已经得到个称赞     给我点赞
  • 讲师
  • 硕士生导师
  • 教师拼音名称:congshibo
  • 出生日期:1992-05-29
  • 电子邮箱:
  • 入职时间:2024-12-27
  • 所在单位:长春工业大学
  • 学历:研究生(博士)毕业
  • 办公地点:长春工业学(北湖西区)化学工程学院B313
  • 性别:
  • 联系方式:15004323419
  • 学位:博士学位
  • 在职信息:在职
  • 毕业院校:吉林大学
论文成果
当前位置: 中文主页 >> 科学研究 >> 论文成果
Hydroxylamine facilitated heterogeneous fenton-like reaction by nano micro-electrolysis material for rhodamine B degradation
  • 影响因子:11.1
  • DOI码:10.1016/j.jclepro.2021.128136
  • 发表刊物:Journal of Cleaner Production
  • 摘要:Heterogeneous Fenton-like oxidation is a promising method in dealing with organic pollutants. So far, the interaction of the nano micro-electrolysis material (nMET) and hydroxylamine (HA) Fenton-like system still needs to be explored. A HA-favored degradation of rhodamine B (Rh B) with nMET/H2O2 system was investigated in this paper. The influences of various experimental factors, as well as reuse and universal adaptability of the catalyst and the intermediates were comprehensively assessed. Under the near-neutral pH condition, the degradation efficiency of Rh B was up to 100% with H2O2 (1 mM), HA (0.1 g/L) and nMET (0.03 g/L) at 8 min, which was ascribed to the iron ions leaching and accelerated Fe(III)/Fe(II) recycle by the promotion of HA. As confirmed by the Electron paramagnetic resonance (EPR) and quenching experiments tests, singlet oxygen (1O2) and hydroxyl radical (•OH) were the predominant reactive oxygen species (ROS) for the degradation of Rh B molecules in nMET/H2O2/HA system, then the potential mechanism of ROS generation and pathway of Rh B degradation were proposed. This study furnishes a novel perspective for ROS generation from the micro-electrolysis function, proving that nMET is feasible for the efficient degradation of organic contaminants in heterogeneous Fenton-like system.
  • 论文类型:期刊论文
  • 卷号:316
  • 页面范围:128136
  • 是否译文:
  • 发表时间:2021-09-20
  • 发布期刊链接:https://doi.org/10.1016/j.jclepro.2021.128136