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The Fe~0/Fe3O4/Fe3C@hydrophilic Carbon Composite for LED Light-Assisted, Improved Fenton-Like Catalytic Activity for Dye Degradation

机译:The Fe~0/Fe3O4/Fe3C@hydrophilic Carbon Composite for LED Light-Assisted, Improved Fenton-Like Catalytic Activity for Dye Degradation

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摘要

The dispersive, reusable catalyst and convenient separation is still a key factor for water treatment. Herein, the Fe~0/Fe3O4/ Fe3C@ hydrophilic carbon composite catalyst was obtained through thermal reduction, in which Fe0 is generated by in-situ carbothermal reduction of the rationally designed gel precursor. The FTIR, SEM-EDX and the XPS analysis revealed that the major hydrophilic functional groups and elements were well-dispersed on the entire surface of the catalyst. Through batch control experiments, it is shown that the synthetic catalyst can significantly accelerate the catalysis of Methylene blue under the radiation of 30 W LED lamp. The Electron Spin Resonance test further confirms that catalyst could be successfully trap ·OH radicals. With the increase of radiation time, such energy changes affect the coupling effect of spin-orbital motion is stronger leading to changes in the g-anisotropy. Organic pollution can be degraded by the porous catalyst in a photo-Fenton reaction with the degradation efficiency rate approaching nearly 100% when the concentration of H2O2 is 7 mm. The reusability was demonstrated by five consecutive reaction cycles at continuously good performance. This work provides a highly promising and facile strategy for many wastewater treatments, especially in the field of photo-Fenton like reaction to environmental modification.
机译:分散的、可重用的催化剂和方便水的分离仍然是一个关键因素治疗。亲水碳复合催化剂通过热还原,Fe0是由原位碳热还原的还原的合理设计凝胶前体。SEM-EDX和XPS分析表明主要的亲水基团和元素的整个表面上的说法吗催化剂。结果表明,合成催化剂可以吗显著加快催化亚甲蓝的辐射下30 W的LED灯。证实了催化剂可成功陷阱·OH自由基。时间,这种能量的变化影响的耦合spin-orbital运动效果更强的领导g-anisotropy的变化。可降解多孔催化剂在吗photo-Fenton与降解反应当效率接近近100%过氧化氢的浓度是7毫米。证明了连续5反应周期持续良好的性能。工作提供了一个高度承诺和肤浅许多废水的治疗策略,尤其是photo-Fenton领域的对环境的反应修改。

著录项

  • 来源
    《Chemistry Select》 |2022年第38期|共11页
  • 作者单位

    Department of Petrochemical Technology, Lanzhou University of Technology;

    Provincial Key Laboratory of Gansu Higher Education for City Environmental Pollution Control, School of Chemistry Engineering, Lanzhou City University. Lanzhou,Yinchuan, 730070, P.R;

    Provincial Key Laboratory of Gansu Higher Education for City Environmental Pollution Control, School of Chemistry Engineering, Lanzhou City University. Lanzhou, 730070, P.R. China;

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  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类 化学;
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