• Title/Summary/Keyword: Florisil

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Study on the Development of Simultaneous Analytical Method for the Residual Organic Chloride Pesticides by Gas Chromatography (기체 크로마토그래피를 이용한 유기 염소계 잔류 농약 동시 분석 방법 개발에 관한 연구)

  • Kim, Woo-Seong;Lee, Bong-Hun;Park, Heung-Jai
    • Journal of Environmental Science International
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    • v.5 no.5
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    • pp.561-567
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    • 1996
  • A method for the simultaneous analysis of 31 residual organic chloride pesticides was studied using gas chromatography. Prepared analytical samples were injected to gas chromatography (HP 5890 Series II plus) on the Ultra-2 column with ECD. The packing materials for column were changed as the following reagents ; florisil and alumina N, The residual solution was loaded to column and was elected pith erection solvents ; ether : benzene (2 : 8) solution, hexane : benzene (1 : 1) solution, dichloromethane, acetone, and methanol. The analytical results showed that 6 kinds of organic chlorides were not detected when florisil (first condition) was used as the column packing material. The nondetected 6 kinds of organic chlorides in the first analytical condition were detected and the recoveries of thrin-pesticides were increased, in particular, captan and captafol, but the recoveries of benzene hexachloride compounds were decreased when dichloromethane and methanol were added as elution solvents (pac'king material was florisil as in the first condition). The recoveries of dichlornuanid, chlorofenvinfos, folpet, and dicofol were increased and that of aldrin was increased, but those of captan and captafol were not good when alumina N was used as the packing material. To detect simultaneously thrin-pesticides, captan, and captafol, florisil and alumina N were used as the packing materials. The elution result showed that captan and captafol were not detected. This was because the column was activated insufficiently. The analytical method was the best (31 kinds of organic chlorides in the residual pesticides were detected sharply and showed high sensitivity) when the column (packing materials were florisil and alumina N: together) was fuliy activated and the impurities were removed using various elution solvents.

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Simultaneous detection method for pesticide residues in meat by gas chromatograph-mass selective detector (Gas chromatograph-mass selective detector를 이용한 식육 중 잔류농약의 동시분석)

  • Hong In-Suk;Choi Yoon-Hwa;Kweon Taek-Boo;Lee Jung-Hark
    • Korean Journal of Veterinary Service
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    • v.28 no.3
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    • pp.285-294
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    • 2005
  • This study was conducted to investigate the extraction method for the determination of organochlorine, organophosphorus and synthetic pyrethroid pesticide residues in beef fat by gas chromatography-mass selective detector(GC-MSD). Twenty one pesticide residues in fat were determined using a simple and rapid procedure based on solid- phase extraction(SPE) clean-up cartridges with octadecyl $(C_{18})-bonded$ porous silica, florisil, $10\%$ deactivated florisil. a tandem $C_{18}$ and florisil and a tandem $C_{18}$ and $10\%$ deactivated florisil. Solvent-solvent extraction using acetonitrile was not satisfied to eliminate fat interference for pesticide residue analysis by GC-MSD, and the recoveries of the method in fat ranged from 16.2 to $57.3\%$ except DDT$(83.2\%)$. The recoveries of SPE methods using a tandem $C_{18}$ and Florisil was $59.6\~123.8\%$ except fenitrothion $(135.2\%)$. the SPE method was verified the satisfactory performance of pre-treatment for pesticide residues analysis in fat by GC-MSD. The efficiency of florisil deactivated with $10\%$ water has been not proved significantly on recoveries of pesticide residues in fat.

Analysis of Organochlorine Pesticide, in the Presence of Polychlorinated Biphenyls(PCBs) I. Florisil Column Separation of the Pesticides-PCBs Mixture (Polychlorinated Biphenyls(PCBs) 존재하에 유기염소계 살충제의 잔류분 분석 1. Florisil Column에 의한 농약과 PCBs의 분리)

  • Park C. K.;Lee C. Y.;Park R. D.
    • Korean journal of applied entomology
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    • v.16 no.4 s.33
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    • pp.221-227
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    • 1977
  • Polychlorinated Biphenyls (PCBs) interfere with gas chromatographic analysis of multiple organochlorine pesticide residues. In the present work, existing Florisil column chromatographic method has been modified as to improve separation of organochlorine pesticides and their metabolites from PCBs. It was amply demonstrated that separation of $\alpha-BHC,\; \gamma-BHC$ Heptachlor epoxide Dieldrin, p.p-DDD, p.p'-DDT from PCBs such as Aroclor 1254 is complete and recovery of the pesticides is found quantitative. Aldrin and Heptachlor in the Aroclor eluant can be separately analyzed by comparison of the chromatographic pattern of standard Aroclor 1254 with that of Aroclor 1254 a dmixed with the two pesticides. The Florsil column technique can be utilized in the routine evaluation of the organochlorine pesticide residues by gas chromatography.

