Kwon Jeong-Wook, Armbrust Kevin L, Grey Timothy L
Mississippi State Chemical Laboratory, Mississippi State University, PO Box CR, Mississippi State, MS 39762-5622, USA.
Pest Manag Sci. 2004 Sep;60(9):939-43. doi: 10.1002/ps.897.
To determine the degradation rates and degradation products of the herbicide flumioxazin in aqueous buffer solutions (pH 5, 7 and 9), its hydrolysis and photolysis were investigated at 30 degrees C in the dark, and in a growth chamber fitted with fluorescent lamps simulating the UV output of sunlight. The rate of hydrolysis of flumioxazin was accelerated by increasing pH. The t(1/2) values at pH 5, 7 and 9 were 16.4, 9.1 and 0.25 h, respectively. Two degradation products were detected and their structural assignments were made on the basis of LC-MS data. Degradation product I was detected in all buffer solutions while degradation product II was detected in acidic buffer only. Both degradation products appeared to be stable to further hydrolysis. After correcting for the effects of hydrolysis, the photolytic degradation rate also increased as a function of pH and was approximately 10 times higher at pH 7 than that at pH 5, showing t(1/2) values of 4.9 and 41.5 h, respectively. Degradation products formed by photolysis were the same as those formed by hydrolysis. Flumioxazin was degraded more extensively at high pH and should degrade in surface water.
为了确定除草剂氟草烟嗪在水性缓冲溶液(pH值为5、7和9)中的降解速率和降解产物,在30℃黑暗条件下以及在配备模拟太阳光紫外线输出的荧光灯的生长箱中研究了其水解和光解情况。氟草烟嗪的水解速率随着pH值的升高而加快。在pH值为5、7和9时的半衰期(t(1/2))值分别为16.4、9.1和0.25小时。检测到两种降解产物,并根据液相色谱-质谱(LC-MS)数据对其结构进行了归属。在所有缓冲溶液中均检测到降解产物I,而仅在酸性缓冲溶液中检测到降解产物II。两种降解产物似乎都对进一步水解稳定。校正水解影响后,光解降解速率也随pH值升高而增加,在pH值为7时约比pH值为5时高10倍,半衰期分别为4.9和41.5小时。光解形成的降解产物与水解形成的相同。氟草烟嗪在高pH值下降解更广泛,在地表水应该会降解。