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The Residue Property of Fungicide Dimethomorph and Pyraclostrobin in Green Onion under Greenhouse Condition

시설재배 쪽파에서 살균제 Dimethomorph와 Pyraclostrobin의 잔류특성

  • Park, Jong-Woo (Analysis Technology and Tomorrow) ;
  • Kim, Tae-Hwa (Analysis Technology and Tomorrow) ;
  • Chae, Seok (Analysis Technology and Tomorrow) ;
  • Sim, Jae-Ryoung (Analysis Technology and Tomorrow) ;
  • Bae, Byung-Jin (Korea Bio-Safety Institute) ;
  • Lee, Hae-Kuen (Korea Bio-Safety Institute) ;
  • Son, Kyeong-Ae (Department of Agro-Food Safety, National Academy of Agricultural Science, Rural Development Administration) ;
  • Im, Geon-Jae (Department of Agro-Food Safety, National Academy of Agricultural Science, Rural Development Administration) ;
  • Kim, Jin-Bae (Department of Agro-Food Safety, National Academy of Agricultural Science, Rural Development Administration) ;
  • Kim, Jang-Eok (School of Applied Biosciences, Kyungpook National University)
  • 박종우 ((주)분석기술과 미래) ;
  • 김태화 ((주)분석기술과 미래) ;
  • 채석 ((주)분석기술과 미래) ;
  • 심재룡 ((주)분석기술과 미래) ;
  • 배병진 ((주)한국생물안전성연구소) ;
  • 이해근 ((주)한국생물안전성연구소) ;
  • 손경애 (국립농업과학원 농산물안전성부) ;
  • 임건재 (국립농업과학원 농산물안전성부) ;
  • 김진배 (국립농업과학원 농산물안전성부) ;
  • 김장억 (경북대학교 응용생명과학부)
  • Received : 2012.11.12
  • Accepted : 2012.12.13
  • Published : 2012.12.31

Abstract

In order to use in the classification of minor crop for the mutual application of safe use guideline, it was investigated the residue property of fungicide dimethomorph and pyraclostrobin in green onion, a stem-crop. After pesticides were applied 2 times with 1 week interval in that day of harvest, 3 days, 7 days, 10 days and 14 days before harvest, a green onion was harvested. The residue of dimethomorph in a green onion was 26.31 and 39.08 mg/kg in that day of harvest, however, in according to elapse time, it was reduced to 6.86 and 9.34 mg/kg in 14 days before harvest. In case of pyraclostrobin, it was also reduced from 13.46 and 39.08 mg/kg to 3.57 and 5.21 mg/kg. Based on the residue in that day of harvest, the deposit of spray solution in a green onion was calculated. The deposit of spray solution of dimethomorph was 274.35~345.84 mL/kg, in case of pyraclostrobin, it was calculated 213.65~343.33 mL/kg. When the amount of the deposit of both pesticides was compared in a green onion, it was so similar. On the other hand, it was estimated the predicted dissipation curve of pesticides in the green onion during cultivation. The half-life of dimethomorph was 6.95~7.45 days, in case of pyraclostrobin, 7.15~7.45 days. When both pesticides were compared with the residue property, the deposit of spray solution and half-life of dissipation were so similar.

경채류로 분류될 수 있는 쪽파에 대한 살균제 dimethomorph와 pyraclostrobin의 잔류특성을 조사하였다. 수확일을 기준으로 각각 1주일 간격으로 2회 살포한 후 수확당일, 수확 3일전, 수확 7일전, 수확 10일전 및 수확 14일전에 시료를 수거하여 잔류량을 조사하였다. Dimethomorph의 경우 수확당일에는 26.31 mg/kg에서 39.08 mg/kg의 잔류수준을 나타내었으나 시간이 경과함에 따라 그 잔류량은 감소하여 수확 14일전 살포구에서의 잔류량은 6.86 mg/kg에서 9.34 mg/kg으로 나타났으며, pyraclostrobin의 경우도, 수확 당일 살포구에서의 농약 잔류량은 13.46 mg/kg에서 39.08 mg/kg으로 나타났으나 수확 14일전 살포구에서는 3.57 mg/kg에서 5.21 mg/kg으로 나타났다. 수확당일의 잔류량을 기초하여 작물 중 농약살포액의 부착량을 환산한 결과 dimethomorph의 경우 274.34~345.84 mL/kg, 그리고 pyraclostrobin의 경우는 213.65~343.33 mL/kg 나타내었다. Dimethomorph와 pyraclostrobin의 생육기간 중 농약의 분해소실 정도를 조사한 결과 dimethomorph의 경우 분해반감기가 6.95~7.45일, pyraclostrobin은 7.15~7.45일로 두 농약의 쪽파에서의 분해반감기는 비슷하였다.

