Hybrid Dielectric Barrier Discharge Reactor: Characterization for Ozone Production

被引:3
|
作者
Korzec, Dariusz [1 ]
Freund, Florian [1 ]
Baeuml, Christian [1 ]
Penzkofer, Patrik [1 ]
Nettesheim, Stefan [1 ]
机构
[1] Relyon Plasma GmbH, Osterhofener Str 6, D-93055 Rgensburg, Germany
关键词
cold atmospheric pressure plasma (CAPP); dielectric barrier discharge (DBD); ozone; reactive oxygen-nitrogen species (RONS); Peltier cooling; pulse-width modulation (PWM); ABSORPTION CROSS-SECTIONS; SURFACE DISCHARGE; GENERATION; OXYGEN; AIR; MICRODISCHARGES; GAS; DECOMPOSITION; SPECTROSCOPY; PERFORMANCE;
D O I
10.3390/plasma7030031
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
The generation of ozone by dielectric barrier discharge (DBD) is widely used for water and wastewater treatment, the control of catalytic reactions, and surface treatment. Recently, a need for compact, effective, and economical ozone and reactive oxygen-nitrogen species (RONS) generators for medical, biological, and agricultural applications has been observed. In this study, a novel hybrid DBD (HDBD) reactor fulfilling such requirements is presented. Its structured high-voltage (HV) electrode allows for the ignition of both the surface and volume microdischarges contributing to plasma generation. A Peltier module cooling of the dielectric barrier, made of alumina, allows for the efficient control of plasma chemistry. The typical electrical power consumption of this device is below 30 W. The operation frequency of the DBD driver oscillating in the auto-resonance mode is from 20 to 40 kHz. The specific energy input (SEI) of the reactor was controlled by the DBD driver input voltage in the range from 10.5 to 18.0 V, the Peltier current from 0 to 4.5 A, the duty cycle of the pulse-width modulated (PWM) power varied from 0 to 100%, and the gas flow from 0.5 to 10 SLM. The operation with oxygen, synthetic air, and compressed dry air (CDA) was characterized. The ultraviolet light (UV) absorption technique was implemented for the measurement of the ozone concentration. The higher harmonics of the discharge current observed in the frequency range of 5 to 50 MHz were used for monitoring the discharge net power.
引用
收藏
页码:585 / 615
页数:31
相关论文
共 50 条
  • [1] A new hybrid surface-volume dielectric barrier discharge reactor for ozone generation
    Nassour, Kamel
    Brahami, Mostefa
    Nemmich, Said
    Hammadi, Nacera
    Tilmatine, Amar
    Zouzou, Noureddine
    2015 51ST IEEE INDUSTRY APPLICATIONS SOCIETY ANNUAL MEETING, 2015,
  • [2] New Hybrid Surface-Volume Dielectric Barrier Discharge Reactor for Ozone Generation
    Nassour, Kamel
    Brahami, Mostefa
    Nemmich, Said
    Hammadi, Nacera
    Zouzou, Noureddine
    Tilmatine, Amar
    IEEE TRANSACTIONS ON INDUSTRY APPLICATIONS, 2017, 53 (03) : 2477 - 2484
  • [3] Characterization of surface dielectric barrier discharge influenced by intermediate frequency for ozone production
    Abdelaziz, Ayman A.
    Ishijima, Tatsuo
    Seto, Takafumi
    Osawa, Naoki
    Wedaa, Hassan
    Otani, Yoshio
    PLASMA SOURCES SCIENCE & TECHNOLOGY, 2016, 25 (03):
  • [4] Study of ozone generation in an atmospheric dielectric barrier discharge reactor
    Yao, Shuiliang
    Wu, Zuliang
    Han, Jingyi
    Tang, Xiujuan
    Jiang, Boqiong
    Lu, Hao
    Yamamoto, Sin
    Kodama, Satoshi
    JOURNAL OF ELECTROSTATICS, 2015, 75 : 35 - 42
  • [5] Dielectric Barrier Discharge Plasma Reactor Analysis as Ozone Generator
    Nur, Muhammad
    Restiwijaya, Maryam
    Winarni, Tri Agustina
    2014 1ST INTERNATIONAL SYMPOSIUM ON TECHNOLOGY MANAGEMENT AND EMERGING TECHNOLOGIES (ISTMET 2014), 2014, : 129 - 132
  • [6] Ozone Production in a Dielectric Barrier Discharge with Ultrasonic Irradiation
    Drews, Joanna
    Kusano, Yukihiro
    Leipold, Frank
    Bardenshtein, Alexander
    Krebs, Niels
    OZONE-SCIENCE & ENGINEERING, 2011, 33 (06) : 483 - 488
  • [7] Efficiency of Ozone Production in Coplanar Dielectric Barrier Discharge
    T. Homola
    B. Pongrác
    M. Zemánek
    M. Šimek
    Plasma Chemistry and Plasma Processing, 2019, 39 : 1227 - 1242
  • [8] Efficiency of Ozone Production in Coplanar Dielectric Barrier Discharge
    Homola, T.
    Pongrac, B.
    Zemanek, M.
    Simek, M.
    PLASMA CHEMISTRY AND PLASMA PROCESSING, 2019, 39 (05) : 1227 - 1242
  • [9] Planar atmospheric pressure dielectric barrier discharge for ozone production
    N. N. Morgan
    A. Metawa
    A. Garamoon
    Indian Journal of Physics, 2011, 85 : 1631 - 1642
  • [10] Characteristics of dielectric barrier discharge and ozone production in synthetic air
    Xie, Linjie
    Yuan, Dingkun
    Jin, Chenyang
    Xu, Haixiang
    Li, Yunchao
    Wei, Linsheng
    Wu, Weitian
    Ling, Zhongqian
    VACUUM, 2024, 226