Environmental behavior assessment Thiophanate methyl in the soil using different mathematical models

Hawraa Mehdi Saleh, Alaa H. Al-Farttoosy
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Abstract

One of the most common fungicides, Thiophanate-methyl (TM), has been extensively used to prevent fusarium wilt disease. Understanding the kinetic behavior of the TM-fungicide in the greenhouse soil was aimed at the current research. The findings demonstrated that TM-fungicide goes through the pseudo-first-order model (PFO), which results in a rate constant K= 0.421 minutes-1. As a result, TM-fungicide needs 16.46 minutes-1 to degrade 50% of the initial concentration. The power function for TM-fungicide ranged from -1.826 to 0.0360 minutes-1, and the distribution coefficient was 6.5 mL g-1. Regarding the adsorption of Langmuir and Freundlich, TM-fungicide is more fitting to the Freundlich with the aF = 25.73 and the bF = 0.078 compared to the Langmuir model. The TM-fungicide starts to release to the soil after 4-5 hours, achieving extensive, effective control of the soil pests, Moreover, TM-fungicide is highly mobile in the soil based on the current conditions.
利用不同数学模型对土壤中甲基硫菌灵的环境行为进行评估
甲基硫菌灵(TM)是最常见的杀菌剂之一,已被广泛用于预防镰刀菌枯萎病。本研究旨在了解甲基硫菌灵在温室土壤中的动力学行为。研究结果表明,TM-杀菌剂通过伪一阶模型(PFO),其速率常数 K= 0.421 分钟-1。因此,TM-杀菌剂需要 16.46 分钟-1 才能降解初始浓度的 50%。TM 杀菌剂的幂函数范围为-1.826 至 0.0360 分钟-1,分布系数为 6.5 mL g-1。在 Langmuir 和 Freundlich 吸附模型中,与 Langmuir 模型相比,TM-杀菌剂更符合 Freundlich 模型,aF = 25.73,bF = 0.078。4-5 小时后,TM-杀菌剂开始释放到土壤中,实现了对土壤害虫的广泛、有效控制,而且根据目前的条件,TM-杀菌剂在土壤中的流动性很高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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