Jump to main content
US EPA
United States Environmental Protection Agency
Search
Search
Main menu
Environmental Topics
Laws & Regulations
About EPA
Health & Environmental Research Online (HERO)
Contact Us
Print
Feedback
Export to File
Search:
This record has one attached file:
Add More Files
Attach File(s):
Display Name for File*:
Save
Citation
Tags
HERO ID
4174532
Reference Type
Journal Article
Title
Self-consistent plasma chemistry model for surface microdischarge in humid air including effects of ohmic heating and gas flow
Author(s)
Yi, C; Yoon, SY; Eom, S; Park, S; Kim, SB; Ryu, S; Yoo, SukJae
Year
2017
Is Peer Reviewed?
1
Journal
Plasma Sources Science and Technology
ISSN:
0963-0252
EISSN:
1361-6595
Volume
26
Issue
10
DOI
10.1088/1361-6595/aa8d4e
Web of Science Id
WOS:000412274600002
Abstract
A numerical model is presented for surface microdischarges (SMDs) in flowing humid air at atmospheric pressure, to investigate the effects of the direct ohmic heating of gases in the discharge layer, and the transports of heat and particles by gas flow. Using a simplified configuration of heat transfer and gas flow, the proposed model calculated not only the densities of neutral species but also the temperatures of gases as time dependent variables. The calculated dynamics for various reactive oxygen and nitrogen species showed reasonable agreement with the experimental results obtained by Fourier transformed infrared absorption spectroscopy, while the calculated dynamics without ohmic heating of gases in the discharge layer showed significant disagreement. These results imply that local ohmic heating of the thin discharge layer by the microdischarge itself considerably affected the rate constants of the temperature dependent chemical reactions. The dynamics of the neutral species were also affected by gas flow, both directly through particle transport, and indirectly through cooling. Accordingly, to properly simulate the dynamics of reactive neutral species in SMDs, plasma chemistry models should treat plasmas as sources of both particles and heat which can be deliberately transported by gas flow.
Keywords
atmospheric plasmas; surface microdischarge; global model
Tags
NAAQS
•
ISA-Ozone (2020 Final Project Page)
Literature Search Results
Literature Search - Excluded
Keyword Search Excluded
Home
Learn about HERO
Using HERO
Search HERO
Projects in HERO
Risk Assessment
Transparency & Integrity