Your Location:
Home >
Browse articles >
Improvement in discharge characteristics and energy yield of ozone generation via configuration optimization of a coaxial dielectric barrier discharge reactor
Full Length Article | Updated:2026-01-06
    • Improvement in discharge characteristics and energy yield of ozone generation via configuration optimization of a coaxial dielectric barrier discharge reactor

    • Chinese Journal of Chemical Engineering   Vol. 60, Issue 8, Pages: 61-68(2023)
    • Published:2023

    Scan QR Code

  • configuration optimization of a coaxial dielectric barrier discharge reactor[J]. 中国化学工程学报, 2023, 60(8): 61-68. DOI:

  •  
  •  
icon
The trial reading is over, you can activate your VIP account to continue reading.
Deactivate >
icon
The trial reading is over. You can log in to your account, go to the personal center, purchase VIP membership, and read the full text.
Already a VIP member?
Log in >

0

Views

138

Downloads

0

CSCD

Alert me when the article has been cited
Submit
Tools
Download
Export Citation
Share
Add to favorites
Add to my album

Related Articles

Dielectric barrier discharge coupled with oxygen-vacancy-rich NiO-CeO2 for efficient and low-energy degradation of SF6
Discharge characteristics of coal and extraction residue from direct coal liquefaction in partial fluidization silo
Research on the electrostatic spray characteristics of ethanol/n-butanol blended fuels
Understanding temperature-dependent degradation in proton exchange membrane water electrolyzer: The critical role of porous transport layer
Mechanochemical preparation and properties of B-N doped carbon materials based on calcium carbide

Related Author

Runze Dong
Wenhao Li
Qiyu Yang
Ping Li
Pan Zhang
Lemeng Wang
Dong Fu
Zhen Liu

Related Institution

Hebei Key Lab of Power Plant Flue Gas Multi-Pollutants Control, Department of Environmental Science and Engineering, North China Electric Power University
Department of Energy and Power Engineering, Tsinghua University
National Institute of Clean-and-Low-Carbon Energy
0