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Microwave-enhanced Fenton-like degradation by surface-modified metal-organic frameworks as a promising method for removal of dye from aqueous samples

机译:通过表面修饰的金属有机骨架进行微波增强的芬顿样降解,这是一种从水性样品中去除染料的有前途的方法

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In the current research, the sulfonated metal-organic framework loaded on iron oxide nanoparticles, Fe$_{3}$O$_{4}$@MIL-100(Fe)-OSO$_{3}$H, has been synthesized and utilized as a Fenton-like catalyst for the decolorization of aqueous solutions containing methyl orange (MO) dye as a model organic pollutant. The morphology and structure of the catalyst were characterized by X-ray powder diffraction, transmission electron microscopy, Brunauer-Emmett-Teller analysis, thermogravimetric analysis, Fourier transform infrared spectroscopy, and UV-Vis diffuse reflectance spectroscopy. The effects of various parameters on MO degradation were investigated and the optimum conditions for MO degradation were found to be an initial concentration of MO of 100 mg/L, initial concentration of H$_{2}$O$_{2}$ of 40 mg/L, pH 3.0, and microwave power of 500 W. The results indicated that the removal of the MO was fast; the kinetic data followed a pseudo first-order model and under microwave irradiation time of 6 min it degraded up to 99.9%. Thus, microwave-induced Fenton-like degradation using Fe$_{3}$O$_{4}$@MIL-100(Fe)-OSO$_{3}$H is a promising technology for the removal of dye from wastewater.
机译:在当前的研究中,负载在氧化铁纳米颗粒Fe $ _ {3} $ O $ _ {4} $ @ MIL-100(Fe)-OSO $ _ {3} $ H上的磺化金属有机骨架合成并用作类Fenton催化剂,用于对包含甲基橙(MO)染料作为模型有机污染物的水溶液进行脱色。通过X射线粉末衍射,透射电子显微镜,Brunauer-Emmett-Teller分析,热重分析,傅里叶变换红外光谱和UV-Vis漫反射光谱来表征催化剂的形态和结构。研究了各种参数对MO降解的影响,发现MO降解的最佳条件为:MO的初始浓度为100 mg / L,H $ _ {2} $ O $ _ {2} $的初始浓度。 40 mg / L,pH 3.0,微波功率为500W。结果表明,MO的去除速度很快。动力学数据遵循一阶伪模型,在微波照射6分钟后,其降解率高达99.9%。因此,使用Fe $ _ {3} $ O $ _ {4} $ @ MIL-100(Fe)-OSO $ _ {3} $ H进行微波诱导的类Fenton降解是一种去除染料的有前途的技术废水。

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