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首页> 外文期刊>Environmental Engineering Science >Degradation of Azo Dyes Using Natural Pyrite as Fenton-Like Reaction Catalyst
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Degradation of Azo Dyes Using Natural Pyrite as Fenton-Like Reaction Catalyst

机译:使用天然黄铁矿作为芬顿反应催化剂的偶氮染料的降解

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摘要

The degradation of azo dyes by pyrite-Fenton system was studied in this work. In the pyrite-Fenton system, Fe2+ comes from the reaction of H2O with pyrite, and then Fe2+ reacts with H2O2 in the solution. The decolorization of the dye was significantly inhibited by the addition of hydroxyl radical scavenger (ethanol), but not by the addition of superoxide ion scavenger (chloroform), indicating that the presence of hydroxyl radical was the main reason for the decolorization of dye. Three azo dyes (acid red G [ARG], methyl orange, and congo red) were degraded by pyrite-Fenton system and showed good decolorization and mineralization efficiency, which proved that the pyrite-Fenton system has a good effect in degradation of azo dyes. The degradation kinetics of the above three dyes in the pyrite-Fenton system are highly consistent with the pseudo-first-order reaction kinetic. This work explored the effects of pH, initial dye concentration, inorganic salt, pyrite, and H2O2 dosage on the degradation efficiency of pyrite-Fenton. The dosage of pyrite and H2O2 was studied by central composite design in response surface method. Under optimized conditions, the ARG decolorization rate reached 99.07% after 60 min. To explore the reusability of pyrite as Fenton reaction catalyst, five cycles of experiments were carried out, which proved that pyrite has high reusability.
机译:在这项工作中,研究了吡啶矿石系统的偶氮染料的降解。在黄铁矿 - 芬顿系统中,Fe2 +来自H 2 O与黄铁矿的反应,然后Fe2 +在溶液中与H 2 O 2反应。通过加入羟基自由基清除剂(乙醇)而不是通过加入超氧化物离子清除剂(氯仿)来显着抑制染料的脱色,表明羟基的存在是染料脱色的主要原因。三种偶氮染料(酸红色Gα,甲基橙和刚果红色)通过黄铁矿 - 芬顿系统降解,并显示出良好的脱色和矿化效率,这证明了黄铁矿 - 芬顿系统对偶氮染料的降解具有良好的效果。在吡啶铁矿 - FENTON系统中,上述三种染料的降解动力学与伪一级反应动力学高度一致。这项工作探讨了pH,初始染料浓度,无机盐,黄铁矿和H2O2剂量对硫铁矿 - 芬顿的降解效率的影响。通过中央复合材料设计在响应面法中研究了黄铁矿和H 2 O 2的剂量。在优化条件下,60分钟后,Arg脱色率达到99.07%。为了探讨黄铁矿作为芬顿反应催化剂的可重用性,进行了五个循环的实验循环,这证明了黄铁矿具有高可重用性。

著录项

  • 来源
    《Environmental Engineering Science》 |2021年第9期|854-866|共13页
  • 作者单位

    School of Chemical Engineering and Technology Hebei University of Technology;

    School of Chemical Engineering and Technology Hebei University of Technology;

    School of Chemical Engineering and Technology Hebei University of Technology;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    azo dye; Fenton; kinetic; pyrite; RSM;

    机译:奥佐染料;芬顿;动力学;黄铁矿;RSM;

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