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首页> 外文期刊>Applied clay science >A new catalytic composite of bentonite-based bismuth ferrites with good response to visible light for photo-Fenton reaction: Preparation, characterization and analysis of physicochemical changes
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A new catalytic composite of bentonite-based bismuth ferrites with good response to visible light for photo-Fenton reaction: Preparation, characterization and analysis of physicochemical changes

机译:一种新型的膨润土基铋铁氧体对光芬顿反应具有良好可见光响应的催化复合物:制备,表征和理化变化分析

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In this work, using bentonite as support, a new composite of bentonite-based bismuth ferrites (BFOs/Bent) which can be used as a catalyst for photo-Fenton reaction under visible light has been synthesized. The optimum synthesis conditions of BFOs/Bent were obtained, and the optimum synthesis conditions of BFOs/Bent were as follows: molar ratio of Fe(NO3)(3) to Bi(NO3)(3) (MFe/MBi) 1:1, dosage of Fe3+ to bentonite (M-Fe/m(Bent)) 5 mmol/g, calcination temperature 500 degrees C, and calcination time 2 h. The catalysts prepared at different synthesis conditions were characterized, and based on the characterizations, the effects from the synthesis conditions on the physicochemical properties of BFOs/Bent were analyzed. The characterization results showed the functional components of bismuth ferrites were successfully immobilized on the bentonite, and the crystalline phases in the optimum BFOs/Bent (labeled as BiFeO3-Bi2Fe4O9/Bent) were BiFeO3 and Bi2Fe4O9. BiFeO3-Bi2Fe4O9/Bent showed good response to visible light as well as to UV light. Large specific surface area and macroporous volume were contributed to the high catalytic activity of BiFeO3-Bi2Fe4O9/Bent. It was further found that the low band gap and the effective charge separation at heterojunction were the basis for the high photocatalytic activity of BiFeO3-Bi2Fe4O9/Bent.
机译:在这项工作中,以膨润土为载体,合成了一种新型的膨润土基铋铁氧体(BFOs / Bent)复合物,该复合物可用作可见光下光芬顿反应的催化剂。得到了BFOs / Bent的最佳合成条件,BFOs / Bent的最佳合成条件如下:Fe(NO3)(3)与Bi(NO3)(3)的摩尔比(MFe / MBi)1:1 ,膨润土中Fe3 +的用量(M-Fe / m(Bent))为5 mmol / g,煅烧温度为500摄氏度,煅烧时间为2小时。表征了在不同合成条件下制备的催化剂,并基于表征,分析了合成条件对BFOs / Bent理化性质的影响。表征结果表明,铋铁氧体的功能组分已成功固定在膨润土上,最佳BFOs / Bent(标记为BiFeO3-Bi2Fe4O9 / Bent)中的结晶相为BiFeO3和Bi2Fe4O9。 BiFeO3-Bi2Fe4O9 / Bent对可见光和紫外线均显示出良好的响应。大的比表面积和大孔体积有助于BiFeO3-Bi2Fe4O9 / Bent的高催化活性。进一步发现,低带隙和异质结处的有效电荷分离是BiFeO3-Bi2Fe4O9 / Bent高光催化活性的基础。

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