Title :
Two-stage-type electrostatic precipitator re-entrainment phenomena under diesel flue gases
Author :
Zukeran, Akinori ; Ikeda, Yasushi ; Ehara, Yoshiyasu ; Matsuyama, Minoru ; Ito, Tairo ; Takahashi, Takeo ; Kawakami, Hitomi ; Takamatsu, Takeshi
Author_Institution :
Dept. of Electr. & Electron. Eng., Musashi Inst. of Technol., Tokyo, Japan
Abstract :
One of the applications of the electrostatic precipitator (ESP) is the cleaning of air to increase the visibility index in highway tunnels. Particles floating in air in highway tunnels are mainly carbon. Collection efficiency of a large particle diameter in an ESP often decreases when the ESP collects carbon particles which have low electric resistance. Collection efficiency often becomes negative in an experimental ESP. The negative collection efficiency means that the particle concentration flowing downstream is greater than that upstream in the ESP. This phenomenon is explained as the re-entrainment of particles. In this paper, experiments were carried out to investigate the cause of the decrease in efficiency of particle collection of the ESP. The time characteristic of the collection efficiency and the distribution of particle size on the collection electrodes were studied. Experimental results showed that the decrease in the collection efficiency was caused by re-entrainment of particles during the ESP operation. The effect of gas-flow velocity on the collection efficiency of the ESP was also investigated to study the cause of re-entrainment phenomena. The result showed that the re-entrainment phenomena depended on the gas-flow velocity
Keywords :
air pollution control; carbon; electric resistance; electrostatic precipitators; carbon particles; collection efficiency; diesel exhaust particles; diesel flue gases; electrostatic precipitator re-entrainment phenomena; gas-flow velocity; highway tunnels; low electric resistance particles; negative collection efficiency; two-stage electrostatic precipitator; visibility index increase; Carbon dioxide; Cleaning; Electrodes; Electrostatic precipitators; Environmentally friendly manufacturing techniques; Flue gases; Indium tin oxide; Industrial pollution; Industry Applications Society; Road transportation;
Journal_Title :
Industry Applications, IEEE Transactions on