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首页> 外文期刊>Chemical engineering journal >Enhanced activation of peroxymonosulfate by magnetic Co3MnFeO6 nanoparticles for removal of carbamazepine: Efficiency, synergetic mechanism and stability
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Enhanced activation of peroxymonosulfate by magnetic Co3MnFeO6 nanoparticles for removal of carbamazepine: Efficiency, synergetic mechanism and stability

机译:通过磁共二氧化碳硫酸盐增强活氧基磺酸盐以去除碳碱:效率,协同机理和稳定性

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摘要

To achieve complete removal of persistent organic pollutant from water system, an efficient, stable, magnetic and low-energy sulfate radical-based advanced oxidation process (SR-AOPs) is in desirable to be established. In this work, magnetic trimetallic oxides Co3MnFeO6 nanoparticles were successfully synthesized and utilized as novel heterogeneous catalysts to activate peroxymonosulfate (PMS) for the degradation of carbamazepine (CBZ), a recalcitrant organic pollutant. In the degradation tests, Co3MnFeO6/PMS system showed excellent performance that 99.2% of CBZ could be removed at a relative shorter time (30 min) and in a wider pH range from 3 to 10. More in-depth investigation found that synergistic effects between Co, Mn and Fe in Co3MnFeO6 catalyst were responsible for the efficient generation of sulfate radical from PMS activation. And the roles of Co, Mn and Fe in synergistic effect were identified as: the redox cycles of Co and Mn mainly worked for the activation of PMS, and Fe mainly provided magnetism for Co3MnFeO6 catalyst as well as the adsorption site for PMS and CBZ. Moreover, it was found that Co3MnFeO6 catalyst maintained high activity and robust magnetism during repeated batch experiments. Even in real wastewater samples (municipal wastewater, tap and river water), Co3MnFeO6/PMS system was capable of high activity for CBZ removal, indicating that Co3MnFeO6/PMS system possessed promising potential in practical applications. The possible CBZ degradation pathways were also proposed based on the detected intermediates. This Co3MnFeO6/PMS system may provide some new inspirations for the construction of multiple metal-based catalysts in AOPs.
机译:为了实现水系统完全去除持续有机污染物,有效,稳定,磁性和低能量硫酸盐的基于基于氧化氧化过程(SR-AOPS)是理想的。在这项工作中,成功地合成了磁性三种氧化物CO 3MNFEO6纳米颗粒,并用作新型非均相催化剂,以激活过氧脲磺酸盐(PMS),用于克拉巴马嗪(CBZ)的降解,一种顽固的有机污染物。在降解试验中,CO3MNFEO6 / PMS系统表现出优异的性能,即99.2%的CBZ可以在相对较短的时间(30分钟)和更宽的pH范围内,从3到10的温度范围内。更深入的调查发现,发现之间的协同效应CO3MNFEO6催化剂中的CO,Mn和Fe负责从PMS激活的有效产生硫酸盐。鉴定了CO,Mn和Fe在协同效应中的作用是:CO和Mn的氧化还原循环主要用于PMS的激活,Fe主要为CO3MNFeO6催化剂以及PMS和CBZ的吸附位点提供磁性。此外,发现CO 3MEO6催化剂在重复的批量实验期间保持高活性和鲁棒磁性。即使在真正的废水样本(市政废水,Tap和River Water)中,CO3MNFEO6 / PMS系统也能够进行CBZ去除的高活动,表明CO3MNFEO6 / PMS系统在实际应用中具有有希望的潜力。还提出了基于检测到的中间体的可能的CBZ降解途径。该CO3MNFEO6 / PMS系统可以为AOP中的多种金属基催化剂进行建设提供一些新的灵感。

著录项

  • 来源
    《Chemical engineering journal》 |2019年第2019期|共14页
  • 作者单位

    Hunan Univ Minist Educ Coll Environm Sci Engn Key Lab Environm Biol Pollut Control Changsha 410082 Hunan Peoples R China;

    Hunan Univ Minist Educ Coll Environm Sci Engn Key Lab Environm Biol Pollut Control Changsha 410082 Hunan Peoples R China;

    Hunan Univ Minist Educ Coll Environm Sci Engn Key Lab Environm Biol Pollut Control Changsha 410082 Hunan Peoples R China;

    Hunan Univ Minist Educ Coll Environm Sci Engn Key Lab Environm Biol Pollut Control Changsha 410082 Hunan Peoples R China;

    Hunan Univ Minist Educ Coll Environm Sci Engn Key Lab Environm Biol Pollut Control Changsha 410082 Hunan Peoples R China;

    Yancheng Teachers Univ Sch Chem &

    Environm Engn Xiwang Rd Yancheng 224051 Jiangsu Peoples R China;

    Hunan Univ Minist Educ Coll Environm Sci Engn Key Lab Environm Biol Pollut Control Changsha 410082 Hunan Peoples R China;

    Hunan Univ Minist Educ Coll Environm Sci Engn Key Lab Environm Biol Pollut Control Changsha 410082 Hunan Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业;
  • 关键词

    Advanced oxidation processes; Co3MnFeO6 heterogeneous catalyst; Carbamazepine; Peroxymonosulfate; Synergetic effect;

    机译:先进的氧化方法;CO3 FeO6异质催化剂;毒碱;过氧键硫酸盐;协同作用;

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