将 PbO2/石墨和石墨烯/碳纤维作为电化学电池,利用电-芬顿工艺氧化炼油废水中的有机污染物;电极的制备、表征和性能

R. Abbas, Ammar S. Abbas
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引用次数: 0

摘要

电-芬顿氧化工艺被用于处理工业废水中的有机污染物,因为它是一种高效的高级氧化工艺。该工艺中使用的新型电池由在石墨基底上通过电沉积制备的 PbO2 电极和用石墨烯改性的碳纤维作为阴极组成。利用 X 射线衍射、荧光、分析系统、原子力显微镜和扫描电子显微镜对制备的阳极和阴极进行了表征。测量了碳纤维阴极改性前后的接触角。阳极极化曲线显示,使用二氧化铅阳极时的阳极电流高于石墨阳极。在电流密度为 8 mA/cm2、亚铁离子浓度为 0.4 mM、温度为 35 ℃、电解时间为 6 小时的条件下,模拟废水中的苯酚被电-芬顿氧化去除。与使用改良阳极和未改良阴极的 81.23% 和使用未改良阳极和改良阴极的 79.87% 相比,使用由改良阳极和阴极组成的电池可去除处理溶液中 94.02% 的化学需氧量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
PbO2/Graphite and Graphene/Carbon Fiber as an Electrochemical Cell for Oxidation of Organic Contaminants in Refinery Wastewater by Electro-Fenton Process; Electrodes Preparation, Characterization and Performance
The electro-Fenton oxidation process was used to treat organic pollutants in industrial wastewater as it is one efficient advanced oxidation process. The novel cell used in this process consists of a prepared PbO2 electrode by electrodeposition on graphite substrate and carbon fiber modified with graphene as a cathode. X-ray diffraction, fluorescence, analysis system, atomic force microscopy, and scan electron microscopy were used to characterize the prepared anode and cathode. Contact angle measurement was determined for the carbon fiber cathode before and after modification. The anodic polarization curve showed a higher anodic current when utilizing the PbO2 anode than the graphite anode. Phenol in simulated wastewater was removed by electro-Fenton oxidation at 8 mA/cm2 current density, 0.4 mM of ferrous ion concentration at 35 °C up to 6 h of electrolysis. Chemical oxygen demand for the treated solution was removed by 94.02 % using the cell consisting of modified anode and cathode compared with 81.23% using modified anode and unmodified cathode and 79.87 % when using unmodified anode and modified cathode.
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