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      SCIE SCOPUS KCI등재

      사과, 감귤, 고추 및 배추에서 생장조절제 Forchlorfenuron의 HPLC-DAD/MS 분석법 확립

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      https://www.riss.kr/link?id=A103543304

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      다국어 초록 (Multilingual Abstract)

      Forchlorfenuron is a plant growth regulator that is currently utilized to accelerate cell division and cell expansion, and promote organ formation and protein synthesis in plants. This experiment was conducted to establish a method for determining forchlorfenuron residues in fruits and vegetables using HPLC-DAD/MS. Forchlorfenuron residue was extracted with acetone from apple, mandarin, green pepper, and kimchi cabbage. The extract was diluted with a large volume of saline water and directly partitioned into dichloromethane to remove the polar co-extractives in the aqueous phase. The extract was purified by optimized Florisil column chromatography. Forchlorfenuron was successfully separated from co-extractives on an octadecylsilyl column in HPLC and quantified by ultraviolet absorption at 265nm with no interference. The accuracy and precision of the proposed method was validated by a recovery experiment of each sample fortified with forchlorfenuron at 3 concentrations per sample in triplicate. Mean recoveries ranged from 75.2 to 94.4% in the four samples. The coefficients of variation were all less than 10%, irrespective of sample type and fortification levels. The limit of quantification of forchlorfenuron was 0.02mg·kg<SUP>-1 </SUP>as verified by the recovery experiment. A method using LC/MS with a selected-ion monitoring technique was also conducted to confirm the identity of the suspected residue. This method is useful for routine analysis of forchlorfenuron residues in apple, mandarin, green pepper, and kimchi cabbage.
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      Forchlorfenuron is a plant growth regulator that is currently utilized to accelerate cell division and cell expansion, and promote organ formation and protein synthesis in plants. This experiment was conducted to establish a method for determining for...

      Forchlorfenuron is a plant growth regulator that is currently utilized to accelerate cell division and cell expansion, and promote organ formation and protein synthesis in plants. This experiment was conducted to establish a method for determining forchlorfenuron residues in fruits and vegetables using HPLC-DAD/MS. Forchlorfenuron residue was extracted with acetone from apple, mandarin, green pepper, and kimchi cabbage. The extract was diluted with a large volume of saline water and directly partitioned into dichloromethane to remove the polar co-extractives in the aqueous phase. The extract was purified by optimized Florisil column chromatography. Forchlorfenuron was successfully separated from co-extractives on an octadecylsilyl column in HPLC and quantified by ultraviolet absorption at 265nm with no interference. The accuracy and precision of the proposed method was validated by a recovery experiment of each sample fortified with forchlorfenuron at 3 concentrations per sample in triplicate. Mean recoveries ranged from 75.2 to 94.4% in the four samples. The coefficients of variation were all less than 10%, irrespective of sample type and fortification levels. The limit of quantification of forchlorfenuron was 0.02mg·kg<SUP>-1 </SUP>as verified by the recovery experiment. A method using LC/MS with a selected-ion monitoring technique was also conducted to confirm the identity of the suspected residue. This method is useful for routine analysis of forchlorfenuron residues in apple, mandarin, green pepper, and kimchi cabbage.

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      참고문헌 (Reference)

      1 이종화, "시설 내 오이 재배 중 살균제 Boscalid의 잔류특성" 한국농약과학회 12 (12): 67-73, 2008

      2 권찬혁, "고성능액체크로마토그래피를 이용한 농산물 중 Mandipropamid의 잔류분석법 확립" 한국분석과학회 21 (21): 518-525, 2008

      3 Korea Crop Protection Association, "Using guideline of crop protection agents"

      4 Lee JW, "The effects of GA3 and forchlorfenuron (FCF) on the seedless berry ratio and fruit quality in ‘Jarang’ grape" 30 (30): 120-, 2012

      5 Australian Pesticides and Vetarinary Medicines Authority, "Public release summary on evaluation of the new active forchlorfenuron in the product Sitofex 10 EC plant growth regulator"

