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首页> 外文期刊>Electrochimica Acta >Highly active and stable ferrocene functionalized graphene encapsulated carbon felt array - A novel rotating disc electrode for electro-Fenton oxidation of pharmaceutical compounds
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Highly active and stable ferrocene functionalized graphene encapsulated carbon felt array - A novel rotating disc electrode for electro-Fenton oxidation of pharmaceutical compounds

机译:高活性和稳定的二茂铁官能化石墨烯包封的碳毡阵列 - 用于药物化合物的电芬氧化的新型旋转盘电极

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In this study, ferrocene functionalized electrochemically reduced graphene oxide (Fc-ErGO) was used as electro-Fenton catalyst in rotating disc electrode system for the continuous generation of reactive oxygen species without external aeration. The nature of Fc-ErGO was evaluated using X-ray photoelectron spectroscopy, Raman spectroscopy, scanning electron microscopy and energy-dispersive X-ray spectroscopy analysis. Degradation of ciprofloxacin and carbamazepine were carried out to evaluate the performance of reactor. Enhanced removal rate was achieved at a wider range of pH as compared to the unmodified and ErGO modified graphite felt electrode systems. An increase in rotational speed of the disc electrodes resulted in enhanced removal rate due to improved mass transfer activity. At neutral condition, the removal rate was found to be 0.199 min(-1) and 0.082 min(-1) for ciprofloxacin and carbamazepine, respectively. Quantification of reactive oxygen species was also done. The Fc-ErGO modified cathode showed 644 mu M, 264 mu M, and 163 mu M of center dot OH radicals at pH 3.0, 7.0 and 9.0 respectively; it confirms that ferrocene efficiently catalyses the conversion of H2O2 to center dot OH radicals and facilitates the degradation of contaminants. Stable catalytic activity was achieved even upto 10 cycles of repeatable experimental runs. A highly efficient, cleaner electro-Fenton system without external aeration and chemical addition was successfully demonstrated. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在该研究中,二茂铁官能化电化学还原的石墨烯氧化物(Fc-ergo)用作旋转盘电极系统中的电芬催化剂,用于连续产生无需外部通气的反应性氧。使用X射线光电子能谱,拉曼光谱,扫描电子显微镜和能量分散X射线光谱分析评估Fc-ergo的性质。进行了环丙沙星和群毒素的降解,以评估反应器的性能。与未修饰和ERGO改进的石墨毡电极系统相比,在更广泛的pH范围内实现增强的去除速率。由于提高的传质活性,盘电极的转速的增加导致了增强的去除率。在中性条件下,发现去除率为0.199 min(-1)和0.082 min(-1)用于环丙沙星和卡巴马嗪。还完成了活性氧物质的定量。 Fc-ergo改性阴极分别显示644μm,264μm和163μm的中心点OH基团分别在pH 3.0,7.0和9.0中。它证实,铁茂是有效地将H2O2转化为中心点OH基团的转化,并有助于污染物的降解。甚至达到稳定的催化活性甚至可以达到10个可重复的实验运行循环。成功地证明了高效的清洁剂的电气芬顿系统,无需外部通气和化学添加。 (c)2018年elestvier有限公司保留所有权利。

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