HPLC-UVD/MS를 이용한 농산물 중 bentazone의 분석법 확립

Analytical Method of Bentazone Residue in Agricultural Commodities Using HPLC-UVD/MS

  • 김영학 (강원대학교 생약자원개발학과) ;
  • 이수진 (강원대학교 생약자원개발학과) ;
  • 송이슬 (강원대학교 생약자원개발학과) ;
  • 황영선 (강원대학교 생약자원개발학과) ;
  • 이영득 (대구대학교 생명환경학부) ;
  • 정명근 (강원대학교 생약자원개발학과)
  • Kim, Young-Hak (Dept. of Herbal Medicine Resource, Kangwon National University) ;
  • Lee, Su-Jin (Dept. of Herbal Medicine Resource, Kangwon National University) ;
  • Song, Lee-Seul (Dept. of Herbal Medicine Resource, Kangwon National University) ;
  • Hwang, Young-Sun (Dept. of Herbal Medicine Resource, Kangwon National University) ;
  • Lee, Young-Deuk (Division of Life and Environmental Science, Daegu University) ;
  • Choung, Myoung-Gun (Dept. of Herbal Medicine Resource, Kangwon National University)
  • 투고 : 2011.06.08
  • 심사 : 2011.06.17
  • 발행 : 2011.06.30

초록

HPLC-UVD/MS를 이용하여 농산물 중 benzothiadiazole계 선택적 접촉 제초제인 bentazone의 잔류분석법을 확립하였다. 농산물 시료에 인산용액으로 pH를 1로 조절한 acetone을 가하여 추출하였고, bentazone의 잔류분은 dichloromethane 액-액 분배법과 florisil 흡착크로마토그래피법으로 정제하여 분석대상 시료로 하였다. Bentazone의 정량적 분석을 위한 최적 HPLC 분석 조건을 확립하였고, $C_{18}$ 칼럼을 이용한 HPLC 분석 시 불순물의 간섭은 없었으며, 대표 농산물 중 bentazonc의 분석정량한계(LOQ)은 0.02 mg/kg 이었다. 전체 농산물에 대해 정량한계, 정량한계의 10배 및 50배 수준에서 회수율을 검토한 결과 모든 처리 농도에서 82.0~97.9% 수준을 나타내었으며, 농산물 시료 및 처리수준에 관계없이 10%미만의 분석오차를 나타내어 잔류분석 기준이내를 만족하였다. 본 연구에서 확립한 benzothiadiazole계 제초제인 bentazone의 잔류분석법은 검출한계, 회수율 및 분석오차 면에서 국제적 분석기준을 만족할 뿐만 아니라, LC/MS SIM을 이용한 잔류분의 재확인과정 및 회수율 검증의 결과를 종합해 볼 때 분석과정의 편이성 및 신뢰성이 확보된 공정분석법으로 사용이 가능 할 것으로 판단된다.

Bentazone is benzothiadiazole group herbicide, and used to foliage treatment. This herbicide have already been widely used for cereals and vegetables planting in worldwide. This experiment was conducted to establish a determination method for bentazone residue in crops using HPLC-UVD/MS. Bentazone residue was extracted with acetone (adjusted pH 1 with phosphoric acid) from representative samples of five raw products which comprised hulled rice, soybean, apple, green pepper, and Chinese cabbage. The extract was diluted with saline water, and dichloromethane partition was followed to recover bentazone from the aqueous phase. Florisil column chromatography was additionally employed for final clean up of the extract. The bentazone was quantitated by HPLC with UVD, using a YMC ODS AM 303 ($4.6{\times}250$ mm) column. The crops were fortified with bentazone at 3 levels per crop. Mean recovery ratio were ranged from 82.0% for a 0.2 mg/kg in apple to 97.9% for a 0.02 mg/kg in Chinese cabbage. The coefficients of variation were ranged from 0.5% for a 0.02 mg/kg in soybean to 9.7% for a 0.02 mg/kg in Chinese cabbage. Quantitative limit of bentazone was 0.02 mg/kg in representative five crop samples. A LC/MS with selected-ion monitoring was also provided to confirm the suspected residue. Therefore, this analytical method was reproducible and sensitive enough to determine the residue of bentazone in agricultural commodities.