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Determination of Phthalates in Biota Samples Using Gas Chromatography/Mass Spectrometry (기체크로마토그래피/질량분석법을 이용한 생체시료 중 프탈산 에스텔류의 분석법)

  • Seo, Jung-Ju;Na, Yuncheol;Hong, Jongki
    • Analytical Science and Technology
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    • v.14 no.5
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    • pp.400-409
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    • 2001
  • A method for the analysis of most common phthalate acid esters (9 secies) in biota samples by gas chromatography-mass spectrometry-selected ion monitoring mode is described. Phthalates in biota samples are extracted by organic solvent and purified by Florisil column. Phthalates are easily contaminated during extraction prodedure. Since the extraction and cleanup steps for biota samples generally are more complicate than those for water or sediment samples, we compared with contamination state of each sample work-up step. By applying this developed method, the overall recoveries ranged between 79 - 117% in biota sample which was spiked with standards. For phthalates used in this study, the quantitaive accuracy, elution pattern on Florisil column, and detection limits were also investigated.

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Study on the Development of Analytical Method (Multi-Pesticide Residue Method) for Organophosphate Pesticides (유기인제 농약 분석 방법 (Multi-Pesticide Residue Method) 개발에 관한 연구)

  • 이봉헌;김우성
    • Journal of Environmental Science International
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    • v.6 no.2
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    • pp.183-187
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    • 1997
  • Organophosphate pesticides were extracted with 70% acetone and then transferred to dichloromethane. Extracts were applied to open-column chromatography with florisil. The florial extract was analyzed by gas chromatography with nitrogen-phosphorus detector(GC/NPD). Recoveries of the 18 organophosphate pesticides were ranged from 88.7% to 100. 0% for the narrow-bore capillary GC(Ultra-21. The minimum detectable level of this analytical method was 0.019 - 0.035 mg/kg. Sample throughput(extraction, open-column chro- matography, and GC analysts) was decreased considerably (8h per sample).

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Multi-Pesticide Residue Method for Organopesticide Analysis (유기농약 분석을 위한 Multi-Pesticide Residue Method)

  • 김우성;이봉헌
    • Journal of Environmental Science International
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    • v.6 no.4
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    • pp.385-389
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    • 1997
  • Pesticide residues were extracted with 70% acetone and transferred to dichloromethane. Extracts were applied to open-column chromatography with florisil and alumina-N. The final extract was analyzed by gas chromatography with electron-capture detector(GC /ECD) and nitrogen-phosphorus detector(GC/NPD). Recoveries of the 17 organochlorine pegticides were ranged from 60.8 to 84.9% and those of 15 organophosphate pesticides, from 70.5% to 100.0%(except phosmet and azlnphos-methyls. The minimum detectable levels of this analytical method were low(0.021-0.058mg/kg).

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Adsorption Column Chromatography for Simultaneous Determination of Multi-pesticide Residues (잔류농약 다성분 동시분석을 위한 흡착 크로마토그래피의 적용)

  • Kim, Chan-Sub;Ihm, Yang-Bin;Choi, Ju-Hyun;Lee, Kyoung-Mi;Lee, Young-Deuk
    • The Korean Journal of Pesticide Science
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    • v.14 no.4
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    • pp.347-360
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    • 2010
  • In order to develop the multi-residue purification method for 180 pesticides commonly used in Korea, many analytical methods on individual and multi- pesticide residues in the agricultural commodities and food product were examined. Through the modification of adsorption chromatographic methods used in Europe, the United States and Korea, the Florisil and silica-gel chromatographic systems were developed. Through these purification systems, elution profiles for all pesticides were examined. As the results, 145 pesticides were recovered in the range of 70-120% in Florisil clean-up system. The distribution of pesticides in the elution profile was 12 pesticides in the first fraction, 76 pesticides in the second fraction, 81 pesticides in the third fraction, 60 pesticides in the fourth fraction and 30 pesticides in the last fraction. And, in silica-gel system, 137 pesticides were recovered in the range of 70~120%. The distribution of pesticides in the elution profile was 22 pesticides in the first fraction, 59 pesticides in the second fraction, 102 pesticides in the third fraction, 46 pesticides in the fourth fraction and 8 pesticides in the last fraction.

