hrvatski jezikClear Cookie - decide language by browser settings

Controlling: the composition of plasma-activated water by Cu ions

Kutasi, Kinga; Krstulović, Nikša; Jurov, Andrea; Salamon, Krešimir; Popović, Dean; Milošević, Slobodan (2021) Controlling: the composition of plasma-activated water by Cu ions. Plasma Sources Science and Technology, 30 (4). ISSN 0963-0252

[img] PDF - Published Version - article
Available under License Creative Commons Attribution.

Download (2MB)

Abstract

It is demonstrated that Cu ions can be used to control the ageing of plasma-activated liquids through the Fenton-type reaction, which acts as a competitor to the NO2- + H2O2 + H+ -> products reaction, and thus moderates the recombination of NO2- ions. It is shown that the ageing dynamics is influenced by the type of Cu-ions source used, due to the different ion dissolution dynamics. Using CuNP-colloidal and copper acetate salt solutions, respectively, similar ageing dynamics can be achieved: the lifetime of NO2- can be increased to 10(4) min comparing to 10(2) min obtained in plasma-activated water, while the H2O2 concentration decreases to about half of its initial value. While the treated salt solutions contain the degradation products of the salt compounds, the CuNPs can be filtered out from the plasma-activated colloid (PAC). It is shown that filtration does not influence the concentration of active species, while the ageing of the filtrated PAC depends on the moment of filtration, which determines the concentration of dissolved Cu ions. Using copper foil, the dissolved Cu-ion concentration can be controlled by removing the foil during ageing, and in this way the lifetime of species and the H2O2 concentration can be adjusted. The effect has been validated in the case of two different plasma sources: a surface-wave microwave discharge and a kHz plasma jet, which produce PALs with different [NO2-]/[H2O2] concentration ratio, which is the main governor of the ageing process.

Item Type: Article
Uncontrolled Keywords: plasma-activated colloid ; plasma-activated liquid ; surface-wave microwave discharge ; plasma jet ; laser ablation in liquids
Subjects: NATURAL SCIENCES > Physics
Divisions: Division of Materials Physics
Projects:
Project titleProject leaderProject codeProject type
Dijagnostika Interakcije lasera i hladne plazme-LaCPIDSlobodan MiloševićIP-2013-11-2753HRZZ
Laserska sinteza nanočestica i primjene-LaSyNanoAppNikša Krstulović; Damjan Blažeka; Julio Car; Mario Ščetar; Nino Dimitrov; Ivona Vidić Štrac; Bernarda Damianić; Sanja Ercegović Ražić; Jelena Peran; Lucija Krce; Ivica AvianiIP-2019-04-6418HRZZ
Depositing User: Krešimir Salamon
Date Deposited: 07 May 2026 09:23
URI: https://fulir.irb.hr:/id/eprint/11929
DOI: 10.1088/1361-6595/abf078

Actions (login required)

View Item View Item

Downloads

Downloads per month over past year

Contrast
Increase Font
Decrease Font
Dyslexic Font
Accessibility