Atmospheric plasma generates oxygen atoms as oxidizing species in aqueous solutions

被引:105
作者
Hefny, Mohamed Mokhtar [1 ,3 ]
Pattyn, Cedric [1 ]
Lukes, Petr [2 ]
Benedikt, Jan [1 ]
机构
[1] Ruhr Univ Bochum, Res Dept Plasmas Complex Interact, D-44780 Bochum, Germany
[2] Inst Plasma Phys CAS, Vvi, Slovankou 3, Prague 18200, Czech Republic
[3] Future Univ Egypt, Dept Basic Sci, Fac Engn & Technol, Cairo, Egypt
关键词
atmospheric pressure plasma; transport of reactive species; reactive oxygen species; aqueous phase chemistry; plasma and liquids; phenol aqueous chemistry; PRESSURE PLASMA; RATE CONSTANTS; DISCHARGE; INACTIVATION; WATER; KERATINOCYTES; RADIATION; BREAKDOWN; PHENOL; O(P-3);
D O I
10.1088/0022-3727/49/40/404002
中图分类号
O59 [应用物理学];
学科分类号
摘要
A remote microscale atmospheric pressure plasma jet (mu APPJ) with He, He/H2O, He/O-2, and He/O-2/H2O gas mixtures was used to study the transport of reactive species from the gas phase into the liquid and the following aqueous phase chemistry. The effects induced by the mu APPJ in water were quantitatively studied using phenol as a chemical probe and by measuring H2O2 concentration and pH values. These results were combined with the analysis of the absolute densities of the reactive species and the modeling of convective/diffusion transport and recombination reactions in the effluent of the plasma jet. Additionally, modified plasma jets were used to show that the role of emitted photons in aqueous chemistry is negligible for these plasma sources. The fastest phenol degradation was measured for the He/O-2 plasma, followed by He/H2O, He/O-2/H2O, and He plasmas. The modeled quantitative flux of O atoms into the liquid in the He/O-2 plasma case was highly comparable with the phenol degradation rate and showed a very high transfer efficiency of reactive species from the plasma into the liquid, where more than half of the O atoms leaving the jet nozzle entered the liquid. The results indicate that the high oxidative effect of He/O-2 plasma was primarily due to solvated O atoms, whereas OH radicals dominated the oxidative effects induced in water by plasmas with other gas mixtures. These findings help to understand, in a quantitative way, the complex interaction of cold atmospheric plasmas with aqueous solutions and will allow a better understanding of the interaction of these plasmas with water or buffered solutions containing biological macromolecules, microorganisms, or even eukaryotic cells. Additionally, the mu APPJ He/O-2 plasma source seems to be an ideal tool for the generation of O atoms in aqueous solutions for any future studies of their reactivity.
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页数:13
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