• 제목/요약/키워드: Gas liquid chromatography

검색결과 500건 처리시간 0.029초

기체크로마토그래피/질량분석기에 의한 저질 및 토양시료 중 벤조페논의 분석법 연구 (Analysis of Benzophenone in Sediment and Soil by Gas Chromatography/Mass Spectrometry)

  • 권오승;김은영;류재천
    • Environmental Analysis Health and Toxicology
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    • 제16권3호
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    • pp.121-126
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    • 2001
  • Analytical method of benzophenone (BP) in sediment and soil was developed by gas chromatography/mass selective detector/selected ion monitoring (GC/MSD/SIM). The ultrasonic extraction of US EPA (method 3550B) method and liquid-liquid extraction for sediment and soil samples were used for the analysis of BP from sediment and soil. BP was extracted with n-hexane. Organic layer was washed with 5% sodium chloride solution. 1∼2 l of the concentrated solution of organic layer was applied to GC/MSD. The retention time of BP peak was 11.10 min. Recovery (%) of BP by ultrasonication from sediment and soil samples was 96.0∼100.6% and 40.0∼83.0%, respectively. Recovery of BP by liquid-liquid extraction was 51∼59% in soil samples. The detection limit of BP in sediment and soil samples were determined to 0.1 ng/g.

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식초의 에탄올 및 초산 함량의 동시분석 (Simultaneous Gas Chromatographic Analysis of Ethanol and Acetic Acid in Vinegar)

  • 윤희남
    • 한국식품과학회지
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    • 제30권6호
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    • pp.1247-1251
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    • 1998
  • 식초의 에탄올과 초산을 동시에 분석하고자 packed column으로 gas chromatographic analysis을 모색하였다. Tenax-GC를 충진물로 사용하여 $2\;m{\times}2\;mm$의 stainless steel column을 제조하고 식초를 여과하여 column에 직접 주입한 결과 내부 표준 물질로 사용한 isopropyl alcohol과 에탄올, 초산이 20분 이내에서 완전히 분리되었으며 정확도가 매우 높은 것으로(P<0.05)나타났다. 19종의 식초를 이용하여 적정방법으로 산도를, packed column GSC로 에탄올과 초산을, HPLC로 초산을, capillary column GLC로 에탄올과 초산을 각각 분석하여 분석치들을 상호 비교하였다.

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요중 알파나프틸아민 분석에 관한 연구 (The study on the analysis of α-naphthylamine in urine)

  • 김춘성;노재훈;배문주;김치년;임남구;원종욱
    • 한국산업보건학회지
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    • 제7권1호
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    • pp.49-59
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    • 1997
  • This study was performed to analyze the purity of technical grade ${\alpha}$-naphthylamine, to establish optimal analytical condition of ${\alpha}$-naphthylamine in urine and to determine the urine sample of workers exposed to ${\alpha}$-naphthylamine. The purity of technical grade ${\alpha}$-naphthylamine were $96.5{\pm}2.38%$, $94.1{\pm}0.97%$, $97.0{\pm}0.02%$ by gas chromatography-mass selective detector. To analyze ${\alpha}$-naphthylamine in urine, high performance liquid chromatography-electrochemical detector and gas chromatography-electron capture detector operating conditions have been optimized by preliminary expriment. In high performance liquid chromatography-electrochemical detector, the mobile phase was consisted of acetonitrile(35%) and water(65%), and the flow rate was maintained at 1.0ml per minute. Optimal detective condition was 9.0V(10nA/V) of electrochemical detector. The recovery of sep-pak treatment method was highly estimated as pretreatment of ${\alpha}$-naphthylamine in urine. The free amine was isolated by gas chromatography-electron capture detector after basic hydrosis, sep-pak treatment, toluene elution and HFBA(heptafluoro-butyric anhydride) derivatization of urine. The recovery of ${\alpha}$-naphthylamine in urine was $98.73{\pm}3.29%$ by gas chromatography-electron capture detector. The sensitivity was more higher than that of high performance liquid chromatography-electrochemical detector. Urinary ${\alpha}$-naphthylamine was detected in only one worker among nine workers. The level of ${\alpha}$-naphthylamine in urine was 6.42 ng/ml.

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高分子物質의 熱分解에 關한 硏究 (第3報) 合成고무類의 熱分解生成物의 Gas Chromatography에 의한 檢索과 合成고무 確認에의 利用 (On the Pyrolysis of Polymers III. Identification of Gases from Rubber Pyrolysis by Gas Chromatography)

  • 성좌경
    • 대한화학회지
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    • 제7권2호
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    • pp.115-121
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    • 1963
  • Aliphatic hydrocarbon gases from rubber pyrolysis have been identified by gas chromatography with tetraethyleneglycol dimethylether column. Rubbers used in this work are polyisoprene, SBR, NBR, polybutadiene, buthyl rubber, polychloroprene and polyurethane rubber. The chromatogram is characteristic for each polymer. Author proposes a method of identification of synthetic rubbers by gas chromatograph of pyrolyzed gas. Sample is pyrolyzed at $450^{\circ}C$ under nitrogen or more effectively helium and gaseous portion, which eliminated liquid condensate, is passed to the column. The appearance of exclusively large peak of isoprene, isobutylene and carbon dioxide shows the presence of polyisoprene, polyisobutylene and polyurethane, respectively. Large peak of butadiene will appear in case of polybutadiene, SBR and NBR, but SBR can be identified through the styrene peak in gas chromatogram of liquid pyrolyzate and NBR can be identified by the evolution of hydrogen cyanide during pyrolysis. Polychloroprene is identified by the evolution of hydrogen chloride. This method could be applied to the identification of copolymer or polymer blend.

