Motoki Yutaka, Iwafune Takashi, Seike Nobuyasu, Inao Keiya
Food and Agricultural Materials Inspection Center, Agricultural Chemicals Inspection Station, 2-772 Suzuki-cho, Kodaira, Tokyo 187-0011, Japan.
Institute for Agro-Environmental Sciences, NARO, 3-1-3 Kannondai, Tsukuba, Ibaraki 305-8604, Japan.
J Pestic Sci. 2020 May 20;45(2):86-94. doi: 10.1584/jpestics.D19-072.
We investigated the dissipation of 27 pesticides in five Japanese soils at three temperatures and the variability of activation energies ( ). The dissipation of total pesticides extracted sequentially using water and acetone was fitted to a single first-order (SFO) model. The values calculated from the dissipation rate constants of the SFO model showed a normal distribution with a median of 61.1 kJ mol. The dissipation of water-extractable pesticides (, phytoavailable pesticides) was fitted to a double first-order in parallel model with two dissipation rate constants: and . The values calculated from and showed normal or lognormal distribution, and the medians of the normal distribution calculated from and were 62.8 and 45.2 kJ mol, respectively. Furthermore, the method for estimating the biphasic dissipation of phytoavailable pesticides at different temperatures by using the median values of the laboratory experiment was demonstrated in a field experiment.
我们研究了27种农药在三种温度下于五种日本土壤中的消散情况以及活化能( )的变异性。用水和丙酮依次提取的总农药的消散情况符合单一一级(SFO)模型。根据SFO模型的消散速率常数计算得出的 值呈正态分布,中位数为61.1 kJ·mol。水可提取农药(即植物可利用农药)的消散情况符合具有两个消散速率常数的双一级平行模型: 和 。根据 和 计算得出的 值呈正态或对数正态分布,由 和 计算得出的正态分布中位数分别为62.8和45.2 kJ·mol。此外,在田间试验中展示了利用实验室实验的中位数 值估算不同温度下植物可利用农药双相消散的方法。