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Wastewater containing Cr(VI) treatment using solar tubular reactor

机译:太阳能管式反应器处理含六价铬的废水

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The hexavalent chromium, Cr(VI), which is generated in the electroplating process, is toxic to most organisms and potentially harmful to human health. The method generally used for remediation of wastewater containing Cr(VI) employs chemicals with high toxicity. This work proposes an alternative technology for the treatment of these wastewaters, based on photochemical reduction of Cr(VI) by alcohols under radiation, which is environmentally sustainable and economically viable. Initially, a batch reactor in laboratory scale was used to determine the best experimental conditions and its specific reaction rate was calculated. Based on these results, a tubular reactor (artificial radiation and sunlight) was designed and built in semi-pilot scale. Tests were carried out with real wastewater from an electroplating industry containing Cr(VI). Tests conducted under sunlight showed a higher total Cr(VI) reduction than the tests with artificial radiation. The remediation of Cr(VI) from wastewater was 86.7% after 6 h of reaction under sunlight, indicating the high efficiency of the developed process.
机译:电镀过程中产生的六价铬Cr(VI)对大多数生物有毒,并可能危害人体健康。通常用于补救含Cr(VI)废水的方法使用的是剧毒化学品。这项工作提出了一种用于处理这些废水的替代技术,该技术基于酒精在辐射下光化学还原六价铬(Cr(VI)),在环境上可持续且在经济上可行。最初,使用实验室规模的间歇反应器确定最佳实验条件,并计算其比反应速率。根据这些结果,设计并建造了半试验规模的管式反应器(人工辐射和阳光)。测试使用的是电镀行业含Cr(VI)的真实废水。在日光下进行的测试表明,总的Cr(VI)还原量要高于人工辐射的还原量。在阳光下反应6小时后,废水中的Cr(VI)修复率为86.7%,表明该开发过程的效率很高。

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