This research focuses on the interaction between liquid electrode (water) and atmospheric discharge streamers in air. It elucidates water surface deformations due to electrohydrodynamic effects in high-voltage discharge-distilled water interaction. The aim is to comprehensively study processes in th...

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Main Authors: Aiymgul Toremurat, Azamat Ashirbek, Ainur Akildinova, Sagi Orazbayev
Formato: Artigo
Acesso em linha:https://doaj.org/article/29bf3a92486c4bf8868f3cdd1c830f7f
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author Aiymgul Toremurat
Azamat Ashirbek
Ainur Akildinova
Sagi Orazbayev
author_facet Aiymgul Toremurat
Azamat Ashirbek
Ainur Akildinova
Sagi Orazbayev
date_str_mv 2024-12-01T00:00:00Z
description This research focuses on the interaction between liquid electrode (water) and atmospheric discharge streamers in air. It elucidates water surface deformations due to electrohydrodynamic effects in high-voltage discharge-distilled water interaction. The aim is to comprehensively study processes in the water layer under electrical discharges, with research areas covering discharge parameter measurement, water surface deformation control, and electrode change analysis. The study holds scientific significance in enhancing understanding of electrohydrodynamic effects and plasma-liquid interaction mechanisms. Practically, it has potential applications in water treatment, liquid purification, and materials science. Research methods involve analyzing electrical characteristics of the discharge and surface properties of a metal grounded electrode in water. Key results show water surface deformation, electrolysis, and discharge electrical property changes at a fixed liquid thickness, characterizing plasma-liquid interaction dynamics and enabling optimization of related technologies. The results can enhance water treatment and purification, assist in new material and coating development. In water treatment and liquid purification, they can boost pollutant decomposition via plasma and electrolysis. In materials science, they can guide new anticorrosive coating development on metals by studying oxidation and deposition under plasma discharge. The data also benefits other plasma-technology-related fields.
doi_str 10.26577/phst2024v11i2b08
format Article
id oai_oai_doaj.org_article_29bf3a92486c4bf8868f3cdd1c830f7f
issn_str_mv 2409-6121
2522-1361
language_str_mv EN
oai_datestamp_str 2025-01-01T15:33:54Z
oai_identifier_str oai:doaj.org/article:29bf3a92486c4bf8868f3cdd1c830f7f
publisher_str Al-Farabi Kazakh National University
relation_str_mv https://phst.kaznu.kz/index.php/journal/article/view/409
https://doaj.org/toc/2409-6121
https://doaj.org/toc/2522-1361
source_str JOURNAL_A
source_txt Physical Sciences and Technology, Vol 11, Iss 3-2 (2024)
spellingShingle Interaction of atmospheric pressure plasma with a liquid electrode
Aiymgul Toremurat
Azamat Ashirbek
Ainur Akildinova
Sagi Orazbayev
subject_str_mv Technology (General)
T1-995
Physics
QC1-999
title Interaction of atmospheric pressure plasma with a liquid electrode
type_str article
url https://doaj.org/article/29bf3a92486c4bf8868f3cdd1c830f7f