Experimental Study of Electrode of Flue Gas Desulphurization by Discharge Corona Plasma

Jun He, M. Bai, Lijun Lin
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引用次数: 2

Abstract

It is one of the focuses which are paid wide attention in the environmental protection field that the advanced and feasible desulphurization technologies are studied. Desulphurization technology by corona discharge is a novel and promising dry process for flue gas treatment. In flue gas desulphurization by corona discharge, the discharge characteristic of four electrode in direct current power and pulsed power were studied on the basis of desulphurization tests. It is resulted that under the same condition, desulphurization efficiency of pulsed power exceeds that of direct current power. By contrast ranking discharge characteristic of four electrodes, desulphurization efficiency of nozzle electrode is the first, sawtooth electrode is the second, spinous electrode is the third,the star electrode is the fourth. The reason is that discharge characteristic of electrodes lies on curvature radius. It is showed that desulphurization efficiency of ammonia coming in reactor from nozzle electrode is higher than that from pipe of fuel entrance.
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放电电晕等离子体烟气脱硫电极的实验研究
研究先进可行的脱硫技术是目前环保领域广泛关注的热点之一。电晕放电脱硫技术是一种新型的、有发展前途的干法烟气处理技术。在电晕放电烟气脱硫试验的基础上,研究了四种电极在直流功率和脉冲功率下的放电特性。结果表明,在相同条件下,脉冲功率的脱硫效率高于直流功率。通过对四种电极放电特性的对比排名,喷嘴电极的脱硫效率最高,锯齿电极次之,棘电极第三,星形电极第四。究其原因,电极的放电特性取决于曲率半径。结果表明,从喷嘴电极进入反应器的氨的脱硫效率高于从燃料入口管道进入反应器的氨的脱硫效率。
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