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Electro-generation of hydrogen peroxide using a graphite cathode from exhausted batteries: study of influential parameters on electro-Fenton process

机译:从耗尽电池的石墨阴极电极产生过氧化氢:电气芬顿工艺有影响参数的研究

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摘要

In this work, the study of hydrogen peroxide (H2O2) electro-generation using graphite from exhausted batteries (Gr-Bat) was conducted. Linear sweep voltammetry and electrolysis experiments were carried out in a single compartment electrochemical cell. Study of the possibility to use this electrode revealed that it presents, as vitreous carbon (VC) electrode, a reduction of oxygen with two successive waves (bi-electronic reduction). The first wave corresponds to the reduction of O-2 to H2O2, while the second one corresponds to the reduction of H2O2 to H2O. The cathodic potentials for electro-generation of H2O2 appeared at -600 and -700 mV vs. Ag/AgCl for Gr-Bat and VC electrodes, respectively. Subsequently, electrolysis experiments were conducted by imposing the potentials required for H2O2 formation. The effect of several operating parameters on H2O2 production, such as the nature and concentration of the electrolyte, the pH, the presence of ferrous ions and O-2 injection were studied using Gr-Bat and VC electrodes, respectively. For both electrodes, the acidic medium was more favorable for H2O2 electro-generation. The oxygen injection in solution promoted an increase of H2O2 concentration, but its effect was more pronounced in the case of VC electrode. Application for crystal violet degradation by electro-Fenton revealed that Gr-Bat had the best purification performance. A removal rate of 73.18% was obtained with Gr-Bat electrode against 62.27% with VC electrode for an electrolysis time of 120 min. This study has demonstrated the possibility of recycling Gr-Bat by using them as cathode materials in the electro-Fenton process.
机译:在这项工作中,进行了使用来自耗尽电池(GR-BAT)的过氧化氢(H2O2)电极的研究。线性扫描伏安法和电解实验在单个隔室电化学电池中进行。研究使用该电极的可能性显示,它作为玻璃体碳(Vc)电极,具有两个连续波(Bi-Electronic Cranse)的氧气的减少。第一波对应于O-2至H 2 O 2的还原,而第二个波对应于降低H2O2至H2O。用于电极产生H2O2的阴极电位,分别在-600和-700mV与Ag / AgCl的GR-BAT和VC电极上出现。随后,通过施加H2O2形成所需的电位进行电解实验。使用GR-BAT和VC电极研究了几种操作参数对H2O2生产的影响,例如电解质的性质和浓度,pH,亚铁的存在和O-2注射。对于两个电极,酸性介质对H2O2电极产生更有利。溶液中的氧注射促进了H 2 O 2浓度的增加,但在VC电极的情况下,其效果更加明显。电气芬顿晶体紫色降解的应用显示,GR-BAT具有最佳净化性能。使用GR-BAT电极获得73.18%的去除率,与VC电极的62.27%用于120分钟的电解时间。该研究表明,通过在电芬工艺中使用它们作为阴极材料来回收GR蝙蝠的可能性。

著录项

  • 来源
    《Environmental Technology》 |2020年第12期|1434-1445|共12页
  • 作者单位

    Univ Cheikh Anta Diop Lab Electrochim & Proc Membranaires Ecole Super Polytech Dakar Senegal;

    Univ Quebec INRS Eau Terre & Environm 490 Rue Couronne Quebec City PQ G1K 9A9 Canada;

    Univ Cheikh Anta Diop Lab Electrochim & Proc Membranaires Ecole Super Polytech Dakar Senegal;

    Univ Quebec INRS Eau Terre & Environm 490 Rue Couronne Quebec City PQ G1K 9A9 Canada;

    Univ Cheikh Anta Diop Lab Electrochim & Proc Membranaires Ecole Super Polytech Dakar Senegal;

    Univ Cheikh Anta Diop Lab Electrochim & Proc Membranaires Ecole Super Polytech Dakar Senegal;

    Univ Cheikh Anta Diop Lab Electrochim & Proc Membranaires Ecole Super Polytech Dakar Senegal;

    Univ Cheikh Anta Diop Lab Electrochim & Proc Membranaires Ecole Super Polytech Dakar Senegal;

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

    Exhausted batteries; hydrogen peroxide; electro-Fenton; electro-reduction of O-2; crystal violet;

    机译:耗尽的电池;过氧化氢;电芬;电子减少O-2;水晶紫;

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