Oxidation of elemental mercury with non-thermal plasma coupled with a wet process

被引:17
|
作者
Zhang, Yongsheng [1 ]
Zhang, You [1 ]
Wang, Tao [1 ]
Lin, JianWei [1 ]
Romero, Carlos E. [2 ]
Pan, Wei-ping [1 ,3 ]
机构
[1] North China Elect Power Univ, Minist Educ, Key Lab Condit Monitoring & Control Power Plant E, Beijing 102206, Peoples R China
[2] Lehigh Univ, Energy Res Ctr, 117 ATLSS Dr, Bethlehem, PA 18015 USA
[3] Western Kentucky Univ, Inst Combust Sci & Environm Technol, Bowling Green, KY 42101 USA
关键词
Mercury oxidation; Dielectric barrier discharge; Wet process; Plasma; DIELECTRIC BARRIER DISCHARGE; MODIFIED FLY-ASH; COAL-COMBUSTION; NOX REMOVAL; GAS; TEMPERATURE; EMISSIONS; AIR;
D O I
10.1016/j.fuel.2017.02.052
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
The oxidation of the elemental mercury (Hg-0) by non-thermal plasma (NTP) coupled with a wet process has been studied. Effects of oxygen content, supplied voltage, gas temperature, wet process and NO/SO2 concentration on Hg-0 oxidation were investigated using a dielectric barrier discharge reactor. Results indicate that both O and O-3 generated by O-2 during the discharge process contribute to the oxidation of Hg-0. The increase of O-2 content improves the Hg oxidation efficiency. It was noted that the Hg oxidation efficiency declines when the supplied voltage is too high, there was an optimal voltage level for Hg-0 oxidation. High temperatures promote oxidation of Hg-0. The main reason for this is that the high temperature increases the generation of O atoms and the reaction rate of O-3 with Hg-0. Compared with the NTP process only, the Hg oxidation efficiency increases from 43 to 82% after adding a wet process when the supplied voltage was 8 kV at room temperature. The presence of NO hindered mercury oxidation due to competitive consumption of O-3. However, at the level of 100 ppm NO, more than 50% Hg oxidation efficiency could be achieved in the NTP combined with wet process system. It is found SO2 enhance oxidation of Hg-0, because of the positive effect of SO3 generated in the NTP environment. (C) 2017 Elsevier Ltd. All rights reserved.
引用
收藏
页码:320 / 325
页数:6
相关论文
共 50 条
  • [31] Exfoliation of titanium nitride using a non-thermal plasma process
    Zambiazi P.J.
    Lazar D.R.R.
    Otubo L.
    de Souza R.F.B.
    Neto A.O.
    Guedes-Silva C.C.
    Beilstein Journal of Nanotechnology, 2024, 15 : 631 - 637
  • [32] Exfoliation of titanium nitride using a non-thermal plasma process
    Zambiazi, Priscila Jussiane
    Lazar, Dolores Ribeiro Ricci
    Otubo, Larissa
    de Souza, Rodrigo Fernando Brambilla
    Neto, Almir Oliveira
    Guedes-Silva, Cecilia Chaves
    BEILSTEIN JOURNAL OF NANOTECHNOLOGY, 2024, 15 : 631 - 637
  • [33] Process parameters optimization for degradation of benzene by non-thermal plasma
    Wang, Chunyu
    Zhu, Ling
    Xu, Danyun
    Luo, Qingyue
    Huagong Jinzhan/Chemical Industry and Engineering Progress, 2020, 39 (01): : 402 - 412
  • [34] Decomplexation of Cu(II)-natural organic matter complex by non-thermal plasma oxidation: Process and mechanisms
    Wang, Tiecheng
    Zhou, Liling
    Cao, Yang
    Zhang, Ying
    Qu, Guangzhou
    Guo, Xuetao
    Jia, Hanzhong
    Zhu, Lingyan
    JOURNAL OF HAZARDOUS MATERIALS, 2020, 389
  • [35] Non-Thermal Plasma Coupled with Catalyst for the Degradation of Water Pollutants: A Review
    Russo, Mariaconcetta
    Iervolino, Giuseppina
    Vaiano, Vincenzo
    Palma, Vincenzo
    CATALYSTS, 2020, 10 (12) : 1 - 29
  • [36] Catalytic Degradation of Bisphenol A in Water by Non-Thermal Plasma Coupled with Persulfate
    Zhang, Han
    Yang, Shuang
    Cui, Jiayu
    Guo, He
    CATALYSTS, 2024, 14 (11)
  • [37] Influence of Gas Atmosphere on Synergistic Control of Mercury and Dioxin by Non-thermal Plasma
    Zhu T.
    Zhang X.
    Ma M.
    Chen Y.
    Jin X.
    Yuan Q.
    Gaodianya Jishu/High Voltage Engineering, 2019, 45 (06): : 1907 - 1914
  • [38] Influence of gas atmosphere on synergistic control of mercury and dioxin by non-thermal plasma
    Zhu, Tao
    Bian, Wenjing
    Ma, Mingfeng
    Ye, Weili
    Wang, Ruonan
    Zhang, Xing
    PLASMA SCIENCE & TECHNOLOGY, 2019, 21 (04)
  • [39] Non-thermal plasma-treated gold catalyst for CO oxidation
    Xu, Huiyuan
    Luo, Jingjie
    Chu, Wei
    RSC ADVANCES, 2014, 4 (49): : 25729 - 25735
  • [40] Morphology and size effect of ceria on methanol oxidation in non-thermal plasma
    Li, Huanyi
    Wang, Xueqing
    Yi, Hui
    Shi, Xuefeng
    Mao, Mengqi
    Zhang, Yanshi
    Huang, Haomin
    Ye, Daiqi
    Tu, Xin
    Wu, Junliang
    CATALYSIS TODAY, 2024, 426