首页> 外文期刊>Journal of Chemical Technology & Biotechnology >Optimization of the 3D electro-Fenton process in removal of acid orange 10 from aqueous solutions by response surface methodology
【24h】

Optimization of the 3D electro-Fenton process in removal of acid orange 10 from aqueous solutions by response surface methodology

机译:响应面法从水溶液中除去酸性橙10的3D电芬工艺的优化

获取原文
获取原文并翻译 | 示例
           

摘要

BACKGROUND In recent decades, rapid population growth and industrial development have led to the release of toxic compounds into water resources. Several technologies have been proposed to address the problem, and among them, the 3D electro-Fenton process has found great popularity due to its high efficiency and simple operation. In the 3D electro-Fenton process, the type of particle electrode is one of the most important factors owing to its impact on the reduction of energy consumption and generation of reactive species. In the present study, the optimization of the 3D electro-Fenton process coupled with iron-coated nickel foam (NF-Fe), as a new particle electrode, in the removal of acid orange 10 was investigated using response surface methodology (RSM). RESULTS The RSM results showed that the quadratic model has a high R-2 and high F-value based on ANOVA analysis. The optimum efficiency of dye removal (99.15%) was obtained at pH 5.6, an NF-Fe dosage of 0.68 g L-1, a time of 34.6 min, and current density of 23.62 mA cm(-2). Comparative tests showed the high efficiency of the 3D electro-Fenton process compared to other electrochemical systems. Quenching experiments demonstrated the production of different reactive species in the 3D process. The stability experiment proved that the NF-Fe has a high potential to improve the long-term degradation of dye. CONCLUSIONS Due to its high efficiency, production of more reactive species and excellent stability of the NF-Fe electrode, this 3D electro-Fenton process is an excellent option for removal of dye from aqueous solutions. (c) 2019 Society of Chemical Industry
机译:背景技术近几十年来,人口迅速增长和产业发展导致释放有毒化合物进入水资源。已经提出了几种技术来解决问题,其中3D电器芬顿工艺由于其高效率和操作而导致了很大的普及。在3D电芬工艺中,粒子电极的类型是由于其对减少能量消耗和反应物种产生的影响最重要的因素之一。在本研究中,使用响应表面方法(RSM)研究了与铁涂覆的镍泡沫(NF-Fe)偶联的3D电芬顿工艺作为新粒子电极的优化。结果RSM结果表明,基于ANOVA分析的二次模型具有高R-2和高F值。在pH5.6中获得染料去除(99.15%)的最佳效率,NF-Fe剂量为0.68g L-1,时间为34.6分钟,电流密度为23.62mA cm(-2)。与其他电化学系统相比,比较试验显示了3D电芬工艺的高效率。淬火实验证明了在3D过程中产生不同的反应性物种。稳定性实验证明,NF-Fe具有高潜力,可提高染料的长期降解。结论由于其高效率,生产更多的反应性物种和NF-FE电极的优异稳定性,该3D电芬工艺是从水溶液中除去染料的优异选择。 (c)2019年化学工业协会

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号