Cholesterol Removal from Milk Fat by Supercritical Carbon Dioxide Extraction in coupled with Adsorption (초임계 이산화탄소 추출 및 흡착에 의한 유지방중의 콜레스테롤 제거)

  • Lim, Sang-Bin;Jwa, Mi-Kyung;Kwak, Hae-Soo
    • Korean Journal of Food Science and Technology
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    • v.30 no.3
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    • pp.574-580
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    • 1998
  • The technical feasibility of removing cholesterol from milk fat by supercritical carbon dioxide $(SC-CO_2)$ extraction followed by adsorption on different adsorbents and of fractionating milk fat into different fatty acid composition at $40^{\circ}C/276$ bar was investigated. Cholesterol could be selectively removed from milk fat by adsorption on a typical commercial florisil with $SC-CO_2$ extraction. Lower weight ratio of milk fat feed to florisil showed higher reduction of cholesterol, but gave lower yield in the milk fat fractions. The effective capacity of florisil for removing cholesterol from milk fat was 2.0g/g, which is the ratio of the fat feed to the adsorbent for 89% cholesterol reduction with a fat yield of 57.5%. Fatty acid composition showed higher short-chain and lower unsaturated long-chain fatty acids in the extracted fractions. Milk fat fractionation method by supercritical fluid extraction in coupled with adsorption would appear suitable for removing undesirable ingredients such as cholesterol and for enriching short-chain fatty acids in the fractions.

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Simultaneous Determination of Pesticide Residues in Soils by Dichloromethane Partition - Adsorption Chromatography - GC-ECD/NPD Analytical Methods (Dichloromethane 분배 - 흡착 크로마토그래피 - GC-ECD/NPD 분석법에 의한 토양잔류농약 다성분 분석)

  • Kim, Chan-Sub;Lee, Byung-Moo;Park, Kyung-Hun;Park, Byung-Jun;Park, Jae-Eup;Lee, Young-Deuk
    • The Korean Journal of Pesticide Science
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    • v.14 no.4
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    • pp.361-370
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    • 2010
  • Considering the efficiencies of the preparation process at each stage obtained in previous studies, the analytical determination method was established for multi-pesticide residues in soils. It consist of the acetone-extraction, the dichloromethane-partition, the Florisil or silica-gel chromatography and the gas chromatography analysis equipped with the electron capture detector and the nitrogen-phosphorus detector. In the soil recovery test by Florisil clean-up system, the number of pesticides recovered in the range of 70~120% and showed less than 20% of RSD were 165 pesticides for paddy soil, 169 pesticides for upland soil and 159 pesticides in both soils through the tested 183 pesticides. And in the soil recovery test by silica-gel system, the number of pesticides recovered in the range of 70~120% and showed less than 20% of RSD were 154 pesticides for paddy soil, 145 pesticides for upland soil, and 134 pesticides in both soils.

Development of Simultaneous Analytical Method for Various Residual Pesticides Using GC-ECD (GC-ECD를 이용한 잔류 농약 다성분 동시 분석법 개발)

  • 김우성;손영욱;정지윤;안경아;홍무기;임무혁;이홍재;이봉헌;박흥재
    • Journal of Environmental Health Sciences
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    • v.27 no.1
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    • pp.88-92
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    • 2001
  • The simultaneous analytical method for 37 residual pesticides was developed by a gas chromatography with $^{63}$ Ni electron capture detector. Pesticides added in soybean sample were extracted with 70% acetone in water and methylene chloride in oder, and then cleaned up via open-column apparatus packed with florisil and alumina N. The Ultra-2 fused capillary column was used to separate the products. The resolution between the last isomeric peak of cypermethrin (56.398 min) and the first isomeric peak of flucythrinate (56.421 min) was not satisfactory and the last isomeric peak of fenvalerate(58.783 min) and the first isomeric peak of fluvalinate(58.835 min) was overlapped. Except for $\alpha$-BHC, dichlofluanid, captan, and captafol, most recoveries were showed over 70%.

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