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Preparation and Catalytic Performance of Expanded Graphite for Oxidation of Organic Pollutant

机译:膨胀石墨的制备及其催化氧化有机污染物的性能

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A classic carbon material—expanded graphite (EG), was prepared and proposed for a new application as catalysts for activating peroxydisulfate (PDS). EG samples prepared at different expansion temperatures were characterized by X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS), and other methods. It was observed that there existed a remarkable synergistic effect in the EG/PDS combined system to degrade Acid Red 97 (AR97). Unlike other carbon material catalysts, sp 2 carbon structure may be the main active site in the catalytic reaction. The EG sample treated at 600 °C demonstrated the best catalytic activity for the activation of PDS. Degradation efficiency of AR97 increased with raising PDS dosage and EG loadings. The pH of aqueous solution played an important role in degradation and adsorption, and near-neutrality was the optimal pH in this research. It was assumed that the radical pathway played a dominant role in AR97 degradation and that oxidation of AR97 occurred in the pores and interface layer on the external surface of EG by SO 4 · ? and ·OH, generated on or near the surface of EG. The radical oxidation mechanism was further confirmed by electron paramagnetic resonance spectroscopy. The EG sample could be regenerated by annealing, and the catalytic ability was almost fully recovered.
机译:制备了经典的碳材料-膨胀石墨(EG),并提出了新的应用作为活化过氧二硫酸盐(PDS)的催化剂。通过X射线衍射(XRD),X射线光电子能谱(XPS)和其他方法对在不同膨胀温度下制备的EG样品进行了表征。观察到,在EG / PDS组合系统中存在明显的协同作用,可降解酸性红97(AR97)。与其他碳材料催化剂不同,sp 2碳结构可能是催化反应中的主要活性中心。在600°C下处理的EG样品显示出活化PDS的最佳催化活性。 AR97的降解效率随着PDS剂量和EG含量的增加而增加。水溶液的pH值在降解和吸附中起着重要的作用,在这项研究中,接近中性是最佳pH。假定自由基途径在AR97降解中起主要作用,并且SO97·?在EG外表面的孔和界面层中发生了AR97的氧化。 ·OH,在EG表面上或附近生成。电子顺磁共振波谱进一步证实了自由基的氧化机理。 EG样品可以通过退火再生,并且催化能力几乎完全恢复。

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