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Decolorizing Textile Wastewater With Fenton's Reagent Electrogenerated With A Solar Photovoltaic Cell

机译:用太阳能光伏电池电产生的芬顿试剂对纺织废水进行脱色

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In this work it is demonstrated that Fenton's reagent can be electroproduced with abundant and cheap feedstock: oxygen saturated wastewater and solar energy. Experiments were carried out in a divided electrochemical flow cell using two electrodes: a three dimensional reticulated vitreous carbon cathode and stainless steel anode. Fenton's reagent is produced by oxygen reduction on the cathode in the presence of 1 mM Fe~(2+). The influence of electrolyte nature and its concentration and potential difference on the current efficiency, as well as the rate of Fenton's reagent electroproduction is discussed and it is concluded that over this extended range of conditions the current efficiency, for Fenton's reagent production, fell within the range 50-70%. It is possible to electroproduce a stoichiometric amount of Fenton reagent for the oxidation of 0.061 mM Reactive Black 5 (in tap water + 0.05 M Na_2SO_4, ≈pH 2.8). Similar results were obtained for solutions containing 0.1 mM Acid Green 25. Some practical applications in the field of water treatment are included. The energy required for drive electrochemical reaction is supplied to the flow cell by means of a commercial solar panel.
机译:在这项工作中,证明了Fenton试剂可以用丰富而廉价的原料(含氧废水和太阳能)进行电生产。在使用两个电极的三维电化学流通池中进行了实验:三维网状玻璃碳阴极和不锈钢阳极。 Fenton试剂是通过在1 mM Fe〜(2+)存在下在阴极上进行氧气还原而产生的。讨论了电解质性质及其浓度和电势差对电流效率以及Fenton试剂电产生速率的影响,并得出结论,在此扩展的条件范围内,Fenton试剂生产的电流效率落在范围为50-70%。可以产生化学计量的Fenton试剂,用于氧化0.061 mM的活性黑5(在自来水中+ 0.05 M Na_2SO_4,≈pH2.8)。对于含有0.1 mM酸性绿25的溶液,获得了相似的结果。其中包括水处理领域的一些实际应用。驱动电化学反应所需的能量通过商用太阳能电池板提供给流通池。

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