Atomic Oxygen Maximization in High-Voltage Pulsed Cold Atmospheric Plasma Jets

被引:20
|
作者
Georgescu, Nicolae [1 ]
Lungu, Cristian P.
Lupu, Andreea Roxana
Osiac, Mariana [2 ]
机构
[1] Natl Inst Laser Plasma & Radiat Phys, Plasma Phys & Nucl Fus Lab, Bucharest 077125, Romania
[2] Univ Craiova, Craiova 200585, Romania
关键词
Atomic oxygen; cold atmospheric plasma jets; pulsed high voltage;
D O I
10.1109/TPS.2010.2070811
中图分类号
O35 [流体力学]; O53 [等离子体物理学];
学科分类号
070204 ; 080103 ; 080704 ;
摘要
This paper presents a new device generating high-voltage pulsed cold atmospheric plasma jets. With these plasmas, the quantity of atomic oxygen (and, accordingly, the chemical activity) is a lot higher than that in previous researches. The main characteristic of the new device is the usage of three tubular needle-type electrodes connected in parallel. By applying high-voltage pulses (with 20-30-kV amplitude, duration of hundreds of nanoseconds, and hundreds of pulses per second), three independent discharges are formed in the discharge room. The plasma-forming gas is He, with a low quantity of oxygen introduced through the high-voltage electrodes. Each discharge has an optimal percentage of 0.5% vol. O-2 in He, which maximizes the quantity of atomic oxygen in the plasma. The plasmas of the three discharges unite to a single jet though, which contains a quantity of atomic oxygen that is a lot higher than that of the plasma of each discharge. The emission spectra of the plasma jets show the maximization of the intensity of the O I 777 nm line when a concentration of 1.5% vol. O-2 in He (three times higher than so far) is introduced in the plasma-forming gas.
引用
收藏
页码:3156 / 3162
页数:7
相关论文
共 50 条
  • [21] Practical Design of a High-Voltage Pulsed Power Supply Implementing SiC Technology for Atmospheric Pressure Plasma Reactors
    Kolek, Jacek
    Holub, Marcin
    APPLIED SCIENCES-BASEL, 2019, 9 (07):
  • [22] The Interactions of Two Cold Atmospheric Plasma Jets
    汤道坦
    任春生
    王德真
    聂秋月
    Plasma Science and Technology, 2009, (03) : 293 - 296
  • [23] The Interactions of Two Cold Atmospheric Plasma Jets
    汤道坦
    任春生
    王德真
    聂秋月
    Plasma Science and Technology, 2009, 11 (03) : 293 - 296
  • [24] The Interactions of Two Cold Atmospheric Plasma Jets
    Tang Daotan
    Ren Chunsheng
    Wang Dezhen
    Nie Qiuyue
    PLASMA SCIENCE & TECHNOLOGY, 2009, 11 (03) : 293 - 296
  • [25] Bacterial inactivation by high-voltage atmospheric cold plasma: influence of process parameters and effects on cell leakage and DNA
    Lu, H.
    Patil, S.
    Keener, K. M.
    Cullen, P. J.
    Bourke, P.
    JOURNAL OF APPLIED MICROBIOLOGY, 2014, 116 (04) : 784 - 794
  • [26] Effect of High-Voltage Atmospheric Cold Plasma Treatment on Germination and Heavy Metal Uptake by Soybeans (Glycine max)
    Mahanta, Shikhadri
    Habib, Mohammad Ruzlan
    Moore, Janie McClurkin
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2022, 23 (03)
  • [27] Reduction of Aflatoxin in Corn by High Voltage Atmospheric Cold Plasma
    Hu Shi
    Klein Ileleji
    Richard L. Stroshine
    Kevin Keener
    Jeanette L. Jensen
    Food and Bioprocess Technology, 2017, 10 : 1042 - 1052
  • [28] Cold atmospheric pressure plasma jets as sources of singlet delta oxygen for biomedical applications
    Sousa, J. S.
    Niemi, K.
    Cox, L. J.
    Algwari, Q. Th
    Gans, T.
    O'Connell, D.
    JOURNAL OF APPLIED PHYSICS, 2011, 109 (12)
  • [29] Reduction of Aflatoxin in Corn by High Voltage Atmospheric Cold Plasma
    Shi, Hu
    Ileleji, Klein
    Stroshine, Richard L.
    Keener, Kevin
    Jensen, Jeanette L.
    FOOD AND BIOPROCESS TECHNOLOGY, 2017, 10 (06) : 1042 - 1052
  • [30] Pulsed high-voltage discharge plasma for degradation of phenol in aqueous solution
    Chen, Yin-Sheng
    Zhang, Xin-Sheng
    Yuan, Wei-Kang
    Jingxi Huagong/Fine Chemicals, 2002, 19 (03):