• Title/Summary/Keyword: GLC

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Screening of Organo Phosphorus Insecticide Fenitrothion-Degrading Microorganisms (유기인계 살충제 fenitrothion 분해미생물 탐색)

  • Choi, Hyuek;Kim, Bok-Jin;Bae, Do-Yong;Lee, Young-Deuk;Kang, Sun-Chul
    • Korean Journal of Environmental Agriculture
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    • v.17 no.3
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    • pp.279-285
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    • 1998
  • Fenitrothion-degrading microorganisms were isolated from 124 sampling sites of paddy, upland, forest and polluted soil, and wastewater. A total of 1,071 strains were isolated from each selective medium supplemented with 50mg/l of fenitrothion - nutrient agar (NA) 601, potato dextrose agar (PDA) 201, Actinomycetes isolation agar (AIA) 168 and basal salt medium (BSM) 101, respectively. Twenty-eight effective strains of them, which showed more than 80% degradation of fenitrothion by the gasliquid chromatography(GLC) analysis. were successfully selected from each liquid culture supplemented with 50mg/l of fenitrothion - NB 12(upland soil 3, paddy soil 3, forest soil 2, polluted soil 4), PDB 8(upland soil 1, paddy soil 2, forest soil 2, polluted soil 3) and PSB 8(upland soil 1, forest soil 1, polluted soil 6), respectively. Four strains - NPal, NFol, PFol and BPol, which have the most powerful degradation activity were finally selected among 28 fenitrothion-degrading microorganisms based on the degradation rate at the concentration of 100mg/l fenitrothion in enrichment media.

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Development of Analytical Method for Fenoxanil in Agricultural Products Using GC-NPD and GC/MS (농산물 중 Fenoxanil 잔류성 시험법 개발)

  • Kim, Gyeong-Ha;Ahn, Kyung-Geun;Kim, Gi-Ppeum;Hwang, Young-Sun;Lee, Young Deuk;Choung, Myoung-Gun
    • The Korean Journal of Pesticide Science
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    • v.19 no.4
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    • pp.345-353
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    • 2015
  • The aim of this study is to develop residue analysis method for fenoxanil, a MBI (melanin biosynthesis inhibitor) propionamide fungicide, had mainly been used to control rice blast, and disease of other crops, fruits, and vegetables by using GLC/NPD and GC/MS. Extraction with acetone and partition with n-hexane/dichloromethane (80/20, v/v) were performed from hulled rice, soybean, Kimchi cabbage, green pepper, and apple, then column clean-up with florisil was applied. Mean recoveries were 82.2%-109.1% with less than 7.2% of coefficients of variation and limit of quantitation was set at the concentration of 0.04 mg/kg from the five agricultural products through the determination by GLC/NPD equipped with DB-5 capillary column and single laboratory validation. As a confirmatory method, GC/MS selected ion monitoring (SIM) was set from m/z 125.0, 188.9, and 293.0. Developed method is expected to apply the single residue analysis of fenoxanil in agricultural products.

Chemical Changes in the Lipids of frozen Mackerel ordinary Muscle during low Temperature Storage (고등어 보통육의 냉동저장중(冷凍貯藏中) 지질(脂質)의 변화(變化)에 관한 연구(硏究))

  • Ahn, Myung-Soo;Chung, Tae-Yung;Lee, Sang-Kyun
    • Korean Journal of Food Science and Technology
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    • v.10 no.2
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    • pp.203-208
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    • 1978
  • A study was made on the changes in Acid Value (AV) and Peroxide Value (POV) of the Mackerel ordinary muscle during low temperature storage. Three different samples were used-natural (control), ascorbic acid (As. A)-added and NaCl-added. The samples were stored at the temperature of $-15^{\circ}C$ during 75days immediately after quick freezing at $-23^{\circ}C$ The change in the amount of fatty acids was also measured by means of GLC method. 1. In comparison with the control, the As. A -added showed lower AV and POV, whereas the Nacl-added gave higher values. 2. Among the various fatty acids, which are constituents of the fish lipids, the amount of palmitic acid (16:0), stearic acid (18:0), and oleic acid (18:1) had been increased during the storage, while there had been steady decrease in the amounts of unsaturated fatty acid such as linolenic acid (18:3), arachidonic acid (20:4), clupanodonic acid (22:5), and docosahexaenoic acid (22:6). 3. For the first 30 days after freezing, the decreasing rates of the amounts of docosahexaenoic acid in three samples of the As. A-added, the control, and the NaCl-added-were 7%, 14% and 36% respectively. However, after 45 days these samples showed the same decreasing rates of more than 57 percent.

