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首页> 外文期刊>Chemical Science International Journal >Photolytic Degradation of Herbicide Atrazine byRadiation Ultraviolet (UVC): An Application ofGreen Chemistry
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Photolytic Degradation of Herbicide Atrazine byRadiation Ultraviolet (UVC): An Application ofGreen Chemistry

机译:辐射紫外线(UVC)光解降解除草剂At去津:绿色化学的应用

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Atrazine (ATZ) is an herbicide of the s-triazines classes used on crops as corn, cotton, soybean, and sugar cane. This work shows the ATZ degradation by ultraviolet radiation (UVC, 254 nm) in a bench-scale annular photoreactor. The initial concentration of the irradiated samples ranged from 2.0x10~(-5) to 1.2x10~(-4) mol?L~(-1). Actinometry was used to determine the radiant energy incident on the photoreactor (1.36x10~(-9) einstein?cm~(-2)?s~(-1)) and the radiation source was a low-pressure mercury vapor discharge lamp with tubular glass (Phillips TUV 36 W). The conversion in 240s (27.5% - 48.7%) is related inversely with the concentration of the samples. Some results found: photochemistry reaction rate (0.9x10~(-9) to 2.2x10~(-9) mol?cm~(-3)?s~(-1)), volumetric rate of photon absorption (VRPA) (2.0x10~(-8) to 8.0x10~(-8) einstein?cm~(-3?)s~(-1)), and global initial quantum yield (0.03 to 0.05 mol?einstein~(-1)). For the reaction rate was proposed a phenomenological model and the process was modeled of form deterministically. The estimated values for the kinetic parameters? ?atz , m, and n were, respectively: 0.03 mol?einstein~(-1), 0.02 and 0.5. The kinetic model fitted the data with accuracy of 91.8%. As conclusion of the work, the photolytic degradation with UVC is an efficient process, low cost and can be used to set up pilot plants, in various scales, to reduce or eliminate compounds of the atrazine class or similar emerging contaminants, in effluents.
机译:阿特拉津(ATZ)是S-三嗪类除草剂,用于玉米,棉花,大豆和甘蔗等农作物。这项工作表明,在台式环形光反应器中,紫外线辐射(UVC,254 nm)会使ATZ降解。辐照样品的初始浓度范围为2.0×10〜(-5)至1.2×10〜(-4)mol·L〜(-1)。用光度法测定入射在光反应器上的辐射能(1.36x10〜(-9)爱因斯坦?cm〜(-2)?s〜(-1)),辐射源为低压汞蒸气放电灯。管状玻璃(Phillips TUV 36 W)。 240s(27.5%-48.7%)内的转换与样品浓度成反比。发现了一些结果:光化学反应速率(0.9x10〜(-9)至2.2x10〜(-9)mol·cm〜(-3)?s〜(-1)),光子吸收体积率(VRPA)(2.0 x10〜(-8)至8.0x10〜(-8)爱因斯坦?cm〜(-3?)s〜(-1))和整体初始量子产率(0.03至0.05 mol?爱因斯坦〜(-1))。对于反应速率,提出了一种现象学模型,并对过程进行了确定性建模。动力学参数的估计值? Δz,m和n分别为:0.03mol·爱因斯坦·(-1),0.02和0.5。动力学模型拟合数据的准确性为91.8%。作为工作的结论,使用UVC进行光解降解是一种有效的方法,成本低廉,可用于建立各种规模的中试工厂,以减少或消除废水中at去津类化合物或类似的新兴污染物。

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