首页> 外文期刊>Journal of Environmental Science and Health. A, Toxic/Hazardous Substances & Environmental Engineering >Electrochemical-assisted photodegradation of Allura Red and textile effluent using a half-exposed rotating TiO_2/Ti disc electrode
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Electrochemical-assisted photodegradation of Allura Red and textile effluent using a half-exposed rotating TiO_2/Ti disc electrode

机译:半暴露旋转式TiO_2 / Ti圆盘电极对Allura Red和纺织品废水进行电化学辅助的光降解

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In this work, a rotating photoelectrocatalytic (RPEC) reactor, using a half-exposed and half-immersed TiO_2/Ti disc as photoanode was developed for the first time to degrade Allura Red (AR) and textile effluent. The TiO_2 film was characterised by X-ray reflection diffraction (XRD) spectra and field emission scanning electron microscope (FESEM). When AR solutions with concentrations ranging from 10 mg L~(-1) to 50 mg L~(-1) AR were treated by half-exposed disc PEC (EPEC) process for 1 hour, solution color and TOC were reduced by 36-54% and 19-33%, respectively, higher than reduction of 9-46% and 4-27% observed for the conventional PEC (CPEC) process with half TiO_2/Ti disc immersed in solution. Similarly, solution color and TOC for textile effluent was reduced by 46% and 10% for EPEC process, respectively, higher than reduction of 26% and 2% for CPEC process. Effectiveness of the RPEC process was further demonstrated in the treatment of textile effluent and textile effluent containing 30 mgL~(-1) AR by determining change of solution color, total organic carbon (TOC), biochemical oxygen demand (BOD_5), and chemical oxygen demand (COD). Furthermore, a long run experiment was carried out for the TiO_2/Ti disc and almost stable photoactivity was found after 10 runs of RPEC oxidation of both AR and textile effluent. Our results indicate the proposed RPEC is effective in degrading textile wastewater, probably because the light can directly irradiate the exposed disc in air instead of through solution in the CPEC reactor.
机译:在这项工作中,首次开发了使用半曝光和半浸入的TiO_2 / Ti圆片作为光阳极的旋转光电催化(RPEC)反应器,以降解诱惑红(AR)和纺织废水。通过X射线反射衍射(XRD)光谱和场发射扫描电子显微镜(FESEM)对TiO_2薄膜进行了表征。浓度为10 mg L〜(-1)至50 mg L〜(-1)的AR溶液经半曝光片式PEC(EPEC)处理1小时后,溶液颜色和TOC降低36-将一半的TiO_2 / Ti圆片浸入溶液中的常规PEC(CPEC)工艺所观察到的减少分别为54%和19-33%,高于传统PEC(CPEC)工艺的减少量。同样,对于纺织废水,溶液颜色和TOC对于EPEC工艺分别减少了46%和10%,高于CPEC工艺减少了26%和2%。通过确定溶液颜色,总有机碳(TOC),生化需氧量(BOD_5)和化学需氧量的变化,进一步证明了RPEC工艺在处理纺织废水和含有30 mgL〜(-1)AR的废水中的有效性。需求(COD)。此外,对TiO_2 / Ti圆盘进行了长期实验,在AR和纺织品废水进行RPEC氧化10次后,发现几乎稳定的光活性。我们的结果表明,建议的RPEC可有效降解纺织废水,这可能是因为光可以直接照射暴露在空气中的圆盘,而不是通过CPEC反应器中的溶液。

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