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Studies on the Organic Acids Composition in Shellfishes 1. Nonvolatile Organic Acids Composition of Top Shell, Hard Clam, Abalone and their Boiled-Dried Products (패류의 유기산 조성에 관한 연구 1. 소라, 대합, 전복 및 그 자건품의 비휘발성유기산 조성)

  • JO Kil-Suk;PARK Yeung-Ho
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.18 no.3
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    • pp.227-234
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    • 1985
  • The present study was carried out for making clear the organic acids composition of some shellfishes and their boiled-dried products. Three species of shellfish such as top shell, hard clam and abalone were chosen as the experimental samples and analysed for their nonvolatile organic acids composition by gas liquid chromatography (GLC). Eight kinds of nonvolatile organic acid were identified in raw and boiled-dried top shell, major ones were succinic, malic and pyroglutamic acid. Out of nine kinds of nonvolatile acid was determined in raw and boiled-dried of hard clam, abundant ones were succinic, lactic and malic acid, And seven kinds of nonvolatile organic acid were detected in boiled-dried abalone while eight kinds in raw sample, abundant ones were succinic, lactic and pyroglutamic acid, respectively. In all samples, the total amount of nonvolatile organic acid was the most abundant in hard clam while the least in abalone, and the content of succinic acid was appeared as the most abundant one. In dried samples, the total amount of the nonvolatile organic acid was determined to be about half-decrease after the boiled-dried treatment of the raw samples, of which abalone showed the highest decreasing을 rate whereas hard clam was the lowest. In general, the decreasing rate of each acid was the higher in fumaric, malic and citric acid than in maleic, oxalic and succinic acid.

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Processing and Reduction Factors of Azoxystrobin and Flutolanil in Garlic by Freeze-Drying (동결건조에 따른 마늘 중 azoxystrobin과 flutolanil의 가공계수 및 감소계수)

  • Noh, Hyun-Ho;Kang, Kyung-Won;Park, Hyo-Kyoung;Lee, Kwang-Hun;Lee, Jae-Yun;Lee, Eun-Young;Park, Young-Soon;Kyung, Kee-Sung
    • The Korean Journal of Pesticide Science
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    • v.14 no.3
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    • pp.235-240
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    • 2010
  • In order to elucidate residual characteristics of pesticides in garlic by drying, azoxystrobin and flutolanil used for garlic were treated to the garlic by dipping for 1 and 5 min into their standard diluents and then the garlic was dried with a freeze-drier. The test pesticides were analyzed with a GLC-ECD/NPD. Recoveries of the pesticides ranged from 81.96 to 98.18%. Amount of azoxystrobin and flutolanil in fresh garlic were 0.34 and 1.18 mg/kg in case of dipping for 1 min. and 0.44 and 2.15 mg/kg in case of dipping for 5 min., respectively. Also, amount of azoxystrobin and flutolanil in dried garlic were 0.80 and 4.51 mg/kg in case of dipping for 1 min. and 1.03, 5.28 mg/kg in case of dipping for 5 minute, respectively, representing that concentration of the test pesticides in garlic were increased by drying. In case of dipping for 1 and 5 min., processing factors of azoxystrobin were 2.35 and 3.34 and those of flutolanil were 1.19 and 1.17, respectively. Reduction factors of the pesticides in garlic were range from 0.94 to 0.97, indicating that few amounts of the test pesticides in garlic were dissipated by freeze-drying.

