DOI QR코드

DOI QR Code

Development and Validation of Analytical Methods for Picoxystrobin Determination in Agricultural Products by GC-ECD and GC-MS

  • Do, Jung-Ah (Food Chemical Residues Division, National Institute of Food and Drug Safety Evaluation, KFDA) ;
  • Lee, Min-Hye (Food Chemical Residues Division, National Institute of Food and Drug Safety Evaluation, KFDA) ;
  • Park, Hyejin (Food Chemical Residues Division, National Institute of Food and Drug Safety Evaluation, KFDA) ;
  • Kang, Il-Hyun (Food Chemical Residues Division, National Institute of Food and Drug Safety Evaluation, KFDA) ;
  • Kwon, Kisung (Food Chemical Residues Division, National Institute of Food and Drug Safety Evaluation, KFDA) ;
  • Oh, Jae-Ho (Food Chemical Residues Division, National Institute of Food and Drug Safety Evaluation, KFDA)
  • Received : 2012.09.11
  • Accepted : 2012.11.20
  • Published : 2012.12.31

Abstract

A simple and sensitive analytical method was developed using gas chromatography with electron capture detector (GC-ECD) and gas chromatography-mass spectrometry (GC-MS) for determination of Picoxystrobin in agricultural products (apple, hulled rice, mushroom, pepper, soybean, and mandarin). Picoxystrobin residues were extracted with acetonitrile, partitioned with saline water, and then they were cleaned up on a florisil solid-phase extraction (SPE) cartridge to obtain an extract suitable for analysis by GC-ECD and GC-MS. The method was validated using 6 agricultural product samples spiked with Picoxystrobin at different concentration levels (0.02, 0.05 and 0.5 mg/L). Average recoveries of Picoxystrobin (using each concentration three replicates) ranged 64.0~98.3% with relative standard deviations less than 10%, calibration solutions concentration in the range 0.1~5 mg/L, and limit of detection (LOD) and limit of quantification (LOQ) were 0.005 and 0.02 mg/L, respectively. The result showed that the developed analytical method is suitable for Picoxystrobin determination in agricultural products.

농산물 중에 있는 Picoxystrobin 잔류량을 검사하기 위해 가스크로마토그래프-전자포획검출기와 가스크로마토그래프-질량분석기를 이용한 간단하고 감도가 좋은 분석방법을 개발하였다. Picoxystrobin 잔류물은 acetonitrile 추출, 포화식염수를 이용한 액-액 분배, florisil 카트리지 정제 과정을 거쳐 기기분석을 수행하였다. 개발된 방법으로 Picoxystrobin 잔류허용기준이 설정된 식품인 고추와 사과 외 대표 농산물 시료 현미, 대두, 버섯, 감귤을 대상으로 농약을 0.02, 0.05, 0.5 mg/kg 농도로 처리하여 회수율을 시험한 결과는 64.0~98.3%이었으며, 상대표준편차는 10% 미만이었다. 검량선 작성을 위해 0.1~5 mg/L 범위로 표준품을 만들어 실험한 결과 상관계수($r^2$)는 0.999로 높은 직선성을 보였으며, 분석방법의 검출한계와 정량한계는 각각 0.005와 0.02 mg/kg이었다. 또한 확인시험을 위하여 질량분석기를 사용하였으며, 145와 335를 특성이온으로 선정하였다.

