Inao Keiya, Iwafune Takashi, Horio Takeshi
National Institute for Agro-Environmental Sciences Kannondai.
J Pestic Sci. 2018 May 20;43(2):142-152. doi: 10.1584/jpestics.D17-084.
We developed an improved version of the PADDY model for predicting pesticide behavior in paddy fields, which includes pesticide uptake by rice roots. We applied the model to nursery-box and submerged pesticide applications. A paddy field was divided into root-zone and inter-plant areas, and paddy soil containing pesticides was vertically separated into three layers. Pesticide behavior was modeled with mass fractions of the pesticides in paddy water and the soil layers immediately after rice transplanting obtained from field experiments, and uptake by rice roots was described using the transpiration stream concentration factor. The improved model successfully simulated measured concentration changes in a paddy field, including rice plants, under nursery-box and submerged applications. The model evaluated the difference in the concentrations of nursery-box-applied pesticides between root-zone and inter-plant soil samples with several key parameters. Our study provides a useful solution for simulating the uptake of pesticides in soil by rice roots.
我们开发了一种改进版的PADDY模型,用于预测稻田中的农药行为,该模型包括水稻根系对农药的吸收。我们将该模型应用于秧盘施药和淹水施药情况。稻田被划分为根区和株间区域,含有农药的稻田土壤垂直分为三层。利用田间试验获得的水稻移栽后稻田水中和土壤层中农药的质量分数对农药行为进行建模,并使用蒸腾流浓度因子描述水稻根系对农药的吸收。改进后的模型成功模拟了秧盘施药和淹水施药情况下稻田(包括水稻植株)中实测的浓度变化。该模型用几个关键参数评估了根区和株间土壤样品中秧盘施药农药浓度的差异。我们的研究为模拟水稻根系对土壤中农药的吸收提供了一种有用的解决方案。