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首页> 外文期刊>Ultrasonics sonochemistry >Synthesis and sonocatalytic performance of a ternary magnetic MIL-101(Cr)/RGO/ZnFe2O4 nanocomposite for degradation of dye pollutants
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Synthesis and sonocatalytic performance of a ternary magnetic MIL-101(Cr)/RGO/ZnFe2O4 nanocomposite for degradation of dye pollutants

机译:三元磁MIL-101(CR)/ rgo / ZnFe2O4纳米复合材料进行染料污染物降解的合成和同源催化性能

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In this study, new ternary magnetic MIL-101(Cr)/RGO/ZnFe2O4 catalyst (with 30% wt of ZnFe2O4) was synthesized via a hydrothermal route for sonodegradation of organic dyes. The structural, optical and magnetic properties of the nanocomposite were detected by means of X-ray diffraction (XRD), Fourier transform infrared spectroscopy (FTIR), UV-visible spectroscopy (UV-visible), field emission scanning electron microscopy (FESEM), energy dispersive X-ray (EDX) spectroscopy, vibrating sample magnetometer (VSM), atomic force microscopy (AFM), Raman spectroscopy and BET surface area analysis. To evaluate the sonocatalytic activity of the as-prepared MIL-101(Cr)/RGO/ZnFe2O4 nanocomposite, the H2O2-assisted degradation of organic dyes such as congo red (CR), methylene blue (MB), Rhodamine B (RhB) and methyl orange (MO) in aqueous solution was studied under ultrasound irradiation. The obtained results indicated that the ternary MIL-101(Cr)/RGO/ZnFe2O4 nanocomposite had better performance for sonodegradation of these dyes than MIL-101(Cr)/RGO, pure MIL101(Cr) or ZnFe2O4. The enhanced sonocatalytic performance of the as-prepared ternary nanocomposite could be attributed to the fast generation and separation of charge carriers (electrons and holes) in ZnFe(2)O(4)and MIL101(Cr) and their transfer to the surface of graphene sheets. Moreover, the relatively high specific surface area of the MIL-101(Cr)/rGO and magnetic property of ZnFe2O4 improve the degradation efficiency of the dyes. The recovery of the ternary magnetic sonocatalyst from treated water could be easily achieved using an external magnetic field. The main influence factors on the sonocatalytic activity such as catalyst dosage and dye initial concentration were also investigated. The trapping experiments indicated that (OH)-O-center dot radicals are the prominent active species in dye degradation. In addition, the reusability test, was also carried out to ensure the stability of the employed sonocatalyst.
机译:在该研究中,通过水热途径合成了新的三元磁MIL-101(Cr)/ Rgo / ZnFe2O4催化剂(具有30%wt的ZnFe2O4),用于有机染料的超声波分析。通过X射线衍射(XRD),傅立叶变换红外光谱(FTIR),UV可见光谱(UV可见),场发射扫描电子显微镜(FESEM),检测纳米复合材料的结构,光学和磁性,能量分散X射线(EDX)光谱,振动样品仪(VSM),原子力显微镜(AFM),拉曼光谱和BET表面积分析。为了评估AS制备的MIL-101(CR)/ RGO / ZnFe2O4纳米复合材料的同胞催化活性,有机染料的H2O2辅助降解如刚果红(Cr),亚甲基蓝(MB),罗丹明B(RHB)和在超声辐射下研究了水溶液中的甲基橙(Mo)。所得结果表明,三元MIL-101(Cr)/ Rgo / ZnFe2O4纳米复合材料具有比MIL-101(CR)/ RGO,纯MIL101(Cr)或ZnFe2O4更好地进行这些染料的性能降解。制备的三元纳米复合材料的增强的单催化性能可归因于ZnFe(2)O(4)和MIL101(CR)中的电荷载体(电子和孔)的快速产生和分离及其转移到石墨烯表面床单。此外,ZnFe2O4的MIL-101(Cr)/ Rgo和磁性的相对高的比表面积提高了染料的降解效率。可以使用外部磁场容易地实现从处理过的水中的三元磁同胞催化的回收。还研究了催化剂剂量和染料初始浓度等催化活性的主要影响因素。诱捕实验表明(OH)-O中心点基团是染料降解中突出的活性物种。此外,还进行了可重用性测试,以确保所用的儿童催留性的稳定性。

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