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Photocatalytic Fuel Cell Based on Zinc Oxide Loaded Carbon Plate Photoanode for Simultaneous Photocatalytic Degradation of Azo Dyes and Electricity Generation

机译:基于氧化锌的光催化燃料电池加载碳板光电偶像偶氮催化降解亚氮染料和发电

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Photocatalytic fuel cell (PFC) is promising to own its synchronous degradation of organic pollutants with electricity generation under illumination of light. The oxidation and reduction process promote the conversion of chemical energy in the pollutants into electrical energy. In this study, PFC is driven by the electrode reactions between the zinc oxide loaded carbon plate (ZnO/C) photoanode and carbon plate cathode under irradiation of UVA light. The ZnO/C photoanode was successfully fabricated by using simple ultrasonication-annealed method and investigated by XRD, SEM and EDX. To investigate the capability of the PFC, reactive red 120 (RR120), congo red (CR) and acid orange 7 (AO7) are employed well compared among themselves. The results indicated that the molecular structure of azo dyes with different adsorption of light by dye itself, number of azo bonds and sulfonic groups can be the crucial factors of decolorization in the PFC. The photocatalytic fuel cell with AO7 as sacrificial agent was able to perform 82.43% of decolorization efficiency, a maximum short circuit current (Jsc) of 0.0017 mA cm~(-2) and maximum power density (Pmax) of 0.0886 μW cm~(-2).
机译:光催化燃料电池(PFC)很有希望拥有其在光照照明下具有发电的有机污染物的同步降解。氧化和还原过程促进污染物中化学能转化为电能。在该研究中,PFC由氧化锌负载的碳板(ZnO / C)光电码和碳板阴极在UVA光照射下的电极反应驱动。通过使用简单的超声波退火方法并由XRD,SEM和EDX进行研究,成功制造了ZnO / C PhotoNode。为了研究PFC,反应性红色120(RR120),刚果红色(Cr)和酸橙7(AO7)的能力在它们之间进行了良好。结果表明,通过染料本身不同吸附光的偶氮染料的分子结构,偶氮键和磺基的数量可以是PFC脱色的关键因素。具有AO7作为牺牲剂的光催化燃料电池能够执行82.43%的脱色效率,最大短路电流(JSC)为0.0017 mA cm〜(-2)和0.0886μwcm的最大功率密度(pmax)〜( - 2)。

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