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首页> 外文期刊>Science of the total environment >Iron nanoparticles encapsulated within nitrogen and sulfur co-doped magnetic porous carbon as an efficient peroxymonosulfate activator to degrade 1 -naphthol
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Iron nanoparticles encapsulated within nitrogen and sulfur co-doped magnetic porous carbon as an efficient peroxymonosulfate activator to degrade 1 -naphthol

机译:铁纳米粒子包封在氮气和硫的共掺杂磁多孔碳中,为有效的过氧键硫酸盐活化剂,降解1-萘酚

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摘要

A novel iron nanoparticles encapsulated within nitrogen and sulfur co-doped magnetic porous carbon (Fe-N-S-MPC) was proposed by one-pot pyrolysis strategy to activate peroxymonosulfate (PMS) to degrade 1-naphthol using low-cost lignin as precursors. The Fe-N-S-MPC was characterized for structure and properties by different characterizations. The obtained materials had the morphology of iron nanoparticles encapsulated within nitrogen and sulfur co-doped magnetic porous carbon with rich functional groups and large specific surface area, which made the materials have a good catalytic property. It was proved that the doping of nitrogen and sulfur is pivotal for improving the catalytic performance. The radical quenching experiment confirmed that sulfate radical (SO_4~- •) and hydroxyl radical (OH·) are two major reactive oxygen groups. The reaction had phenomenon of the free radicals upsurge in the early stage and the shortage in the later stage. Therefore, a mathematical model was put forward to represent the two-stage reaction kinetics. By adding oxidants in batches, the degradation effect could reach nearly 100% within 30 min. The Fe-N-S-MPC were applied to the degradation of 1 -naphthol in soil and showed high degradation performance. This work provided a new type of catalytic material by the high-value utilization of waste for the degradation of organic pollutants.
机译:通过单盆热解策略提出了一种在氮气和硫型磁多孔碳(Fe-N-S-MPC)中包封的新型铁纳米颗粒,以激活过氧键磺酸盐(PMS),以使用低成本木质素作为前体来降解1-萘酚。 Fe-N-S-MPC的特征在于通过不同的表征的结构和性质。所得材料具有在氮气中包封的铁纳米粒子的形貌,含有富官能团和富含官能团的富掺杂的磁多孔碳和大的比表面积,这使得材料具有良好的催化性。事实证明,氮和硫的掺杂是为了提高催化性能的关键。自由基淬火实验证实,硫酸盐自由基(SO_4〜 - •)和羟基(OH·)是两个主要反应性氧基团。反应在早期阶段的自由基升高的现象和后期的短缺。因此,提出了数学模型来代表两级反应动力学。通过批量添加氧化剂,降解效果在30分钟内可达到近100%。将Fe-N-S-MPC施用于土壤中1-萘酚的降解,并显示出高降解性能。这项工作提供了一种新型的催化材料,通过废物的高价值利用用于有机污染物的降解。

著录项

  • 来源
    《Science of the total environment 》 |2020年第15期| 139896.1-139896.11| 共11页
  • 作者单位

    College of Chemistry and Material Science Shandong Agricultural University Taian 271018 Shandong PR China;

    College of Chemistry and Material Science Shandong Agricultural University Taian 271018 Shandong PR China;

    College of Chemistry and Material Science Shandong Agricultural University Taian 271018 Shandong PR China;

    College of Chemistry and Material Science Shandong Agricultural University Taian 271018 Shandong PR China;

    College of Chemistry and Material Science Shandong Agricultural University Taian 271018 Shandong PR China;

    School of Environment and Materials Engineering Yantai University Yantai 264005 Shandong PR China;

    College of Chemistry and Material Science Shandong Agricultural University Taian 271018 Shandong PR China;

    College of Chemistry and Material Science Shandong Agricultural University Taian 271018 Shandong PR China;

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

    Fe-N-S-MPC; Peroxymonosulfate; Degradation; 1-Naphthol; Two-stage reaction;

    机译:FE-N-S-MPC;过氧键硫酸盐;降解;1-萘酚;两阶段反应;

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