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Liquid Chromatography-Mass/Mass Spectrometry (MS)와 Gas Chromatography-MS를 이용한 농축 액상 비료제품 중 Indole-3-acetic acid 및 Indole-3-butyric acid 정량분석능 비교 (Comparison of Liquid Chromatography-Mass/Mass Spectrometry (MS) and Gas Chromatography-MS for Quantitative Analysis of Indole-3-acetic acid and Indole-3-butyric acid from the Concentrated Liquid Fertilizer)

  • 김진효;박종민;최근형;박연기;임건재;김두호;권오경
    • Journal of Applied Biological Chemistry
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    • 제56권1호
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    • pp.53-57
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    • 2013
  • 비료제품에는 의도적 혹은 비의도적으로 농약으로 등록된 indole-3-acetic acid (IAA) 및 indole-3-butyric acid (IBA)성분에 대한 잔류 가능성이 꾸준히 제기되고 있으나, 생장조정제가 아닌 비료제품에서 mg/L 수준의 옥신류 잔류분석법이 마련되어 있지 않았다. 따라서, 본 연구에서는 생체시료에 미량 잔류하는 IAA 및 IBA 분석에 사용되어 온 liquid chromatography-mass/mass spectrometry (LC-MS/MS)와 gas chromatography-MS 기기분석법을 활용하여 농축 액상비료제품에 적용할 수 있는지 조사하였으며, 액상 비료제품에 적용 가능한 정밀기기 분석법을 개발하고자 하였다. 수용액 상태의 시료에서 식물 생장호르몬인 IAA와 IBA를 가장 손쉽게 정제할 수 있는 방법으로 hydrophile-lipophile balance (HLB) solid phase extraction를 활용하였으나, 제한된 조건에서 LC-MS/MS를 통한 정량분석은 적합한 회수율을 확보하지 못하였고, 정성분석만 가능함을 확인하였다. 반면, 비료제품 250배 희석액을 사용하여 HLB 정제, trimethylsilyl chloride을 이용한 methylation을 통한 GC-MS 분석에서는 검출한계 1.4 mg/L과 93-107%의 회수율로 액상 비료제품에서 IAA와 IBA 정량분석법을 확립할 수 있었다.

Gas Liquid Chromatography에 의한 Dienestrol Cream 중의 Dienestrol 정량 (Determination of Dienestrol in Dienestrol Cream by Gas Liquid Chromatography)

  • 백남호;박만기;염정록
    • 약학회지
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    • 제23권1호
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    • pp.7-10
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    • 1979
  • A gas chromatographic determination of dienestrol in dienestrol cream has been studied. Dienestrol cream was dissolved in pyridine and silylation was done by using N, O-bis (trimethylsilyl) trifluoroacetamide. The derivative was injected into 3% silicone OV-17 column for chromatographic estimation. The dienestrol peak was found to be well separated from the other components of the cream. The detection limit was obtained to be $5.6{\times}10^{11}$ mol of dienestrol for this method. As there is no need for prior separation procedure, this experiment is extremely simple and less time consuming as compared to the conventional methods for estimation of dienestrol in cream.

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Gas-liquid Chromatography에 의한 Ethambutol의 정량 (Determination of Ethambutol by Gas liquid Chromatography)

  • 이왕규;강길종;박만기
    • 약학회지
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    • 제19권4호
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    • pp.240-245
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    • 1975
  • The quantitative analysis of ethambutol.2HCl as well as commercial ehambutol preparations was undertaken by gas-liquid chromatography by finding optimum conditions, such as the use of internal standard, stability of an ethambutol-2HCl-caffeine standard solution, and the effect of column temperature, N, O-bis-(trimethylsily) acetamide [B.S.A.] concentrations and other substances present in the preparations. Under the chromatiographic conditions, an ethambutol-2HCl. caffeine standard, 9 min, 30sec. The relative molar response of ethambutol.2HCl and caffeine studied was 2.08. Ethambutol.2HCl could be quantitated up to 1$\times$10$^{-8}$ moles. the possible decomposition of B.S.A. due to the moisture when tested and the incoplete reaction for silylation could be minimized.

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Quantitative analysis of lee Amino Acids in Human Blood Seum by Gas-Liquid Chromatography

  • Seo, Bae-Seok;Kim, Ui-Rak;Lee, Kyu-Yong
    • Nuclear Engineering and Technology
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    • 제7권1호
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    • pp.3-8
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    • 1975
  • 만성 하악골염, 유행성출혈, 만성 신부전 및 간 경변증을 가진 환자의 혈청중에 포함된 여러가지 종류의 유리아미노산의 정량분석을 gas-liquid chromatography (G. L. C.)로 측정하였고, 건강인들의 유리아미노산의 정량과 비교한 결과 환자의 종류에 따라서 혈청중에 포함된 유리아미노산의 양에 차이가 있음을 발견 하였다.

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