利用数学模型及其逆分析精确评价水稻环境中农药耗散。

IF 1.5 4区 农林科学 Q2 ENTOMOLOGY
Kei Kondo
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引用次数: 0

摘要

利用数学模型及其逆分析方法,评价了溶蚀计试验作为实际水田耗散模拟器在预测农药在水田试验系统中的宿命和运移过程中的外推性。作为实验数据的来源,采用不同的水稻农药,进行了为期4年的溶渗仪和水田对比试验。首先,采用简单的动力学模型,统计比较了浸没条件下颗粒农药中各种有效成分的耗散。其次,利用具有新颖逆分析协议的更高层数学模型对耗散路径、未观察到的实验分量和实验设置的影响进行了评估。最后,由于实验条件的限制,将实验室容器试验中无法获得的参数提取出来,再进行转移,比较不同剂型下的室外实验数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Use of mathematical modeling and its inverse analysis for precise assessment of pesticide dissipation in a paddy environment.

Use of mathematical modeling and its inverse analysis for precise assessment of pesticide dissipation in a paddy environment.

Use of mathematical modeling and its inverse analysis for precise assessment of pesticide dissipation in a paddy environment.

Use of mathematical modeling and its inverse analysis for precise assessment of pesticide dissipation in a paddy environment.

The extrapolability of the lysimeter test as a dissipation simulator in an actual paddy field was evaluated using mathematical models and their inverse analyses for predicting pesticide fate and transport processes in paddy test systems. As a source of experimental data, a four-year comparative experiment in lysimeters and paddy fields was conducted using various paddy pesticides. First, the dissipations for various active ingredients in granule pesticides under submerged applications were statistically compared using simple kinetic modeling. Second, the dissipation pathways, unobserved experimental components, and effect of the experimental setting were evaluated using a higher tier mathematical model with a novel inverse analysis protocol. Finally, owing to experimental constraints, the unobtainable parameters were extracted from the laboratory container test before being transferred to compare the outdoor experimental data under different formulation types.

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来源期刊
Journal of Pesticide Science
Journal of Pesticide Science 农林科学-昆虫学
CiteScore
4.30
自引率
4.20%
发文量
28
审稿时长
18-36 weeks
期刊介绍: The Journal of Pesticide Science publishes the results of original research regarding the chemistry and biochemistry of pesticides including bio-based materials. It also covers their metabolism, toxicology, environmental fate and formulation.
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