Keywords

References

  1. Barlett, D.W., Clough, J.M., J.R. Godwin, J.R., Hall, A.A., Hamer, M., and Parr-Dobrzanski, B.: The strobilurin fungicides (review). Pest. Manag. Sci. 58, 649-662 (2002). https://doi.org/10.1002/ps.520
  2. Genay, J.P., Morand, P., and Dieleman, P.: Picoxystrobin: a fungicide for use on cereals.Phytoma. La Defense des Vegetaux 555, 56-58 (2002).
  3. Syngenta Crop (UK): Acanto Product Use, Product Guide. Available at www.syngenta-crop.co.uk (2005).
  4. Godwin, J.R., Bartlett, D.W., Clough, J.M., Godfrey, C.R.A., Harrison, E.G., and Maund, S.: The BCPC Conference: Pests and diseases, Volume 2. Proceedings of an international conference held at the Brighton Hilton Metropole Hotel, Brighton, UK pp. 533-540 (2000).
  5. Bartlett, D.W., Clough, J.M., Godfrey, C.R.A., Godwin, J.R., Hall, A.A., Heaney, S.P., and Maund, S.J.: Understanding the strobilurin. R. Soc. Chem. (2001).
  6. European commission: Commission Directive 2003/84/EC of 25 September 2003 amending Council Directive 91/414/EEC to include flurtamone, flufenacet, iodosulfuron, dimethenamid- P, Picoxystrobin, fosthiazate, and silthiofam as active substances, Off. J. Eur. Union L-247 20-25 (2003)
  7. US Environmental Protection Agency: Pesticides: Regulating Pesticides, Multi-Year Work plan for Registration of Conventional Pesticides - New Chemicals, EPA, USA. Available at http://www.epa.gov/opprd001/workplan/newchem.html (2012).
  8. Vinas, P., Campillo, N., Martinez-Castillo, N., Hernandez-cordoba, M.: Method development and validation for strobilurin fungicides in baby foods by solid-phase microextraction gas chromatography-mass spectrometry. J. Chromatogr. A 1216, 140-146 (2009). https://doi.org/10.1016/j.chroma.2008.11.036
  9. Rural Development Administration: RDA Notice 2012-15 (2012).
  10. Korea Crop Protection Association: Pesticide Use Guideline (2011).
  11. Korean Food and Drug Administration: KFDA Notice 2011- 23 (2011).
  12. Korean Food and Drug Administration: KFDA Notice 2012-100 (2012).
  13. Ho, W., and Hsieh, S.J.: Solid phase micro extraction associated with microwave assisted extraction of organ chlorine pesticides in medicinal plants. Anal. Chim. Acta. 428, 111 (2001). https://doi.org/10.1016/S0003-2670(00)01219-8
  14. Zuin, V.G., Yariwake, J., and Langas, .M.: Analysis of esicide residues in Brazilian plans. Braz. Hem. Soc. 14, 304-09 (2003). https://doi.org/10.1590/S0103-50532003000200019
  15. Rao, T.N., Ramesh, A., Parnathamma, P., and Suresh, G.: Development and validation of a HPLC-UV method for simultaneous determination of strobilurin fungicde esidues m tomato fruits followed by matrixs solid-phase dispersion (MSPD). Indian. Sci Res. 113-118 (2012).
  16. Gonzalez-Rodriguez, R.M., Cancho-Grande, B., and Simal- Gandara, J.:Multi-residue determination of 11 new fungicides in grapes and wines by liquid-liquid extraction/cleanup and programmable temperature vaporization injection with analyte protectants/gas chromatography/ion trap mass spectrometry. J. Chromatogr. A 1216, 6033-6042 (2009). https://doi.org/10.1016/j.chroma.2009.06.046
  17. Tekel, J. and Hatrik, S.: Pesticide residue analyses in plant material by chromatographic methods-clean-up procedures and selective detectors. J. Chromatogr. A 754, 397-410 (1996). https://doi.org/10.1016/S0021-9673(96)00489-X
  18. Topuz, S. Ozhan, G., and Alpertunga, B.: Simultaneous determination of various pesticides in fruit juices by HPLCDAD. Food Control 16, 87-92 (2005). https://doi.org/10.1016/j.foodcont.2003.11.012
  19. Mou, R.X., Chen, M.X., and Zhi, J.L.: Simultaneous determination of 15 phenylurea herbicides in rice and corn using HPLC with fluorescence detection combined with UV decomposition and post-column derivatization. J. Chromatogr. B 875, 437-443 (2008). https://doi.org/10.1016/j.jchromb.2008.09.022
  20. Korean Food and Drug Administration: Korean Food Standards Codex (2011).