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大气压放电等离子体射流研究进展 被引量:6

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摘要 大气压放电等离子体射流(APPJ)具有极强的应用前景,在近年来引起了国际上的重大关注,成为气体放电领域的重要研究课题。文章从APPJ装置使用的放电气体类型(惰性气体与非惰性气体)与自身构造原理出发,综述了国内外大气压放电等离子体射流装置的研究进展,给出了现有基于微空心阴极原理APPJ的放电特性及装置改进过程。
出处 《中国高新技术企业》 2013年第34期9-13,共5页 China Hi-tech Enterprises
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参考文献38

  • 1Laroussi M. Sterilization of contaminated matter with an atmospheric pressure plasma[J].IEEE Transactions on Plasma Science,1996,(03):1188-1191.doi:10.1109/27.533129.
  • 2Isbary G,Morfill G,Schmidt H. A first prospective randomized controlled trial to decrease bacterial load using cold atmospheric argon plasma on chronic wounds in patients[J].British Journal of Dermatology,2010,(01):78-82.
  • 3Daeschlein G,Scholz S,Arnold A. In Vitro Activity of Atmospheric Pressure Plasma Jet (APPJ) Plasma Against Clinical Isolates of Demodex Folliculorum[J].IEEE Transactions on Plasma Science,2010,(10):2969-2973.
  • 4Gianchandani Y,Wright S,Eun C. Exploring microdischarges for portable sensing applications[J].Analytical and Bioanalytical Chemistry,2009,(03):559-575.
  • 5Kolb J,Mohamed a a H,Price R. Cold atmospheric pressure air plasma jet for medical applications[J].Applied Physics Letters,2008,(24):241501.
  • 6Mohamed a a H,Kolb J,Schoenbach K. Low temperature, atmospheric pressure, direct current microplasma jet operated in air, nitrogen and oxygen[J].The European Physical Journal D-Atomic Molecular Optical and Plasma Physics,2010,(07):517-522.
  • 7Feng H,Sun P,Chai Y. The interaction of a direct-current cold atmospheric-pressure air plasma with bacteria[J].IEEE Transactions on Plasma Sciences,2009,(01):121-127.doi:10.1109/TPS.2008.2008438.
  • 8Becker K,Schoenbach K,Eden J. Microplasmas and applications[J].Journal of Physics D:Applied Physics,2006,(03):R55-R70.doi:10.1088/0022-3727/39/3/R01.
  • 9Hong Y C,Uhm H S. Air plasma jet with hollow electrodes at atmospheric pressure[J].Physics of Plasmas,2007,(05):053503.
  • 10Hong Y C,Kang W S,Hong Y B. Atmospheric pressure air-plasma jet evolved from microdischarges:Eradication of E. coli with the jet[J].Physics of Plasmas,2009,(12):123502.

二级参考文献42

  • 1潘文霞,孟显,吴承康.直流纯氩层流等离子体射流的长度变化[J].工程热物理学报,2005,26(4):677-679. 被引量:15
  • 2杨超珍,赵伟敏,叶五梅,姚剑鹏.等离子体射流雾滴的荷电特性研究[J].高电压技术,2007,33(2):62-65. 被引量:11
  • 3赵如金,储金宇,王瑞静,吴春笃.低温等离子体催化处理汽车尾气[J].高电压技术,2007,33(2):174-177. 被引量:14
  • 4[1]Breazeal W, Flynn K M and Gwinn E G, 1995 Phys. Rev. E 52 1503
  • 5[2]Ammelt E,Astrov Y A, Purwins H G et al 1997 Phys. Rev. E 55 6731
  • 6[3]Müller I, Punset C, Ammelt E et al 1999 IEEE Trans. Plasma Sci. 27 20
  • 7[4]Dong L F, Li X C, Yin Z Q et al 2001 Chin. Phys. Lett. 18 1380
  • 8Ohyama R, Sakamoto M, Nagai A. Axial plasma density propa gation ofbarrier discharge non-thermal plasmabullets in an at mospheric pressure Argon gas stream[J]. Journal of Physics D :Applied Physics, 2009, 42(10): 105203.
  • 9Xu G M, Ma Y, Zhang G J. DBD plasma jet in atmospheric pressure Argon[J]. IEEE Transactions on Plasma Science, 2008, 36(4) : 1352-1353.
  • 10Nan Jiang, Ailing Ji, Zexian Cao. Atmospheric pressure plasma jets beyond ground electrode as charge overflow in a dielectric barrier discharge setup[J]. Journal of Applied Physics, 2010, 108(3) : 033302.

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