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Abiotic Fate Mechanism: Hydrolysis Study on Selected Neonicotinoids.

机译:非生物的命运机制:某些新烟碱类的水解研究。

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摘要

Neonicotinoid insecticides such as Imidacloprid (IMD), Thiamethoxam (THM), and Dinotefuran (DNT) are extensively used in agricultural operations. Their occurrence in the environment can have significant adverse ecological consequences to non-target species. In this research, hydrolysis kinetics of these insecticides were investigated at various pHs (acidic, neutral, and basic) and temperature (room temperature [~25°C], 45°C, and 60°C) conditions. Results indicate that of the three neonicotinoids, THM exhibits higher hydrolysis rate across all temperature and pH conditions, followed by IMD and DNT. Both temperature and pH have pronounced effect on the hydrolysis rate. All three neonicotinoids are unstable at pH 11, 60°C, with their hydrolysis rate constants: kTHM = 10.03 hr-1, kIMD = 0.58 hr-1, and kDNT 0.08 hr-1. Slower hydrolysis rate was observed at room temperature with hydrolysis rate constants: kTHM = 0.09 hr-1, kIMD = 0.01 hr-1 and kDNT 5E-04 hr-1. Reduction in temperature and a change in pH induces the largest effect on the hydrolysis rate of the THM. Across all experimental temperature conditions, the hydrolysis rate is fastest at pH 11, followed by pH 7, and stable at pH 4. The difference in the hydrolysis rates for the neonicotinoids tend to shrink as pH changes from alkaline to neutral, with the most unstable compound experiencing the largest effect. The hydrolysis rates clearly demonstrate that these neonicotinoids are stable towards hydrolysis and may pose serious adverse risk to non-target species.
机译:新烟碱类杀虫剂(如吡虫啉(IMD),噻虫嗪(THM)和敌丁呋喃(DNT)被广泛用于农业生产。它们在环境中的发生会对非目标物种产生严重的不利生态影响。在这项研究中,研究了这些杀虫剂在各种pH(酸性,中性和碱性)和温度(室温[〜25°C],45°C和60°C)条件下的水解动力学。结果表明,三种新烟碱中,THM在所有温度和pH条件下均表现出更高的水解速率,其次是IMD和DNT。温度和pH值均对水解速率有显着影响。所有三种新烟碱类化合物在pH 11、60°C下均不稳定,其水解速率常数为:kTHM = 10.03 hr-1,kIMD = 0.58 hr-1和kDNT 0.08 hr-1。在室温下观察到较慢的水解速率,水解速率常数为:kTHM = 0.09 hr-1,kIMD = 0.01 hr-1和kDNT 5E-04 hr-1。温度降低和pH值变化对THM的水解速率产生最大影响。在所有实验温度条件下,pH值为11时水解速率最快,随后为pH 7时水解速率稳定,而pH值从碱性变为中性时,新烟碱类化合物的水解速率差异趋于缩小,最不稳定。化合物效果最大。水解速率清楚地表明,这些新烟碱类化合物对水解稳定,并且可能对非目标物质造成严重的不利风险。

著录项

  • 作者

    Ousley, Maria Nassiry.;

  • 作者单位

    California State University, Fullerton.;

  • 授予单位 California State University, Fullerton.;
  • 学科 Civil engineering.
  • 学位 M.S.
  • 年度 2017
  • 页码 195 p.
  • 总页数 195
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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