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Sonochemical degradation of neonicotinoid pesticides in natural surface waters. Influence of operational and environmental conditions

机译:天然表面水域中新烟碱蛋白杀虫剂的宣传眠性降解。 运营和环境条件的影响

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摘要

Neonicotinoids sonochemical oxidation at high-frequency ultrasound (MHz range) has been carried out in ul-trapure and natural surface-water matrices (river, reservoir and wastewater treatment plant effluent). To evaluate the influence of the operating variables, that is initial pollutant concentration, ultrasound frequency, ultrasound power, and pulse-stop time a Box-Behnken experimental design was planned. Optimal results were obtained using a frequency of 578 kHz, a power of 40 W L~(-1), with a pollutant concentration of 1 μM (for each pesticide), and using a pulse-stop time of 100 ms. The experimental data adjustment using the Langmuir-Hinshelwood heterogeneous kinetic model showed that neonicotinoids oxidation was carried out in the bubble-liquid interface by the attack of hydroxyl radicals. Experiments performed in the presence of radical scavengers, that is, methanol, ethanol and tert-butyl alcohol corroborated this reaction mechanism. The influence of some environmental conditions such as pH, presence of soluble inorganic species (Cl~-, SO_4~(2-), NO_3~-, HPO4_4~(2-), HCO_3~-) and soluble organic species (humic acids content) were established. Finally, the aqueous matrix's influence was investigated for three natural surface water cases, and the results were rationalized according to the main water physicochemical characteristics.
机译:Neonicotinoids在高频超声波(MHz范围)下的Sonochemical氧化已经在UL-Trapure和Natural Surface-Protices(河流,储层和废水处理厂流出物中进行)。为了评估操作变量的影响,这是初始污染浓度,超声频率,超声波功率和脉冲停止时间,计划了Box-Behnken实验设计。使用578 kHz的频率获得最佳结果,功率为40W L〜(-1),污染物浓度为1μm(针对每种农药),并使用100ms的脉冲停止时间。使用Langmuir-hinshelwood异质动力学模型的实验数据调整表明,通过羟基自由基的发作,在气泡 - 液体界面中进行氧化硝酸溶解。在发生自由基清除剂的情况下进行的实验,即甲醇,乙醇和叔丁醇被证实的该反应机制。一些环境条件的影响如pH,溶于无机物质(Cl〜 - ,SO_4〜(2-),NO_3〜 - ,HPO4_4〜(2-),HCO_3〜 - )和可溶性有机物质(腐殖酸含量) )成立。最后,研究了三种天然表面水箱的水性基质的影响,结果根据主要水物理化学特性合理化。

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  • 来源
    《Environmental research》 |2021年第2期|111021.1-111021.10|共10页
  • 作者单位

    Department of Chemical Engineering and Physical Chemistry Area of Chemical Engineering Faculty of Sciences University of Extremadura Avda. de Elvas S/n 06006 Badajoz Spain;

    Department of Chemical Engineering and Physical Chemistry Area of Chemical Engineering Faculty of Sciences University of Extremadura Avda. de Elvas S/n 06006 Badajoz Spain;

    Department of Chemical Engineering and Physical Chemistry Area of Chemical Engineering Faculty of Sciences University of Extremadura Avda. de Elvas S/n 06006 Badajoz Spain;

    Department of Chemical Engineering and Physical Chemistry Area of Chemical Engineering Faculty of Sciences University of Extremadura Avda. de Elvas S/n 06006 Badajoz Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Neonicotinoids; Insecticides; Advanced oxidation processes; Sonochemical oxidation; Ultrasound oxidation; Water micropollutants;

    机译:neonicotinoids;杀虫剂;先进的氧化过程;儿化学氧化;超声氧化;水微污染物;

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