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Novel imazethapyr detoxification applying advanced oxidation processes

机译:应用先进的氧化过程的新型咪唑乙烟酸排毒

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Different degradation methods have been applied to assess the suitability of advanced oxidation process (AOPs) to promote mineralization of imazethapyr [(RS)-5-ethyl-2-(4-isopropyl-4-methyl-5-oxo-2-imidazolin-2-yl)nicotinic acid], a widely used imidazolinone class herbicide, the persistence of which has been demonstrated in surface and ground waters destined to human uses. Independent of the oxidation process assessed, the decomposition of imazethapyr always followed a pseudo-first order kinetic. The direct UV-irradiation (UV) of the herbicide as well as its oxidation with ozone (O3), and hydrogen peroxide tied to UV-irradiation (H_2O_2/UV) were sufficiently slow to permit the identification of intermediate products, the formation pathway of which has been proposed. Ozonation joined to UV-irradiation (O3/UV), ozonation joined to titanium dioxide photo-catalysis (TiO_2/UV+O3), sole photo-catalysis (TiO_2/UV), and photo-catalysis reinforced with hydrogen peroxide-oxidation (TiO_2/UV+H_2O_2) were characterized by a faster degradation and rapid formation of a lot of small molecules, which were quickly degraded to complete mineralization. The most effective oxidation methods were those using titanium dioxide photo-catalysis enhanced either by ozonation or hydrogen peroxide. Most of all, these last processes were useful to avoid the development of dangerous by-products.
机译:已应用不同的降解方法评估高级氧化工艺(AOP)促进咪唑乙烟[[RS)-5-乙基-2-(4-异丙基-4-甲基-5-氧代-2-咪唑啉- [2-基]烟酸],一种广泛使用的咪唑啉酮类除草剂,其持久性已在预定用于人类的地表水和地下水中得到证明。与评估的氧化过程无关,咪唑乙烟的分解始终遵循拟一级动力学。除草剂的直接紫外线照射(UV)以及其与臭氧(O3)的氧化作用以及与紫外线照射相关的过氧化氢(H_2O_2 / UV)的速度足够慢,无法识别中间产物,即中间体的形成途径。已经提出来了。臭氧化与UV辐射(O3 / UV)结合,臭氧化与二氧化钛光催化(TiO_2 / UV + O3),唯一的光催化(TiO_2 / UV)和过氧化氢氧化增强的光催化(TiO_2) / UV + H_2O_2)的特征是更快的降解和许多小分子的快速形成,这些小分子被迅速降解以完全矿化。最有效的氧化方法是使用通过臭氧氧化或过氧化氢增强的二氧化钛光催化的方法。最重要的是,这些最后的过程对于避免产生危险的副产品很有用。

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