Decomposition rate of iprobenfos, isoprothiolane, and diazinon by some environmental factors in aqueous systems

몇가지 수중 환경요인에 의한 iprobenfos, isoprothiolane 및 diazinon의 분해속도

  • Park, Byung-Jun (National Institute of Agricultural Science and Technology. RDA) ;
  • Choi, Ju-Hyun (National Institute of Agricultural Science and Technology. RDA) ;
  • Lee, Byung-Moo (National Institute of Agricultural Science and Technology. RDA) ;
  • Im, Geon-Jae (National Institute of Agricultural Science and Technology. RDA) ;
  • Kim, Chan-Sub (National Institute of Agricultural Science and Technology. RDA) ;
  • Park, Kyung-Hun (National Institute of Agricultural Science and Technology. RDA)
  • 박병준 (농업과학기술원 농약안전성과) ;
  • 최주현 (농업과학기술원 농약안전성과) ;
  • 이병무 (농업과학기술원 농약안전성과) ;
  • 임건재 (농업과학기술원 농약안전성과) ;
  • 김찬섭 (농업과학기술원 농약안전성과) ;
  • 박경훈 (농업과학기술원 농약안전성과)
  • Published : 1998.09.30

Abstract

Three pesticides for paddy rice, iprobenfos, isoprothiolane, and diazinon were examined on some environmental factors, their hydrolysis, microbial degradation, and photolysis in aqueous systems. Iprobenfos was mainly degraded by microorganisms and its half-life was 5.7 days at $28^{\circ}C$ in aqueous systems. Hydrolysis of iprobenfos was accelerated by the higher temperature, but its photodegradation was accelerated by the lower pH. Isoprothiolane was rapidly decomposed by two factors, microorganisms and sunlight. The half-life of isoprothiolane by sunlight was 91 days at pH 9.0, while it was 13 days at pH 4.0 and 16 days at pH 7.2. However, it was shortened under low pH condition. In aqueous system, diazinon was degraded by all of three factors and its degradation rate was remarkably accelerated by acidic solution. Main degradation factors of iprobenfos, isoprothiolane, and diazinon in the aqueous system were investigated by microbial degradation, photolysis, and hydrolysis, respectively. The strains of microbial degradation for iprobenfos, isoprothiolane, and diazinon in the aqueous environment were identified as Pseudomonas putida, Alcaligenes xylosoxydans ss, Klebsiella planticola/ornithinllytica, respectively. The similarity rates of identity were $54.8{\sim}86.2%$ with biolog-system.

국내에서 많이 사용되고 있는 수도용 농약중 iprobenfos, isoprothiolane 및 diazinon의 수중 분해속도를 구명하기 위하여 수중 농약분해의 주요 요인인 가수분해, 미생물분해 및 광분해에 대해서 실험한 결과는 다음과 같다. Iprobenfos는 주로 미생물에 의해서 분해되었는데 반감기는 $4.0{\sim}5.7$일이었고, 고온일수록 가수분해가, pH가 낮을수록 분분해가 촉진되었다. Isoprothiolane은 미생물과 광에 의해서 주로 분해되었는데 광영향이 더 크게 작용한 것으로 나타났으며, 광분해는 pH 9.0에서 반감기가 91일인 반면 pH 4.0, 7.2에서는 각각 13, 16일로 pH가 낮을수록 분해가 신속하였다. Diazinon은 이 세가지 요인에 의해 분해가 일어났으며 pH가 낮을수록 가수분해가 매우 빠르게 일어났다. 농업환경에서 iprobenfos, isoprothiolane 및 diazinon의 수중분해는 각각 미생물분해, 광분해, 가수분해가 주요인으로 판단되었다. 시험농약을 분해하는 미생물을 동정한 결과 iprobenfos, isoprothiolane 및 diazinon은 각각 Pseudomonas putida, Alcaligenes xylosoxydans, Klebsiella planticola/ornithinllytica었고 유사도는 $54.8{\sim}86.2%$였다.

Keywords