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Core-shell Fe3O4@MIL-101(Fe) composites as heterogeneous catalysts of persulfate activation for the removal of Acid Orange 7

机译:核-壳型Fe3O4 @ MIL-101(Fe)复合材料作为过硫酸盐活化的非均相催化剂,用于去除酸性橙7

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摘要

In this study, a novel core-shell Fe3O4@MIL-101 (MIL stands for Materials of Institute Lavoisier) composite was successfully synthesized by hydrothermal method and was fully characterized by X-ray diffraction, transmission electron microscopy, Fourier-transform infrared spectra, and X-ray photoelectron spectroscopy. The composite was introduced as a catalyst to generate powerful radicals from persulfate for the removal of Acid Orange 7 in an aqueous solution. Effects of the central metal ions of MIL-101, amino group content of MIL-101, and pH were evaluated in batch experiments. It was found that both hydroxyl and sulfate radicals were generated; importantly, sulfate radicals were speculated to serve as the dominant active species in the catalytic oxidation of Acid Orange 7. In addition, a possible mechanism was proposed. This study provides new physical insights for the rational design of advanced metal-organic frameworks (MOF)-based catalysts for improved environmental remediation.
机译:本研究通过水热法成功合成了新型核-壳型Fe3O4 @ MIL-101(MIL代表Lavoisier材料研究所)复合材料,并通过X射线衍射,透射电子显微镜,傅里叶变换红外光谱,和X射线光电子能谱。引入该复合材料作为催化剂,以从过硫酸盐中产生强大的自由基,从而去除水溶液中的酸性橙7。在批处理实验中评估了MIL-101的中心金属离子,MIL-101的氨基含量和pH的影响。发现同时产生羟基和硫酸根基团。重要的是,推测硫酸根是酸橙7催化氧化中的主要活性物质。此外,提出了可能的机理。这项研究为合理设计先进的金属有机框架(MOF)为基础的催化剂,以改善环境修复提供了新的物理见解。

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