2006년도 하계 아산만의 유기인계 농약의 분포 특성

Distribution Characteristcs of Organophosphorous Pesticides in Asan Bay, Korea in Summer 2006

  • 발행 : 2009.03.31

초록

2006년 5월부터 9월까지 아산만의 유기인계 농약의 분포특성에 대해 조사하였다, 조사기간 중 표층수와 부유입자 시료에서 28개의 유기인계 농약이 검출되었다. 조사해역의 표층수에서 가장 많이 존재하는 유기인계 농약은 IBP와 DDVP로 각각 N.D.${\sim}$014.4, 3.2${\sim}$696.3 ng/L의 농도로 측정되었다. 유기인계 농약은 아산만에서 7월과 8월에 가장 높은 농도분포를 보였으며, 이는 농약의 사용 및 강수와 관계가 있었다. 조사 해역에서 유기인계 농약은 상류에서 하류로 갈수록 농도가 뚜렷이 감소하여 육상기원 잔류농약이 연안의 해양환경내로 유입된 후 분해 희석됨을 보여주었다. 조사기간 중의 아산만 해역의 유기인계 농약의 분포는 다른 지역에서 조사된 것 보다 높은 농도를 보였다, 검출된 유기인계 농약의 농도는 우리나라 해역의 수질기준 중 유기인계 농약의 잔류 허용치를 넘지 않았다. 분석된 유기인계 농약 중 DDVP, IBP, Diazinon, Phorate, Azinphos ethyl, Chlorfenvinfos는 부유입자에 흡착하는 성질이 다른 농약보다 큰 것으로 나타났고 흡착계수 $(K_d)$는 Log $K_ow$와 밀접한 관계가 있었다.

Distribution characteristics of organophosphorous pesticides (OPs) were studied over the period from May to September, 2006 in Asan Bay, Korea. During the study period, 28 kinds of organophosphorous pesticides dissolved in surface water and adsorbed on suspended particle were measured. In the surface water, the dominant OPs were IBP and DDVP, and the concentration were in the ranges from not detected to 2014.4 ng/L for IBP and 3.2 to 696.3 ng/L for DDVP. The highest concentrations of OPs in the surface waters in Asan Bay appeared in July and August showing that seasonal distributions of OPs depend on application time and precipitation. The concentrations of OPs generally decreased with the increase of distance from the mouth of Asan Bay, implying progressive dilution of pesticides in the estuarine system. OPs residue in Asan Bay was relatively higher than in other area of Korea. The concentrations of the observed OPs concentrations did not exceed the seawater quality standard of Korea. DDVP, IBP, Diazinon, Phorate, Azinphos ethyl and Chlorfenvinfos had higher adsorption capacity onto suspended particle than the other OPs. In the study area, adsorption coefficients $(K_d)$ of OPs were closely related to the Log $K_ow$ of each compound.

