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首页> 外文期刊>Separation and Purification Technology >Improving the operational parameters with high electrical energy efficiency for UVC induced advanced oxidation and mineralization of Acid blue 29: Generation of eco-friendly effluent
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Improving the operational parameters with high electrical energy efficiency for UVC induced advanced oxidation and mineralization of Acid blue 29: Generation of eco-friendly effluent

机译:提高UVC诱导的酸性蓝的高级氧化和矿化的高效电能运行参数29:环保废水的产生

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Mineralization of Acid blue 29 (AB 29), an anionic azo dye, was carried out at various pHs using UV254 in the presence of H2O2 (HP) or Na2S2O8 (SPS) as oxidants. The influence of operational variables such as pH and intensity of UV light on mineralization was analyzed and their electrical efficiency were evaluated in terms of electrical energy per order (EE/O). It was observed that although HP and SPS worked as good oxidants at all pHs, mineralization ability of SPS was higher than HP. In fact it was noted in general that at a particular time, the mineralization increased with increase in intensity, e.g. the mineralization by UV/SPS system in 90 min at pH 6.69 (natural pH of AB 29) increased from 37.9% to 95.6% when the intensity was increased from 213 to 1755 μW cm~(-2). The most important finding of the work is that >95% mineralization was achieved at all pHs except at pH 13, where it was 80%. Under the present experimental conditions, SPS showed higher biotoxicity removal efficiency (90.2%) than HP (64.6%) after adjusting the pH of the treated solution to 7. Thus, we have been able to generate eco-friendly effluent, which makes our work suitable for real scale applications.
机译:在H2O2(HP)或Na2S2O8(SPS)作为氧化剂的情况下,使用UV254在各种pH值下进行阴离子偶氮染料酸性蓝29(AB 29)的矿化。分析了操作变量(例如pH值和紫外线强度)对矿化的影响,并根据每订单的电能(EE / O)评估了其电效率。可以观察到,尽管HP和SPS在所有pH值下都是良好的氧化剂,但SPS的矿化能力却比HP高。实际上,通常注意到,在特定的时间,矿化度随着强度的增加而增加,例如强度增加。当强度从213μWcm〜(-2)增加到90.min时,pH 6.69(AB 29的天然pH)下UV / SPS系统的矿化作用从37.9%增加到95.6%。这项工作最重要的发现是,除pH值为13的80%外,在所有pH值下都实现了> 95%的矿化。在目前的实验条件下,将处理溶液的pH值调整为7后,SPS的生物毒性去除效率(90.2%)比HP(64.6%)高。因此,我们能够产生环保的废水,这使我们的工作成为可能。适用于实际规模的应用。

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