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首页> 外文期刊>Separation and Purification Technology >Enhanced sonophotocatalytic degradation of bisphenol A using bimetal sulfide-intercalated MXenes, 2D/2D nanocomposite
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Enhanced sonophotocatalytic degradation of bisphenol A using bimetal sulfide-intercalated MXenes, 2D/2D nanocomposite

机译:使用双金属硫化物插层Mxenes,2D / 2D纳米复合材料增强双酚A的声光催化降解

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摘要

A novel 2D Ti3C2Tx MXene (MX) co-catalyst and NixMg4-xS4 (NMS) nanocomposite (NMS@MX ) was simply prepared through a hydrothermal method and utilized as a sonophotocatalyst for the degradation of bisphenol A (BPA). Because the remediation of wastewater containing endocrine-disrupting compounds is an important issue in environmental fields, BPA was selected as the main organic pollutant to clarify the sonophotocatalytic activity of NMS@MX in this study. We confirmed the successful synthesis of NMS@MX through Fourier-transform infrared spectroscopy, X-ray diffraction, and X-ray photoelectron spectroscopy analyses. The mineralization of BPA via sonophotocatalysis with NMS@MX was much faster and more efficient than by applying photolysis and sonolysis, separately. The NMS@MX sonophotocatalyst showed high sonophotocatalytic activity based on similar to 92% degradation of BPA within 60 min using both visible light and ultrasonication. This outcome could have resulted from the mitigation of the photo-corrosion of metal sulfides through heterojunction structures combined with the highly conducive MX co-catalyst. Furthermore, NMS@MX showed excellent sonophotostability over four consecutive cycles for the degradation of BPA with negligible loss of sonophotocatalytic activity. Finally, we proposed the sonophotocatalytic degradation pathway of BPA in the Sono/Vis/MNS@MX system (Sono = sonolysis; Vis = photolysis).
机译:通过水热法制制备新的2D Ti3C2Tx MxEn(MX)助催化剂和NixMG4-XS4(NMS)纳米复合材料(NMS @ MX),并用作异酚A(BPA)的异常催化剂。由于含有内分泌破坏化合物的废水的修复是环境领域的一个重要问题,选择BPA作为主要有机污染物,以澄清本研究中NMS @ MX的声光催化活性。我们确认通过傅里叶变换红外光谱,X射线衍射和X射线光电子能谱分析成功地合成NMS @ MX。通过用NMS @ MX的Sonophotocat分析通过Sonophotocat分析的BPA矿化比通过施用光解和声学分别来更快,更有效。 NMS @ MX Sonophotocatalyst在60分钟内使用可见光和超声波在60分钟内类似于BPA的92%降解。通过使金属硫化物的光腐蚀通过杂交结构与高电极的MX助催化剂联合的硫化物的光腐蚀来减轻该结果。此外,NMS @ MX在四个连续循环中显示出优异的异构性,用于降解BPA,其失去超声波催化活性。最后,我们提出了Sono / Vis / Mns @ MX系统中BPA的Sonophotocatalytal降解途径(Sono = Sonolysis; Vis = Photoley)。

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