calcium and sodium content in hot-air dry and freeze dry were high. Other minerals were less than 3.00ppm in all conditions. The major fatty acid contents were detected capric acid(C$\^$10:0/), lauric acid(C$\_$l2:0)/, tridecanoic acid(C$\_$13:00/), palmitic acid(C$\_$l6:00/), palmitoleic acid(C$\_$l6:1/), oleic acid(C$\_$18:1), linoleic acid(C$\_$18:2/), linolenic acid(C$\_$18:3/). The essential amino acids such as aspartic acid, threonine, serine, glutamic acid, glycine, alanine, valine, methirmine, isoleucine, leucine, tryosine, phenylalanine, histidine, lysine, arginine in freeze dry were contained richly. On the basis of chemical analysis, hot-air dry method will have to supply the additional different method, because simple hot-air dry method was shorten the dry time but had many problems. Therefore, the effective drying method considering changed color and nutrition was shown freeze dry method.

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Studies on the $\beta$-Galactosidase from Thermphilic Bacterium - Physiological Characteristics of the Selected Thermophile - (고온성 세균의 $\beta$-Galactosidase에 관한 연구 ( I ) - 분리고온균의 생리적 특성 -)

  • 이종수;오만진;이석건;김찬조
    • Microbiology and Biotechnology Letters
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    • v.11 no.1
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    • pp.5-13
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    • 1983
  • This experiment was carried out to elucidate the thermotolerant properties of a thermophilic bacterium which isolated from soils of the hot springs area and selected for the $\beta$-galactosidase production. Biochemical and physiological characteristics of this strain were studied, including the investigation on the fatty acid composition for its neutral fats. The results obtained were summarized as follows. 1. This bacterium was identified as a strain belong to the genus Thermus. 2. Optimal temperature and pH for growth of this strain were $65^{\circ}C$ and pH 6.5 respectively, and it was found to be an absolute thermophilic bacterium which could not grow at 37$^{\circ}C$. 3. No growth was obtained in the medium which contained more than 1.0% of sodium chloride. 4. The tolerable concentration of antobiotics were 10$\mu\textrm{g}$ of penicillin G per $m\ell$ of medium and 0.5$\mu\textrm{g}$ of chloramphenicol per $m\ell$ respectively 5. This strain had autotrophilic requirements for calcium-pantothenate and pyridoxine-HCO as an-essential factor and for niacin as a stimulative factor. 6. Fatty acid composition of neutral fats of the strain was palmitic acid. 60.20%; lauric acid, 11.8%; myristic acid, 7.56%, behenic acid, 4.25%; capric acid, 1.77%; stearic acid, 2.13%; arachidic acid, 1.53%; and others unidentified, 10.7%.

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Isolation and Characterization of a β-galactosidase Producing Thermophilic Bacterium (β-galactosidase를 생성하는 고온성(高溫性) 세균(細菌)의 생리적(生理的) 특성(特性)에 관한 연구(硏究))

  • Lee, Jong Soo;Kim, Chan Jo
    • Korean Journal of Agricultural Science
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    • v.9 no.1
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    • pp.377-386
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    • 1982
  • This experiment was carried out to elucidate the thermotolerant properties of a thermophilic bacterium which was isolated from soils of the hot springs area and selected for the ${\beta}$-galactosidase production. This bacterium was identified as a strain belong to the genus Thermus. Biochemical and physiological characteristics of this strain were studied, including the investigation of the fatty acid composition of its neutral fats. The results obtained were summarized as follows. 1. Optimal temperature and pH for growth of this strain were $65^{\circ}C$ and pH 6.5 respectively, and it was found to be an absolute thermophilic bacterium which could not grow at the temperature below $43^{\circ}C$. 2. No growth was obtained in the medium which contained more than 1.0% of sodium chloride. 3. The tolerable concentration of antibiotics were 10mg of penicillin G per ml of medium and 0.5mg of chloramphenicol per ml respectively. 4. This strain had auxotrophilic requirements for calcium-pantothenate and pyridoxin-HCl as an essential factor and for niacin as a stimulative factor. 5. Yellow pigment was released into the liquid culture of this strain, which showed maximum absorption at 420 nm. 6. Fatty acid composition of neutral fats of the strain was palmitic acid, 60.20%; lauric acid, 11.80%; myristic acid, 7.56%; behenic acid, 4.25%; capric acid, 1.77%; stearic acid, 2.13%; arachidic acid, 1.53%; and others unidentified, 10.7%.

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Chemical Analysis and Biological Activity of Endotoxin from Vibrio vulnificus

  • Lee, Bong-Hun
    • Journal of Life Science
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    • v.11 no.1
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    • pp.27-29
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    • 2001
  • Vibrio vulnificus endotoxin was extracted, analyzed the chemical composition, tested its biological activity, and compared to those of Escherichia coli and Salmonella typhimurium. The major fatty acid of three endotoxins were different each other; V. vulnificus endotoxins were different each other; V. vulnificus endotoxin was myristric acid (C14:0), E. coli was lauric acid (C12:0), S. typhimurium was capric acid (C10:0). The biological activities of V. vulnificus endotoxin were similar to those of E. coli and S. typhimurium in terms of the gelation activity of the Limulus amebocyte lysate and the lethal toxicity. But the result of enzyme (AST, ALT, and LDH) analysis showed that the enzyme activity of V. vulnificus endotoxin was similar to that of E. coli, but smaller than that of S. typimurium.

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