키워드

참고문헌

  1. Abernathy, J. R., and L. M. Wax (1973) Bentazone mobility and adsorption in twelve Illiois soils. Weed Science 21(3):224-227.
  2. Alexander, J. J. D. H. E. Arabi, K. P. Hupe, U. A. T. Brinkman (1992) Electrophoretic sample pre-treatment techniques coupled on-line with column liquid chromatography. Analyst 117:1355-1359. https://doi.org/10.1039/an9921701355
  3. AOAC (2000) 'Pesticide and industrial chemical residues, In Official method of analysis', 17th ed., pp. 1-88, AOAC International, Arlington, VA, USA.
  4. Aurora, M. B., T. J. Manaco, and C. M. Peele (1984) Bentazone selectivity in hot pepper (Capsicum chinense) and sweet pepper (Capsicum annunm). Weed Science 32:243-246.
  5. Bethlenfalvay, G. J., R. F. Norris, and D. A. Phillips (1979) Effect of bentazone, a Hill reaction inhibitor, on symbiotic nitrogen-fixing capability and apparent photosysthesis. Plant Physiol. 63:213-215. https://doi.org/10.1104/pp.63.1.213
  6. Codex Alimentarius Commission (2003) Guidelines on good laboratory practice in residue analysis, CAC/GL 40-1993, Rev.1-2003, Rome, Italy.
  7. Connelly, J. A., M., D. Johnson, J. W. Gronwald, and D. L. Wyse (1988) Bentazone metabolism in tolerant and susceptible soybean (Glycine max) genotypes. Weed Science 36:417-423.
  8. Fong, W. G., H. A. Moye, J. N. Seiber, and J. P. Toth (1999) Pesticide residues in food: Methods, technologies, and regulations. Wiley Interscience. pp. 3-4, 40-44, Canada.
  9. Franklin R. K., L. H. Shen, and O. H. Ahmed (2010) Incorporation of bentazone with Exserohilum rostratum for controlling Cyperus iria. American Journal of Agricultural and Biological Sciences 5(2):210-214. https://doi.org/10.3844/ajabssp.2010.210.214
  10. Korea Crop Protection Council (2005) Pesticides application manual, Seoul, Korea, pp. 366-670.
  11. Kwon, C. H., M. I. Chang, M. H. Im, H. Choi, D. I. Jung, S. C. Lee, J. Y. Yu, Y. D. Lee, J. O. Lee, and M. K. Hong (2008) Determination of mandipropamid residues in agricultural commodities using high-performance liquid chromatography with mass spectrometry. Analytical Sci. & Technology 21(6):518-525.
  12. Lee, J., H. Park, Y. Keum, C. Kwon, Y. Lee, and J. Kim (2008) Dissipation pattern of boscalid in cucumber under green house condition. Korean Journal of Pesticide Science 12:67-73.
  13. Miller, J. M. (2005) Chromatography : concepts and contrasts (2nd), Wiley Intersciense, p. 286-287, USA.
  14. Muller, I. B., H. W. Petersen, S. S., Johansen, and P. Theiade (2003) Fetal overdose of the herbicide bentazone. Forensic Science International 135:235-236. https://doi.org/10.1016/S0379-0738(03)00178-6
  15. US FDA (1999) 'Pesticide Analytical Manual, Vol 1: Multi residue Methods (3rd ed.), US Food and Drug Administration, USA.
  16. Vink, M. and van der poll, J. M. (1996) Gas chromatographic determination of acid herbicide in surface water samples with electron-capture detection and mass spectrometric confirmation, J. Chromato. A 733:361-366. https://doi.org/10.1016/0021-9673(95)00997-3
  17. Zabkiewicz, J. A., and W. A. Forster (2003) Development of silple model for agrichemical uptake into plant foliage. New Zealand Plant Protection 56:61-65.
  18. 노석초, 황철환, 유기용, 한성수 (2007) pH조절 분배추출에 의한 식물체 중 methoxyfenozide와 bentazone의 HPLC 분석. 환경농학회지 26(3):246-253
  19. 박태선, 문병철, 조정래, 김창석, 김무성, 김길웅 (2004) Sulfonyurea계 제초제 저항성 물옥잠의 조기진단과 방제. 농약과학회지 8(1):63-70.
  20. 박태선, 강동균, 김길웅 (2005) Sulfonyurea계 제초제 저항성 올챙이고랭이(Scirpus juncoides Roxb.)의 제초제 반응과 방제. 농약과학회지 9(3):250-261.
  21. 식품의약품안전청 (2009) 식품공전.
  22. 이영득 (2011) 식품공전 잔류농약분석법 실무 해설서, 식품의약품안전청.
  23. 정영호, 김장억, 김정한, 이영득, 임치환, 허장현 (2000) 최신 농약학. p. 236
  24. 황기환, 김도순, 이종남, 구석진 (2006) Flucetosulfuron+pyrazosulfuronethyl 합제의 다년생 사초과 및 sulfonylurea계 저항성 잡초 방제효과. 농약과학회지 10(4):320-328.