Keywords

References

  1. Marin, A., J. Oliva, C. Garcia, S. Navarro and A. Barba (2003) Dissipation Rates of Cyprodinil and Fludioxonil in Lettuce and Table Grape in the Field and under Cold Storage Conditions. J. Agric. Food Chem. 51(16):4708-4711. https://doi.org/10.1021/jf021222e
  2. Tomlin, C. D. S. (2009) The Pesticide Manual(15th edition). pp. 121-122 and 520-521, British Crop Protection Council, UK.
  3. Bae, B.-J., H.-K. Lee, K.-A. Son, G.-J. Im, J.-B. Kim, T.-H. Kim, S. Chae and J.-W. Park (2012) The Residue Property of Fungicide Boscalid and Fludioxonil at the same time Harvest Leafy-Vegetables. The Korean Journal of Pesticide Science 16(2):98-108. https://doi.org/10.7585/kjps.2012.16.2.098
  4. Kwon, H.-Y., J.-H. Kim, H.-D. Lee, Y.-B. Ihm, K.-S. Kyung, I.- H. Park and J. Choi (2004) Estimate of Pesticide Residues in Tomato Varieties using Ratio of Surface Area Weight. The Korean Journal of Pesticide Science 8(1):30-37.
  5. Kim, J.-B., B.-H. Song, J.-C. Chun, G.-J. Im and Y.-B. Im (1997) Effect of Sprayable Formulations on Pesticide Adhesion and Persistence in Several Crops. The Korean Journal of Pesticide Science 1(1):35-40.
  6. Park, G.-S., M.-H. Im, D.-M. Choi, J.-Y. Jeong, M.-I. Chang, K.-I. Kwon, M.-K. Hong and C.-W. Lee (2005) Establishment of Korean Maximum Residue Limits for Pesticides in Foods. The Korean Journal of Pesticide Science 9(1):51-59.
  7. Lee, M.-G., M.-G. Hong, K.-S. Park, D.-M. Choi, M.-H. Lim and S.-R. Lee (2005) Procedures in Establishing Residue Limits of Pesticides on Food Crops in Korea. Korean Society of Food Science and Technology 37(4):685-694.
  8. Lee, J.-H., H.-W. Park, Y.-S. Keum, C.-H. Kwon, Y.-D. Lee and J.-H. Kim (2008) Dissipation Pattern of Boscalid in Cucumber under Greenhouse Condition. The Korean Journal of Pesticide Science 12(1):67-73.
  9. Lee, H.-D., K.-S. Kyung, H.-Y. Kwon, Y.-B. Ihm, J.-B. Kim, S.-S. Park and J.-E. Kim (2004) Residue characteristics hexaconazole and chlorothalonil in several friuts. The Korean Journal of Pesticide Science 8(2):107-111.
  10. Jung, Y.-H., J.-E. Kim, J.-H. Kim, Y.-D. Lee, C.-H. Im and J.-Y. Huh (2004) New Pesticides. pp.341-361, Sigma Press Inc., Korea.
  11. Korea Crop Protection Association (2012) A Pesticide yearbook.
  12. Korea Crop Protection Association (2010) Guideline of Pesticides Use. p68-69, p410-411, Samjeong Press Inc., Korea.
  13. Korea Health Industry Development Institute (2011) MRLs for Pesticides in Food. p260-262.
  14. Ministry for Food, Agriculture, Agricultural and Marine Products Quality Control Act (2006) Act 9117. Chapter 2.
  15. Ministry for Food, Agriculture, Forestry and Fisheries (2010) Principal Statistics of Food, Agriculture, Forestry and Fisheries.

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