Processing and Reduction Factors of Pesticide Residues in Chinese Matrimony Vine and Jujube by Drying (구기자와 대추 중 잔류농약의 건조에 따른 가공계수 및 감소계수)

  • Lee, Eun-Young;Noh, Hyun-Ho;Park, Young-Soon;Kang, Kyung-Won;Lee, Kwang-Hyen;Park, Hyo-Kyung;Kwon, Chan-Hyeok;Im, Moo-Hyeog;Kyung, Kee-Sung
    • The Korean Journal of Pesticide Science
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    • v.13 no.3
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    • pp.159-164
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    • 2009
  • This study was carried out to elucidate changes in concentration of pesticide residues in Chinese matrimony vine and jujube during drying. Test pesticides, triadimefon and triforine for chinese matrimony vine and methoxyfenozide and thiacloprid for jujube, which are commonly used for the crops in Korea, were treated to the crops by spraying and dipping. The pesticide residues in both fresh and dried Chinese matrimony vine and jujube were analyzed by using a GLC-ECD and an HPLC-DAD. Processing factors of the pesticides in Chinese matrimony vine and jujube by drying ranged from 1.41 to 2.28 and from 1.50 to 4.20, respectively. And reduction factors of the pesticides in the crops ranged from 0.29 to 0.47 and from 0.68 to 0.98, respectively. These results indicate that concentrations of the pesticides in the test crops increased after drying, while amounts of pesticides in them were diminished by drying.

Change of Ginsenosides and Free Sugars in Seeds During Stratification and Seedling During Early Growth Stage of Panax ginseng (인삼의 종자개갑시와 묘생육초기의 Ginsenosides 및 유리당의 변화)

  • 박귀희;이미경;박훈
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.31 no.3
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    • pp.286-292
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    • 1986
  • For the elucidation of saponin synthesis during ontogeny changes of ginsenosides and free sugars in seeds during stratification and seedlings in early growth stage were investigated with high performance liquid chrom-atography. Embryo plus endosperm at 40-day stratification showed 80% decrease of total saponin, disappear-ance of Rc, Rb$_2$ and Rb$_1$ and appearance of Rg$_3$ (probable) and 20-Glc-Rf (probable). Leaf ginsenoside F$_3$ was found not in fruit plup but seed and decreased during stratification. Both decomposition and synthesis of saponin seemed to occure during stratification. Ginsenosides in endosperm and embryo might be originated from fruit pulp by penetration. In seedling saponin appeared first in shoot and in root about one month later. Ginsenoside Rc, Rb$_2$, Rb$_1$ appeared in root at the last investigation (June 30) indicating normal saponin synthetic capacity of root. Saponin synthetic rate was twice in leaf than in root. Leaf ginsenoside F$_3$ was found in seedling root. Root saponin Rg$_3$ and 20-Glc-Rf were found in leaf and stem in seedling and decreased with growth suggesting that rate saponin is not such in certain growth stage. Total saponin content was negatively correlated with PT/PD in seeds and arial parts of seedling due to greater change of PD. than PT. Seed at 70days stratification showed high sucrose content. In seedling glucose was main sugar in stem all the while and sucrose in root at early stage while glucose, fructose and sucrose were found in leaf.

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Characterization of a Chitinase Gene and Screening of Cold Active Chitinase from Polar Microorganisms (극지유래 저온활성 Chitinase 생산균주의 스크리닝과 Chitinase 유전자 클로닝)

  • Park, Yu Kyung;Kim, Jung Eun;Lee, Hyoungseok;Kim, Ji Hyun;Park, Ha Ju;Kim, Dockyu;Park, Mira;Yim, Joung Han;Kim, Il-Chan
    • Korean Journal of Microbiology
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    • v.48 no.4
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    • pp.293-297
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    • 2012
  • Of the 169 strains of microorganisms stored in Polar and Alpine Microbial Collection of Korea Polar Research Institute, 27 strains were selected for their chitinase activity on ZoBell plates supplemented with 0.4% colloidal chitin. Among them, PAMC 21693 strain have shown the highest chitinolytic enzyme activity toward pNP-$(GlcNAc)_1$ at low temperature and the highest growth rate at $4^{\circ}C$. We cloned a full-length chitinase gene of 2,857 bp which contains an open reading frame of 2,169 bp encoding 872-amino acid polypeptide. Recombinant chitinase protein was expressed in E. coli and its molecular weight was confirmed 96 kDa. In this paper, we suggest the potential use of cold-active chitinase from polar microorganisms in the field of biotechnology.

