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Preparation and photocatalytic performance of tungstovanadophosphoric heteropoly acid salts

机译:钨钒磷杂多酸盐的制备及其光催化性能

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Tungstovanadophosphoric heteropoly acid H _(5) PW _(10) V _(2) O _(40) ·5.76H _(2) O (HPWV) has been synthesized via stepwise acidification and gradual addition of elements. Some metals like Fe, Al and Cu were introduced into the heteropoly acid (HPA) in the molar ratio of 10?:?6, 10?:?6 and 10?:?4 respectively. The prepared catalysts were characterized by UV, FTIR, TG/DTA and XRD. The results indicated that HPWV and its metal salts all contain Keggin units, which are the primary structures of the heteropoly acids. The homogeneous photocatalytic degradation of phenol by heteropoly acid salts was studied in detail under artificial UV irradiation and addition of hydrogen peroxide (H _(2) O _(2) ), and the effects of initial phenol and H _(2) O _(2) concentrations on the rate of photocatalytic phenol degradation were examined. The results suggested that the heteropoly acid salts showed good catalytic activities for phenol degradation via the ·OH radical mechanism. Under irradiation with a 10 W Hg lamp, 96% phenol was degraded within less than 60 min in the solution containing 50 mg L ~(?1) phenol + 2 μmol L ~(?1) Fe _(5) (PW _(10) V _(2) O _(40) ) _(3) + 4 μmol L ~(?1) H _(2) O _(2) , with the performance of the catalysts in order FePWV > AlPWV > CuPWV > HPWV. This work demonstrated that the photo-Fenton reaction catalyzed by the heteropoly acid salts was a promising advanced oxidation tool for the treatment of phenol-containing wastewater.
机译:钨钒杂多酸H _(5)PW _(10)V _(2)O _(40)·5.76H _(2)O(HPWV)是通过逐步酸化和逐步添加元素合成的。分别以10∶∶6、10∶6和10∶4的摩尔比将诸如Fe,Al和Cu的一些金属引入杂多酸(HPA)中。通过UV,FTIR,TG / DTA和XRD对制备的催化剂进行了表征。结果表明,HPWV及其金属盐均含有Keggin单元,这是杂多酸的主要结构。详细研究了在人工紫外线辐射和过氧化氢(H _(2)O _(2))的添加下杂多酸盐对苯酚的光催化降解行为,以及初始苯酚和H _(2)O _的影响。 (2)考察了浓度对光催化苯酚降解速度的影响。结果表明,杂多酸盐通过·OH自由基机理对苯酚降解具有良好的催化活性。在10 W Hg灯的照射下,含有50 mg L〜(?1)苯酚+ 2μmolL〜(?1)Fe _(5)(PW _(5)的溶液在不到60分钟的时间内降解了96%的苯酚。 10)V _(2)O _(40))_(3)+ 4μmolL〜(?1)H _(2)O _(2),催化剂的性能依次为FePWV> AlPWV> CuPWV > HPWV。这项工作表明杂多酸盐催化的光芬顿反应是一种有前途的先进氧化工具,用于处理含酚废水。

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