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Comparative Study of Photocatalytic Fuel Cell for Degradation of Methylene Blue under Sunlight and Ultra-Violet Light Irradiation

机译:光催化燃料电池在阳光和紫外线照射下降解亚甲基蓝的比较研究

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摘要

Photocatalytic fuel cell is considered as a sustainable wastewater treatment system which could degrade organic pollutants and generate electricity simultaneously. In this study, a single-chambered photocatalytic fuel cell based on immobilized ZnO/Zn photoanode was evaluated under sunlight and UV light irradiation, respectively. Methylene blue was used as the dye pollutant in the photocatalytic fuel cell. The fabricated ZnO/Zn photoanode was characterized using scanning electron microscopy and X-ray diffraction. Significant difference in degradation efficiency of methylene blue was observed under UVand sunlight irradiation, respectively. Results showed that the decolorization efficiency and electricity generation of methylene blue in PFC and photolysis were higher under sunlight irradiation compared to those of the UV light irradiation. The decolorization trend of methylene blue was unstable under photolysis using UV light irradiation. Under sunlight irradiation, about 85% of methylene blue was decolorized by PFC, but only 35% of decolorization was observed under UV light irradiation. The maximum power density of the PFC under sunlight irradiation (0.0032 mW/cm(2)) was almost two times of that under the UV light irradiation (0.0017 mW/cm(2)).
机译:光催化燃料电池被认为是可持续的废水处理系统,可以降解有机污染物并同时发电。在这项研究中,分别在阳光和紫外线照射下评估了基于固定化ZnO / Zn光阳极的单室光催化燃料电池。亚甲基蓝用作光催化燃料电池中的染料污染物。使用扫描电子显微镜和X射线衍射对制成的ZnO / Zn光阳极进行表征。在紫外线和阳光照射下,分别观察到亚甲基蓝降解效率的显着差异。结果表明,在PFC和光解作用下,日光照射下的亚甲基蓝的脱色效率和发电量均高于UV光照射下的。在使用紫外线照射的光解下,亚甲基蓝的脱色趋势不稳定。在阳光照射下,约85%的亚甲基蓝被PFC脱色,但在UV光照射下仅观察到35%的脱色。在阳光照射下(0.0032 mW / cm(2)),PFC的最大功率密度几乎是在紫外线照射下(0.0017 mW / cm(2))的两倍。

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