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Study on the Generation Characteristics of Dielectric Barrier Discharge Plasmas on Water Surface

Study on the Generation Characteristics of Dielectric Barrier Discharge Plasmas on Water Surface
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摘要 A new contact glow discharge electrode employed in this study. Because of the strong field the electrode and the water surface, glow discharge on the surface of water was designed and strength in the small air gap formed by plasmas were generated and used to treat waste water. The electric field distribution of the designed electrode model was simulated by MAXWELL 3D~ simulation software, and the discharge parameters were measured. Through a series of experiments, we investigated the impact of optimal designs, such as the dielectric of the electrode, immersion depths, and curvature radii of the electrode on the generation characteristics of plasmas. In addition, we designed an equipotential multi-electrode configuration to treat a Methyl Violet solution and observe the discoloration effect. The experimental and simulation results indicate that the designed electrodes can realize glow discharge with a relative low voltage, and the generated plasmas covered a large area and were in stable state. The efficiency of water treatment is improved and optimized with the designed electrodes. A new contact glow discharge electrode employed in this study. Because of the strong field the electrode and the water surface, glow discharge on the surface of water was designed and strength in the small air gap formed by plasmas were generated and used to treat waste water. The electric field distribution of the designed electrode model was simulated by MAXWELL 3D~ simulation software, and the discharge parameters were measured. Through a series of experiments, we investigated the impact of optimal designs, such as the dielectric of the electrode, immersion depths, and curvature radii of the electrode on the generation characteristics of plasmas. In addition, we designed an equipotential multi-electrode configuration to treat a Methyl Violet solution and observe the discoloration effect. The experimental and simulation results indicate that the designed electrodes can realize glow discharge with a relative low voltage, and the generated plasmas covered a large area and were in stable state. The efficiency of water treatment is improved and optimized with the designed electrodes.
出处 《Plasma Science and Technology》 SCIE EI CAS CSCD 2014年第1期26-31,共6页 等离子体科学和技术(英文版)
关键词 water surface PLASMA electrode model dielectric barrier discharge electric field water surface, plasma, electrode model, dielectric barrier discharge, electric field
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参考文献19

  • 1John Foster;Bradley S Sommers;Sarah Nowak Gucker.查看详情[J],IEEE Transactions on Plasma Science20121311.
  • 2Hori Hisao;Yamamoto Ari;Hayakawa Etsuko.查看详情[J],Environmental Science & Technology20052383.
  • 3Sato Masayuki;Ohgiyama Takashi;Clements J S.查看详情[J],IEEE Transactions on Industry Applications1996106.
  • 4Malik M A.查看详情[J],Plasma Sources Science and Technology200326.
  • 5Moriwaki Hiroshi;Takagi Youichi;Tanaka Masanobu.查看详情[J],Environmental Science & Technology20053388.
  • 6Handa Taiki;Minamitani Yasushi.查看详情[J],IEEE Transactions on Plasma Science2009179.
  • 7Burlica Radu;Kirkpatrick Michael J;Bruce R.查看详情[J],Journal of Electrostatics200635.
  • 8Nikiforov Anton Yurievich.查看详情[J],IEEE Transactions on Plasma Science2009872.
  • 9Wang Huijuan;Li Jie;Quan Xie.查看详情[J],Journal of Hazardous Materials2007336.
  • 10Zhang Yi;Zhou Minghua;Hao Xiaolong;Lei Lecheng.查看详情[J],CHEMOSPHERE2007702.

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