      6 Fong WG, "Pesticide residues in food: methods, technologies and rregulations" John Wiley and Sons 3-4, 1999

      7 United States Environmental Protection Agency, "Pesticide fact sheet for forchlorfenuron" US EPA 1-8, 2004

      8 Lee YD, "Pesticide analytical residues manual in food code" MFDS 2012

      9 US FDA, "Pesticide analytical manual, Vol 1: Multi-residue methods" US Food and Drud Administration 1999

      10 AOAC, "Official method of analysis" AOAC International 1-88, 2000

      1 이종화, "시설 내 오이 재배 중 살균제 Boscalid의 잔류특성" 한국농약과학회 12 (12): 67-73, 2008

      2 권찬혁, "고성능액체크로마토그래피를 이용한 농산물 중 Mandipropamid의 잔류분석법 확립" 한국분석과학회 21 (21): 518-525, 2008

      3 Korea Crop Protection Association, "Using guideline of crop protection agents"

      4 Lee JW, "The effects of GA3 and forchlorfenuron (FCF) on the seedless berry ratio and fruit quality in ‘Jarang’ grape" 30 (30): 120-, 2012

      5 Australian Pesticides and Vetarinary Medicines Authority, "Public release summary on evaluation of the new active forchlorfenuron in the product Sitofex 10 EC plant growth regulator"

      6 Fong WG, "Pesticide residues in food: methods, technologies and rregulations" John Wiley and Sons 3-4, 1999

      7 United States Environmental Protection Agency, "Pesticide fact sheet for forchlorfenuron" US EPA 1-8, 2004

      8 Lee YD, "Pesticide analytical residues manual in food code" MFDS 2012

      9 US FDA, "Pesticide analytical manual, Vol 1: Multi-residue methods" US Food and Drud Administration 1999

      10 AOAC, "Official method of analysis" AOAC International 1-88, 2000

      11 Ministry of Food and Drug Safety, "MRLs for pesticides in foods" MFDS 131-, 2014

      12 Ardrey RE, "Liquid chromatography-mass spectrometry" West Sussex 98-122, 2003

      13 Ministry of Food and Drug Safety, "Korea food code" MFDS 10.4.34-10.4.342, 2012

      14 McLafferty FW, "Interpretation of mass spectra" 19-50, 1993

      15 이수진, "HPLC-UVD/MS를 이용한 농산물 중 ametryn의 분석" 한국농약과학회 15 (15): 125-133, 2011

      16 안경근, "HPLC-UVD/MS를 이용한 농산물 중 Amisulbrom의 잔류분석" 한국농약과학회 18 (18): 321-329, 2014

      17 Codex Alimentarius Commission, "Guidelines on good laboratory practice in residue analysis"

      18 이수진, "GC-ECD/MS를 이용한 농산물 중 captan, folpet, captafol 및chlorothalonil의 잔류분석법" 한국환경농학회 29 (29): 165-175, 2010

      19 정희돈, "Forchlorfenuron 처리에 의한 참외의 着果率 向上 및 果實肥大" 한국원예학회 20 (20): 302-305, 2002

      20 Qicong Hu, "Forchlorfenuron Alters Mammalian Septin Assembly, Organization, and Dynamics" American Society for Biochemistry & Molecular Biology (ASBMB) 283 (283): 29563-29571, 2008

      21 Um YC, "Effects of forchlorfenuron application on the induction of parthenocarpic fruit and fruit quality in Watermelon (Citrullus vulgaris S.) under greenhouse condition" 36 : 293-298, 1995

      22 Michèle Negre, "Determination of Forchlorfenuron in Fruits by Solid Phase or QuEChERS Extraction and LC-UV or LC/MS/MS" The Journal of AOAC International 97 (97): 938-941, 2014

      23 Miller JM, "Chromatography: concepts and contrasts" John Wiley & Sons, Inc. 286-287, 2005

      24 Antonio Valverde, "Analysis of Forchlorfenuron in Vegetables by LC/TOF-MS after Extraction with the Buffered QuEChERS Method" American Chemical Society (ACS) 58 (58): 2818-2823, 2010

      25 Hodhson, "A textbook of modern toxicology" John Wiley & Sons, INC. 414-415, 2004

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
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      2007-01-01 평가 등재학술지 유지 (등재유지) KCI등재
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      2003-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.92 0.74 0.83
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.77 0.73 1.115 0.19
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