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首页> 外文期刊>Water Science and Technology >Degradation of Amaranth azo dye in water by heterogeneous photo-Fenton process using FeWO4 catalyst prepared by microwave irradiation
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Degradation of Amaranth azo dye in water by heterogeneous photo-Fenton process using FeWO4 catalyst prepared by microwave irradiation

机译:微波辐照制备的FeWO4催化剂通过非均相光芬顿法降解A菜中的偶氮染料

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摘要

FeWO4 particles were synthesized by a simple, rapid and facile microwave technique and their catalytic properties in heterogeneous photo-Fenton reaction were evaluated. This material was employed in the degradation of Amaranth azo dye. Individual and interactive effects of operational parameters such as pH, dye concentration and H2O2 dosage on the decolorization efficiency of Amaranth dye were evaluated by 23 central composite design. According to characterization techniques, a porous material and a well-crystallized phase of FeWO4 oxide were obtained. Regarding the photo-Fenton reaction assays, up to 97% color and 58% organic carbon removal were achieved in the best experimental conditions. In addition, the photo-Fenton process maintained treatment efficiency over five catalyst reuse cycles to indicate the durability of the FeWO4 catalyst. In summary, the results reveal that the synthesized FeWO4 material is a promising catalyst for wastewater treatment by heterogeneous photo-Fenton process.
机译:通过简单,快速,简便的微波技术合成FeWO4颗粒,并评价了它们在非均相光芬顿反应中的催化性能。该材料用于A菜红偶氮染料的降解。通过23个中心复合设计评估了操作参数(例如pH,染料浓度和H2O2用量)对A菜染料脱色效率的个体和交互作用。根据表征技术,获得了多孔材料和FeWO 4氧化物的良好结晶相。关于光芬顿反应测定法,在最佳实验条件下可实现高达97%的颜色去除和58%的有机碳去除。另外,光芬顿法在五个催化剂再利用循环中保持处理效率,以表明FeWO 4催化剂的耐久性。总之,结果表明,合成的FeWO4材料是一种有前途的催化剂,用于非均相光Fenton工艺处理废水。

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