首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Novel photoelectrocatalytic/solar cell improvement for organic dye degradation based on simple dip coating WO3/BiVO4 photoanode electrode
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Novel photoelectrocatalytic/solar cell improvement for organic dye degradation based on simple dip coating WO3/BiVO4 photoanode electrode

机译:基于简单浸涂WO3 / BIVO4光电电极的有机染料降解的新型光电催化/太阳能电池改进

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This work focuses on developing a novel photoelectrocatalytic (PEC) cell combined with a solar cell for the highest efficiency, simplest process, and most energy savings to degrade organic dyes in wastewater. FTO/WO3/BiVO4 photoanode electrode fabrication was developed with the simple layer-by-layer dip coating method, which allows production to be scaled up in the future. The fabricated WO3/BiVO4 shows thin film properties of high porosity, good visible light absorption, and ability to cover the entire FTO substrate area. The developed FTO/WO3/BiVO4 electrode exhibits high oxidation activity and high durability, and it can be applied to the PEC cell prototype by working under the catalytic mechanism of light irradiation and bias potential for organic dye degradation. The novel PEC cell was especially designed to include a solar cell to convert light into electrical energy that is stored in batteries for potential bias at the anode electrode and to supply electricity to the light-irradiated electrode and solar cell panel under the electrical circuit's controller. The result shows that the developed PEC cell prototype can operate on its own without using external power and is able to degrade methylene blue and rhodamine B dyes up to 94% and 93% in 3 h, respectively. This research provides a novel, innovative PEC cell prototype that is highly effective at removing various organic dye substances, uses a simple method, offers an energy saving process, and is a very interesting way to further a large industrial dye wastewater treatment system.
机译:这项工作侧重于开发新颖的光电催化(PEC)细胞与太阳能电池为最高效率,最简单的过程,以及降解废水中有机染料的最高节能。 FTO / WO3 / BIVO4光电电极制造是用简单的逐层浸涂方法开发,这使得将来可以扩大生产。制造的WO3 / BIVO4显示了高孔隙率,良好的可见光吸收和覆盖整个FTO基底区域的能力的薄膜性能。开发的FTO / WO3 / BIVO4电极具有高氧化活性和高耐久性,并且可以通过在光照射的催化机制下工作施加到PEC细胞原型,用于有机染料降解的偏置电位。新颖的PEC单元特别设计用于包括太阳能电池,以将光转换成电能,该电能存储在电池中的电池,用于在电路控制器下向光照射电极和太阳能电池板供电。结果表明,发育的PEC电池原型可以在不使用外部功率的情况下自行操作,并且能够将亚甲基蓝和罗丹明B染料降低94%和93%的3小时。本研究提供了一种新颖的,创新的PEC细胞原型,在除去各种有机染料物质方面具有高效,采用简单的方法,提供节能工艺,是进一步提供大型工业染料废水处理系统的非常有趣的方法。

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