키워드

참고문헌

  1. 국립수산진흥원(1996), 한국 연안 어장 환경오염 조사결과 보고서(1989-1994), pp. 255.
  2. 기상청 http://www.kma.go.kr
  3. 박종성(1991), 식물병리학, 향문사, pp. 506.
  4. 서용찬. 허미경, 김선영, 신재은, 박영훈, 김기동(2008), Efficiency Evaluation of Organophosphorous pesticides Analysis by ASE pre-treatment Technique and its application to Vegetable Samples, J. of the Kor. Soci. for Environ. anal., Vol.11, pp. 1-5.
  5. 양광록, 심재한, 서용택(1992), 농약 상호간의 협력작용에 의한 잉어의 독성과 해독효소 활성의 비교, 한국농화학회지, 제35권, pp. 367-374.
  6. 이태원(1991), 아산만 저어류. I 적정 채집방법. 한국수산학회지, 제24권, pp. 248-254.
  7. 이태원, 김광천(1992), 아산만 저어류 II. 종 조성의 주야 및 계절변동, 한국수산학회지, 제25권, pp.103-114.
  8. 이태원, 황선완(1995), 아산만 저어류 IV. 종 조성의 최근 3년간(1990-1993) 변화, 한국수산학회지, 제28권, pp.67-79.
  9. 임은진, 이재영(2004), 하수슬러지의 토양개량제 적용 시 유기인계 농약의 흡착 능력에 관한 연구, 한국지하수토양환경학회, 제9권, 제1호, pp. 95-103.
  10. 조석호, 안대명, 이창한, 김성수, 안갑환(2004), 폐 슬러지를 이용한 중금속 생체흡착의 흡착평형, 대한환경공학회2004 춘계학술연구발표회 논문집, pp. 1100-1103.
  11. Abdel-Halim, K.Y., Salama, A.K., El-khateeb, E.N. and Bakry, N.M.(2006), Organophosphorus pollutants(OPP) in aquatic environment at Damietta Governorate, Egypt: Implications for monitoring and biomarker responses", Chemosphere, Vol. 63, No. 9, pp. 1491-1498. https://doi.org/10.1016/j.chemosphere.2005.09.019
  12. Bergamaschi, B.A., Kuivila, K.M. and Fram, M.S. (1999), Pesticides Associate with Suspended Sediment in San Francisco Bay During the First Flush, December 1995, Proceedings of the Technical Meeting, Charleston, South Carolina, March, Contamination of hydrologic Systems and related ecosystems Vol. 2, pp. 8-12
  13. Chen, J.P., Pehkonen, S.O. and Lau, C.C.(2004), Phorate and Terbufos adsorption onto four tropical soils, Colloids and surfaces A, Physiochem. Eng. Aspects., Vol. 240, pp. 55-61. https://doi.org/10.1016/j.colsurfa.2004.03.008
  14. Choi, J.Y., Yang, D.B., Ju, H.J. Kim, K.T., Hong, G.H. and Shin, K.H.(2006), Distriburion characteristrics of organophosphorous pesticides in Asan Bay, Korea, J. Kor. Soc. Mar. Environ. Eng., Vol. 9, No. 3, pp. 176-186.
  15. Cooke, M.C., Shaw, G. and Collins, C.D.(2004), Determination of solid-liquid partition coefficient($K_d$) for the herbicides isoproturon and trifluralian in five UK agricultural soil., Environ. Poll., Vol. 132, pp. 541-552. https://doi.org/10.1016/j.envpol.2004.04.027
  16. Feagley, S. E. and Kim, J. H.(1995), Adsorption and Leaching of cis and tras-Permethrin in the soil, J. of the Kor. Environ. Sci. Soci., Vol. 4, pp. 379-386.
  17. Kennedy, S.W.(1991). The mechanism of organophosphate inhibition of cholinesterase-proposal for a new approach to measuring inhibition. In: Mineau, P. (Ed.), Cholinesterase-Inhibiting Insecticides: Their Impact on Wildlife and the Environment. Elsevier, New York, pp. 73-87.
  18. Kidd, H., James, D.R. and Eds.(1991) (as updated), The Agrochemicals Handbook (3rd ed)., Royal Society of Chemistry Information Services, Cambridge, UK, pp. 5-14.
  19. Li., D.H., Dong, M., Shim, W.J., Hong, S.H., Oh, J.R., Yim, U.H., Jeung, J.H., Kanan, N., Kim, E.S. and Cho, S.R.(2005) Seasonal and spatial distribution of nonylphenol and IBP in Seamangum Bay, Korea., Mar. Pollut. Bull., Vol. 51, pp. 966-974. https://doi.org/10.1016/j.marpolbul.2004.11.006
  20. Li, D.H., Hong, S.H., Shim, W.J., Park, J.K. and Kim, E.S.(2006), Spatial and Temporal Distribution of Organophosphorus Pesticides in Seawater from Saemangeum Area, Ocean and Polar Research, Vol. 28, No. 3, pp. 331-337. https://doi.org/10.4217/OPR.2006.28.3.331
  21. Meade, R.H.(1972), Transport and deposition of sediments in estuaries, Geologi. Socie. of Ame., Vol. 133, pp. 91-120.
  22. OU, S.H.(1985), Rice Disease. 2nd edition, Commonwealth Mycological Institute, Kew, Surrey, England., pp. 109-200.
  23. Pehkonen, S.O. and Q. Zhang(2002), The degradation of organophosphorus pesticides in Natural waters: A critical review. Crit. Rev. Environ. Sci. Technol., Vol. 32, pp. 17-72. https://doi.org/10.1080/10643380290813444
  24. Schubel, J.R. and Cater, H.H.(1984), The estuary as a filter for fine-grained suspended sediment in Kennedy, V.S., ed., The estuary as a filter, New York, N.Y., Academic., pp. 81-105.
  25. Uner, N., Oruc, E.O., Sevgiler, Y., Sahin. N., Durmaz, H. and Usata, D.(2006), Effects of daizinon on acetylcholinesterase activity and lipid peroxidation in the brain of Oreochromis niloticus. Environ. toxicol. and pharmacol., Vol.21, pp. 241-245. https://doi.org/10.1016/j.etap.2005.08.007
  26. U.S. Environmental Protection Agency. (U.S.EPA) http://www.epa.gov
  27. U.S. Environmental Protection Agency.(1988) Dichlorvos: Initiation of special review. Fed. Regist., 53: 5542-49, 1988. pp. 5-11.
  28. U.S. Public Health Service(1995), Hazardous Substance Data Bank. Washington, DC, 1995, pp. 5-9.
  29. Ware, G.(1989), The Pesticide Book. Thomson, Fresno, CA, pp. 336.
  30. World Health organization (WHO) http://www.who.int/en/
  31. Yu, J., D.H. Li, K.T. Kim, D.B. Yang and J.S. Yang (2001). Distribution of Organophosphorus pesticides in some estuarine environments in Korea. J. Fish. Sci. Technol., Vol. 4, pp. 201-207.
  32. Yu, J., D.B. Yang, K.T. Kim and K.W. Lee(2002), Distribution of Organophosphorus pesticides in Asan and Kyeonggi Bay, Korea, J. Kor. Soc. Mar. Environ. Eng., Vol. 5, pp. 38-50.