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首页> 外文期刊>Journal of Hazardous Materials >Application of Box-Wilson experimental design method for the photodegradation of bakery's yeast industry with UV/H_2O_2 and UV/H_2O_2/Fe(Ⅱ) process
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Application of Box-Wilson experimental design method for the photodegradation of bakery's yeast industry with UV/H_2O_2 and UV/H_2O_2/Fe(Ⅱ) process

机译:Box-Wilson实验设计方法在UV / H_2O_2和UV / H_2O_2 / Fe(Ⅱ)光降解面包酵母行业中的应用

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摘要

Decolorization and mineralization of bakery's yeast industry effluent by photochemical advanced oxidation processes (AOPs) utilizing UV with hydrogen peroxide and Photo-Fenton, were investigated in a laboratory scale photo-reactor equipped with a 16 W low-pressure mercury vapor lamp. The Box—Wilson experimental design method was employed to evaluate the effects of major process variables (e.g. pH, oxidant dose, and irradiation time) on the decolorization efficiency. Response function coefficients were determined by regression analysis of the experimental data and prediction results agreed with the experimental results. The optimum hydrogen peroxide concentration and irradiation time were found to be 5 mM and 50min at pH 3, respectively, for UV/H_2O_2 process. In the Photo-Fenton process application, maximum decolorization efficiency (96.4%) was obtained at the optimum reaction conditions that were 100mM H_2O_2 and 1 mM Fe(Ⅱ) doses at pH 3, and 10 min of irradiation time.
机译:在配备有16 W低压汞蒸气灯的实验室规模的光反应器中,研究了利用紫外线与过氧化氢和光芬顿一起进行的光化学高级氧化工艺(AOP)对面包酵母行业废水的脱色和矿化作用。采用Box-Wilson实验设计方法评估主要工艺变量(例如pH,氧化剂剂量和照射时间)对脱色效率的影响。通过对实验数据进行回归分析来确定响应函数系数,并且预测结果与实验结果相符。对于UV / H_2O_2工艺,在pH值为3时,最佳过氧化氢浓度和辐照时间分别为5 mM和50min。在Photo-Fenton工艺应用中,在最佳反应条件下,pH为3的100mM H_2O_2和1mM Fe(Ⅱ)的最佳反应条件和10分钟的照射时间,可获得最大的脱色效率(96.4%)。

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