Gustavus Adolphus College 800 West College Avenue, St. Peter, Minnesota 56082, United States.
J Agric Food Chem. 2015 Dec 23;63(50):10768-77. doi: 10.1021/acs.jafc.5b04663. Epub 2015 Dec 9.
The photodegradation of the imidazolinone herbicides imazamox, imazapic, imazaquin, and imazamethabenz-methyl has been investigated in phosphate-buffered solutions and buffered solutions containing natural organic matter (NOM). The hydrolysis of imazamethabenz-methyl, the only imidazolinone herbicide susceptible to hydrolysis, was also examined. The rate of hydrolysis of imazamethabenz-methyl increased with increasing pH, with the para isomer degrading more rapidly than the meta isomer. All photodegradation rate constants increased with pH and plateaued after pH 5.2. All imidzaolinones degraded more quickly under 253.7 nm lamps as compared to degradation under 310 nm lamps. Imazamox and imazapic degraded more rapidly than imazaquin at all pH values and had higher quantum yields. In addition, imazamox and imazapic quantum yields increased as a function of pH, whereas imazaquin quantum yields showed no trend as a function of pH. Photodegradation reaction rate constants decreased as the concentration of NOM was increased in the solutions due to the effect of light screening. Formulas for the proposed photoproducts for imazamox, imazapic, and imazaquin in pH 7 phosphate buffers were identified, and structures for the photoproducts are proposed.
已在磷酸盐缓冲溶液和含天然有机物 (NOM) 的缓冲溶液中研究了咪唑啉酮除草剂咪草烟、咪草啶酸、咪草烟和咪草烟甲酯的光降解情况。还检查了仅对水解敏感的咪唑啉酮除草剂咪草烟甲酯的水解情况。咪草烟甲酯的水解速率随 pH 值的增加而增加,对位异构体的降解速度快于间位异构体。所有光降解速率常数均随 pH 值的增加而增加,并在 pH 5.2 后趋于平稳。与 310nm 灯相比,所有 253.7nm 灯下的咪唑啉酮降解速度都更快。在所有 pH 值下,咪草烟和咪草啶酸的降解速度均快于咪草烟,且量子产率更高。此外,咪草烟和咪草啶酸的量子产率随 pH 值的增加而增加,而咪草烟的量子产率随 pH 值的增加无明显趋势。由于光屏蔽的影响,溶液中 NOM 浓度的增加会导致光降解反应速率常数降低。在 pH 7 的磷酸盐缓冲液中,确定了咪草烟、咪草啶酸和咪草烟的拟光产物的公式,并提出了光产物的结构。