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Study on the System for Separating Sulfurfrom Flue Gas and Dust

Study on the System for Separating Sulfur from Flue Gas and Dust
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摘要 This paper describes the structure of the system for separating sulfur from flue gas and dust. In the paper, the velocities of turbulent flow and laminar flow inside the tower, the total of liquid membrance, and the additional flow of rotation fogged fluid are calculated, and the separation of rotation air-solid affected by tower is analyzed. The velocity distribution in quasi free vortex area is obtained from experiment. The minimum separated particle diameter is computed. The paper also studies the chemical reactions of flue gas containing sulfide with the dynamic fogged sulfur separating agent and discusses the main factors related to the effect of separating sulfur and dust. At last, the applications of separating sulfur in industrial stove and collecting dust in environmental engineering are introduced. This paper describes the structure of the system for separating sulfur from flue gas and dust. In the paper, the velocities of turbulent flow and laminar flow inside the tower, the total of liquid membrance, and the additional flow of rotation fogged fluid are calculated, and the separation of rotation air-solid affected by tower is analyzed. The velocity distribution in quasi free vortex area is obtained from experiment. The minimum separated particle diameter is computed. The paper also studies the chemical reactions of flue gas containing sulfide with the dynamic fogged sulfur separating agent and discusses the main factors related to the effect of separating sulfur and dust. At last, the applications of separating sulfur in industrial stove and collecting dust in environmental engineering are introduced.
出处 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2000年第4期73-79,共7页 系统工程与电子技术(英文版)
基金 This project was supported by Guangdong Provincial Science and Technology Foundation (No. 980343).
关键词 DUST Flue gases Laminar flow Liquid membranes Particle size analysis SEPARATION Turbulent flow Dust Flue gases Laminar flow Liquid membranes Particle size analysis Separation Turbulent flow
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