Simultaneous removal of NO and SO2 from flue gas using vaporized H2O2 catalyzed by nanoscale zero-valent iron

被引:0
|
作者
Yi Zhao
Bo Yuan
Yao Shen
Runlong Hao
Shuo Yang
机构
[1] North China Electric Power University,School of Environmental Science & Engineering
关键词
Nanoscale zero-valent iron; Heterogeneous Fenton; Hydroxyl radicals; Simultaneous removal of NO and SO;
D O I
暂无
中图分类号
学科分类号
摘要
To remove NO and SO2 from flue gas simultaneously, a heterogeneous catalytic oxidation system was developed with the nanoscale zero-valent iron (nZVI), vaporized H2O2, and sodium humate (HA-Na) acting as the catalyst, oxidant, and absorbent, respectively. The experimental results indicated that the desulfurization was mainly influenced by the absorption, and the denitrification was significantly affected by the catalytic oxidation parameters. Under the optimal conditions, the simultaneous removal efficiencies of SO2 and NO were 100 and 88.4%, respectively. The presence of ·OH during the removal process was proved by the scavenger tests, and the production of ·OH with and without nZVI was indirectly evaluated by the electron paramagnetic resonance (EPR) and methylene blue experiments. Moreover, the fresh and aged nZVI were characterized by a series of techniques and the results suggested that the redox pair Fe2+/Fe3+ released by nZVI could react with H2O2 to provide the sustainable ·OH, which was important for the oxidation from NO and SO2 to NO3− and SO42−. The removal mechanism was proposed preliminarily based on the correlative experiments, characterizations, and references.
引用
收藏
页码:25526 / 25537
页数:11
相关论文
共 50 条
  • [21] Simultaneous Removal of SO2 and NO from Flue Gas Using Multicomposite Active Absorbent
    Zhao, Yi
    Han, Yinghui
    Chen, Cheng
    INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2012, 51 (01) : 480 - 486
  • [22] Removal of Amoxicillin from Aqueous Media by Fenton-like Sonolysis/H2O2 Process Using Zero-Valent Iron Nanoparticles
    Mohammadi, Leili
    Kamani, Hossein
    Asghari, Abolfazl
    Mohammadpour, Amin
    Golaki, Mohammad
    Rahdar, Abbas
    Kyzas, George Z.
    MOLECULES, 2022, 27 (19):
  • [23] Simultaneous removal of SO2 and NOx from flue Gas on NiMgAlO catalyst in the presence of O2
    Yu, Moxin
    Zheng, Mingdong
    He, Xiaojun
    Li, Xuei
    Wang, Lefu
    PROGRESS IN ENVIRONMENTAL SCIENCE AND ENGINEERING (ICEESD2011), PTS 1-5, 2012, 356-360 : 335 - +
  • [24] Experimental study of the removal NOx and SO2 from flue gas using the O3/H2O2, and O3/UV processes
    Dalal, Parveen
    Dalai, Sridhar
    Khuntia, Snigdha
    ENVIRONMENTAL TECHNOLOGY, 2024, 45 (22) : 4526 - 4535
  • [25] Research on NO and SO2 removal using TiO2-supported iron catalyst with vaporized H2O2 in a catalytic oxidation combined with absorption process
    Zijian Song
    Ben Wang
    Wu Yang
    Tao Chen
    Wei Li
    Chuan Ma
    Lushi Sun
    Environmental Science and Pollution Research, 2020, 27 : 18329 - 18344
  • [26] Modeling NO and SO2 Oxidation by H2O2 in Coal-Fired Flue Gas
    Li, Sen
    Ge, Yifei
    Wei, Xiaolin
    JOURNAL OF ENVIRONMENTAL ENGINEERING, 2018, 144 (11)
  • [27] REMOVAL OF SO2 AND THE SIMULTANEOUS REMOVAL OF SO2 AND NO FROM SIMULATED FLUE-GAS STREAMS USING DIELECTRIC BARRIER DISCHARGE PLASMAS
    CHANG, MB
    KUSHNER, MJ
    ROOD, MJ
    PLASMA CHEMISTRY AND PLASMA PROCESSING, 1992, 12 (04) : 565 - 580
  • [28] Research on NO and SO2 removal using TiO2-supported iron catalyst with vaporized H2O2 in a catalytic oxidation combined with absorption process
    Song, Zijian
    Wang, Ben
    Yang, Wu
    Chen, Tao
    Li, Wei
    Ma, Chuan
    Sun, Lushi
    ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH, 2020, 27 (15) : 18329 - 18344
  • [29] Oxidation-absorption process for simultaneous removal of NOx and SO2 over Fe/Al2O3@SiO2 using vaporized H2O2
    Jia, Shuaihui
    Pu, Ge
    Gao, Jie
    Yuan, Cong
    CHEMOSPHERE, 2022, 291
  • [30] Removal of phenol by acid-washed zero-valent aluminium in the presence of H2O2
    Cheng, Zihang
    Fu, Fenglian
    Pang, Yansong
    Tang, Bing
    Lu, Jianwei
    CHEMICAL ENGINEERING JOURNAL, 2015, 260 : 284 - 290