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Synthesis of magnetic-photo-Fenton catalyst for degradation of emerging pollutant

机译:磁性光芬顿催化剂的催化剂催化剂的催化剂

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In this study, magnetic iron particles doped with TiO2 were synthetized to be used as a photo electro Fenton catalyst, being easily eliminated from the treated solution. Thus, the synergistic and scarcely reported combination of photocatalyst with electro Fenton process was evaluated for the degradation of an emerging pollutant: the ionic liquid 1-butyl-2, 3-dimethyl imidazolium chloride. To increase the radiation leverage, a cyclic two-cell configuration reactor was set, so the photolysis is applied directly and without obstacles in one cell and the electrolysis in another. The effect of the catalyst synthesis method and the ratio Fe/TiO2 were evaluated. With the most active bifunctional catalyst, a deep study of the two-cell reactor was done in terms of recirculation flow, applied intensity and catalyst dosage. Under the best conditions (respectively, 480 mL min(-1), 70 mA and 1 g L-1), complete pollutant removal (in 10 min) and high mineralization (100% in 2 h) was achieved. Encouragingly, the results were almost equal when degrading the model pollutant on a real wastewater matrix. The reusability of the catalyst was also confirmed after three trials without almost no detriment on the performance.
机译:在该研究中,合成掺杂有TiO 2的磁铁颗粒以用作光电催化剂,从处理的溶液容易地消除。因此,评价了具有电芬顿工艺的协同且几乎没有报告的光催化剂的组合,用于出现污染物的降解:离子液体1-丁基-2,3-二甲基咪唑氯化物。为了增加辐射率,设定了一种环状双细胞配置反应器,因此直接施用光解,在一个细胞中没有障碍物,另一个细胞和电解。评价催化剂合成方法和比例Fe / TiO2的效果。随着最活跃的双官能催化剂,在再循环流动,施加的强度和催化剂剂量方面,对双细胞反应器进行深入研究。在最佳条件下(分别为480mL min(-1),70mA和1g L-1),达到完全污染物(10分钟)和高矿化(在2小时内为100%)。令人鼓舞的是,当在真正的废水基质上降解模型污染物时,结果几乎相等。在三次试验后,还证实了催化剂的可重用性,而没有几乎没有损害性能。

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