Leaching behavior of the herbicide bentazon in soil column

Soil column중 제초제 bentazon의 용탈 행적

  • Kyung, Kee-Sung (National Institute of Agricultural Science and Technology, RDA) ;
  • Oh, Kyeong-Seok (National Institute of Agricultural Science and Technology, RDA) ;
  • Ahn, Ki-Chang (Department of Agricultural Chemistry, College of Agriculture, Chungbuk National University) ;
  • Kwon, Jeong-Wook (Department of Agricultural Chemistry, College of Agriculture, Chungbuk National University) ;
  • Lee, Jae-Koo (Department of Agricultural Chemistry, College of Agriculture, Chungbuk National University)
  • 경기성 (농업과학기술원 작물보호부 농약개발과) ;
  • 오경석 (농업과학기술원 작물보호부 농약개발과) ;
  • 안기창 (충북대학교 농과대학 농화학과) ;
  • 권정욱 (충북대학교 농과대학 농화학과) ;
  • 이재구 (충북대학교 농과대학 농화학과)
  • Published : 1998.04.30

Abstract

In order to elucidate the leaching behaviour of the herbicide bentazon in soil, soil columns(5cm ID ${\times}$ 34 cm L) were packed with three different soils up to 30 cm height, followed by the treatment of [$^{14}C$]bentazon, and rice plants(Oryza sativa L.) were grown for 9 weeks on these columns, with the columns without growing rice plants as the control for comparison. The amounts of $^{14}C$ activities percolated were about 92% of the originally applied $^{14}C$ irrespective of the physicochemical properties of the soils in the absence of rice plants, whereas $21{\sim}50%$ of the originally applied $^{14}C$ was percolated in the presence of rice plants, suggesting that the amounts of $^{14}C$ leached decreased remarkably in rice-cultivating soils. Bentazon leached faster in soil with higher pH and with lower organic matter content in the presence of growing rice plants. The amounts of $^{14}CO_{2}$ evolved from the soil columns were less than 0.2% of the originally applied $^{14}C$. Smaller amounts of $^{14}C$ were translocated into shoots via roots in soils with higher organic matter content. $^{14}C$ activities distributed into the aqueous phase of the leachate collected from the soil columns increased with leaching period and by rice cultivation, whereas the physico-chemical properties of soils did not exhibit any effect. The amounts of soil-bound residues increased remarkably by cultivating rice plants.

토양의 물리화학적 특성에 따른 제초제 bentazon의 용탈행적을 구명하기 위하여 3종의 토양을 soil column(내경 5 cm ${\times}$ 길이 34 cm)에 30cm 높이까지 충전하고 [$^{14}C$]bentazon을 처리한 후 벼(Oryza sativa L.)를 9주간 관행법에 따라 재배하였다. 용탈된 $^{14}C$ 방사능의 양은 벼를 재배하지 않은 경우는 토양의 물리화학적 특성에 관계없이 총처리 방사능의 약 $91{\sim}92%$이었으나 벼를 재배한 경우는 $21{\sim}50%$로서 $^{14}C$ 용탈량이 현저히 감소하였으며, pH가 높고 유기물 함량이 낮은 토양에서 더 많았다. $^{14}CO_{2}$의 발생량은 총처리방사능의 0.2% 미만으로 매우 적었고 유기물 함량이 높은 토양일수록 뿌리를 통한 지상부로의 이행율이 적었다. Soil column으로부터 모은 용탈수의 $^{14}C$ 방사능이 수상에 분포하는 양은 용탈기간과 벼의 생육에 따라 증가하였으나 토양의 이화학적 특성에 따른 영향은 나타나지 않았다. 토양결합잔류물의 양은 벼를 재배하고 유기물 함량이 높은 토양에서 증가하였다.

Keywords