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首页> 外文期刊>Chemical engineering journal >Dual slant-placed electrodes thin-film photocatalytic reactor: Enhanced dye degradation efficiency by self-generated electric field
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Dual slant-placed electrodes thin-film photocatalytic reactor: Enhanced dye degradation efficiency by self-generated electric field

机译:双斜置电极薄膜光催化反应器:通过自生电场提高染料降解效率

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摘要

A thin-film photocatalytic (PC) reactor with dual slant-placed electrodes was developed and successfully applied to degrade Carmine. In this PC reactor, both TiO2/Ti photoanode and cathode are slant-placed in reaction chamber, and aqueous thin-film formed on both anode and cathode as wastewater flowing through the electrode surface. Degradation efficiency can be enhanced 50% approximately due to additional degradation on the cathode. The mechanism of the dual slant-placed electrodes thin-film PC process was investigated. Self-generated electric field formed between the TiO2/Ti anode and Cu cathode based on the principle of establishing a Schottky barrier, which approved to be approximately 90 mV of potential and 8 μA of current by measurement during 20 mg L~(-1) Carmine solution PC treatment. Under electric field, photo-generated electrons were transferred from anode to cathode. On the Cu cathode surface, the photoelectrons reacted either with dissolved oxygen (DO) to form H2O2, which then oxidized dye and resulted in indirect oxidation decolorization, or with dye to result in direct reduction decolorization. Wastewater flowing enhanced the mass transfer of target compound and kept the aqueous film fresh. The influence of cathode material was investigated and Cu proved to be the optimal material.
机译:具有双倾斜放置电极的薄膜光催化(PC)反应器已开发成功并成功用于降解胭脂红。在该PC反应器中,TiO 2 / Ti光阳极和阴极都倾斜放置在反应室中,并且作为废水流过电极表面在阳极和阴极两者上形成水性薄膜。由于阴极上的额外降解,降解效率可提高约50%。研究了双斜置电极薄膜PC工艺的机理。基于建立肖特基势垒的原理,在TiO2 / Ti阳极和Cu阴极之间形成了自生电场,经20 mg L〜(-1)的测量,该电场被证实约为90 mV的电位和8μA的电流胭脂红溶液PC处理。在电场下,光生电子从阳极转移到阴极。在Cu阴极表面上,光电子与溶解氧(DO)反应形成H2O2,然后氧化染料使染料发生间接氧化脱色,或与染料发生反应而直接还原脱色。废水的流动增强了目标化合物的传质,并使水膜保持新鲜。研究了阴极材料的影响,证明铜是最佳材料。

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