Electric Field Effect on Soot Formation and Collection from Diffusion Flames

被引:2
|
作者
Abdel-Moniem, N. M. [1 ]
Al Yamany, S. M. [2 ]
Amer, M. A. [1 ]
Fahmy, M. A. [2 ]
机构
[1] Tanta Univ, Dept Phys, Fac Sci, Tanta, Egypt
[2] Atom Energy Author, Natl Ctr Radiat Res & Technol, Cairo, Egypt
来源
关键词
Soot; Nanoparticles of organic carbon; Combustion;
D O I
10.21608/ajnsa.2018.4100.1095
中图分类号
TL [原子能技术]; O571 [原子核物理学];
学科分类号
0827 ; 082701 ;
摘要
The characterization of combustion-formed particulate matter for possible applications as optoelectronic organic materials is studied. A copper probe is inserted at different heights above the burner hole. Probe sampling is followed by collection via particles impactor, containing two main different classes of materials, soot and nanoparticles of organic carbon (NOC). Soot (Carbon) particles are collected from laminar and turbulent diffusion flames by means of a DC electric field in the form of chains and clusters. The great majority of soot particles are found to be positively charged. The I-V characteristics are measured in order to estimate the electrical properties during soot collection. The electric current increases as the collection time increases due to the agglomeration of charged soot particles on the copper probe. It is observed that, the activation energy (Ea) increases with increasing of the probe height (H) till reaching to a maximum value. The mobility of ions for soot particles is decreased with the applied potential and increased with the probe height for the turbulent and laminar diffusion flame. The compositions of soot powder samples are investigated by energy dispersive X-ray pattern (EDX) and the size of the soot particles are calculated by dynamic light scattering (DLS) technique.
引用
收藏
页码:203 / 210
页数:8
相关论文
共 50 条
  • [1] Control of soot emitted from acetylene diffusion flames by applying an electric field
    Saito, M
    Arai, T
    Arai, M
    COMBUSTION AND FLAME, 1999, 119 (03) : 356 - 366
  • [2] Effect of alternating electric field on the combustion and no formation of diffusion flames
    Zhang, Yang
    Zhang, Hai
    Yang, Hai-Rui
    Liu, Qing
    Zhu, Min
    Kung Cheng Je Wu Li Hsueh Pao/Journal of Engineering Thermophysics, 2010, 31 (12): : 2156 - 2158
  • [3] The effect of ammonia on soot formation in ethylene diffusion flames
    WANG QianLong
    YAN ZhiWen
    LI ChaoMin
    CUI YanQing
    WEN MingSheng
    LIU HaiFeng
    YAO MingFa
    Science China(Technological Sciences), 2023, (12) : 3422 - 3438
  • [4] Pressure effect on soot formation in turbulent diffusion flames
    Roditcheva, OV
    Bai, XS
    CHEMOSPHERE, 2001, 42 (5-7) : 811 - 821
  • [5] The effect of ammonia on soot formation in ethylene diffusion flames
    Wang, Qianlong
    Yan, Zhiwen
    Li, Chaomin
    Cui, Yanqing
    Wen, Mingsheng
    Liu, Haifeng
    Yao, Mingfa
    SCIENCE CHINA-TECHNOLOGICAL SCIENCES, 2023, 66 (12) : 3422 - 3438
  • [6] The effect of ammonia on soot formation in ethylene diffusion flames
    QianLong Wang
    ZhiWen Yan
    ChaoMin Li
    YanQing Cui
    MingSheng Wen
    HaiFeng Liu
    MingFa Yao
    Science China Technological Sciences, 2023, 66 : 3422 - 3438
  • [7] The effect of ammonia on soot formation in ethylene diffusion flames
    WANG QianLong
    YAN ZhiWen
    LI ChaoMin
    CUI YanQing
    WEN MingSheng
    LIU HaiFeng
    YAO MingFa
    Science China(Technological Sciences), 2023, 66 (12) : 3422 - 3438
  • [8] The Influences of Electric Fields on Soot Formation and Flame Structure of Diffusion Flames
    Takeyuki Kishi
    Michikata Kono
    JournalofThermalScience, 1993, (04) : 288 - 293
  • [9] SOOT FORMATION FROM GASEOUS FUEL DIFFUSION FLAMES
    HIROYASU, H
    KADOTA, T
    BULLETIN OF THE JSME-JAPAN SOCIETY OF MECHANICAL ENGINEERS, 1981, 24 (188): : 458 - 459
  • [10] Soot Formation in Spherical Diffusion Flames
    Frolov, Sergey M.
    Ivanov, Vladislav S.
    Frolov, Fedor S.
    Vlasov, Pavel A.
    Axelbaum, Richard
    Irace, Phillip H.
    Yablonsky, Grigoriy
    Waddell, Kendyl
    MATHEMATICS, 2023, 11 (02)