Monitoring and Risk Assessment of Pesticide Residues in Agricultural Products Collected from Wholesale and Traditional Markets in Cheongju (청주지역 유통 농산물 중 잔류농약 모니터링 및 안전성 평가)

  • Noh, Hyun-Ho;Kang, Kyung-Won;Park, Young-Soon;Park, Hyo-Kyung;Lee, Kwang-Hun;Lee, Jae-Yun;Yeop, Kyung-Won;Lee, Eun-Young;Jin, Yong-Duk;Kyung, Kee-Sung
    • The Korean Journal of Pesticide Science
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    • v.14 no.1
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    • pp.1-9
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    • 2010
  • In order to survey residual characteristics of pesticides in the agricultural products selling at markets and to assess their safety, a total of 120 agricultural products were collected from the wholesale and traditional markets in Cheongju and analyzed the pesticide residues in them by multiresidue analysis method using GLC, HPLC and GC-MSD. Three pesticides, procymidone, penconazole, and tetraconazole, were detected from 4 samples such as onion, leek, tomato, and green pepper. Fungicide penconazole was detected from the onion collected from wholesale market. Fungicide procymidone was detected from leek and tomato and fungicide tetraconazole was detected from green pepper. Pesticide residues were detected from 3.3% of the total samples. The estimated daily intakes (EDIs) of the pesticides detected were less than 0.1% of their acceptable daily intakes (ADIs), representing that residue levels of the pesticides detected were evaluated as safe.

Analysis of Molecular Species of Vegetable Oil Triglycerides by Capillary Column GC-MS (Capillary Column GC-MS에 의한 식물유 트리글리세리드 분자종의 분석)

  • Yoon, Hyeung-Sik;Kim, Seon-Bong;Park, Yeung-Ho
    • Korean Journal of Food Science and Technology
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    • v.21 no.3
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    • pp.391-398
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    • 1989
  • Triglyceride molecular species In some vegetable oils were analyzed by capillary column gas chromatography and electron impact ionization mass spectrometry utilizing selected ion monitoring. Triglycerides were separated according to their molecular weights and their degrees of unsaturation on $25m{\times}0.25mm$ fused silica open tubular capillary column coated with a phenylmethylsilicone gum stationary phase and in an analysis time less than 13 min. Triglyceride molecular species were identified by analyzing the fragment ions having the same time on the selected ion monitoring profile . The major triglyceride molecular species in each oils were $C_{18:1}.\;C_{18:2}.\;C_{18:2}(OLL:18.3%),\;C_{18:2}.\;C_{18:2}.\;C_{18:2}(LLL;\;14.3%),\;C_{18:0}.\;C_{18:2}.\;C_{18:2}(SLL;\;14.1%),\;C_{16:0}.\;C_{18:2}.\;C_{18:2}(PLL;\;13.2%),\;C_{16:0}.\;C_{18:2}.\;C_{18:1}(PLO;\;11.6%)$ in corn oil, $C_{18:2}.\;C_{18:2}.\;C_{18:2}(LLL;\;18.0%),\;C_{18:1}.\;C_{18:2}.\;C_{18:2}(OLL;\;18.0%),\;C_{16:0}.\;C_{18:2}.\;C_{18:2}(PLL;\;17.1%)$ in safflower oil, $C_{16:0}.\;C_{18:2}.\;C_{18:2}(PLL;\;23.5%),\;C_{16:0}.\;C_{18:2}.\;C_{18:1}(PLO;\;13.8%),\;C_{18:0}.\;C_{18:1}.\;C_{18:1}(SOO;\;13.5%),\;C_{18:1}.\;C_{18:2}.\;C_{18:2}(OLL;\;10.6%)$ in cottonseed oil.

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