Experimental Investigation on Flue Gas Desulfurization by Electrostatic Spray

Wang Zhentao, Luo Tiqian
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引用次数: 5

Abstract

The enhancement of SO2 absorption efficiencies in a wet flue gas desulfuriztion system are investigated and analyzed by adopting electrostatic spray. The SO2 absorption efficiencies with different liquid to gas ratios, Ca/S ratios and electrostatic voltages, are compared. The experiment data indicate an increment of 5-10% in SO2 removal efficiency could be obtained; the efficiency increases with the liquid to gas ratio, Ca/S ratio and electrostatic voltages adding, and the trend of increasing gradually becomes slow and stop. The theoretical analyses on WFGD by charged spray are carried out based on the electrostatic spray, double film, and reaction face theory. The analysis show that the charging droplets could advance the surface absorption characteristics, add the Ca2+ concentration on the droplets surface, minishing of droplets surface tension could reduce the mass transfer resistance between the droplets and flue gas. At the same time, droplets electrification and non-excess charge polarization enhance the mass transfer impulse force of droplets absorption SO2. Moreover, the charging droplets producing the second atomization could minish the droplets diameter and add the reacting surface, the droplets could distribute uniformity in the tower for the droplets provided with the same polarity charge. The SO2 absorption efficiency increasing is the complicated course under the above important factors.
静电喷雾法烟气脱硫试验研究
对采用静电喷雾法提高湿法烟气脱硫系统SO2吸收效率进行了研究和分析。比较了不同液气比、Ca/S比和静电电压对SO2的吸收效率。实验数据表明,脱硫效率可提高5 ~ 10%;效率随液气比、Ca/S比和静电电压的增大而增大,且增大的趋势逐渐变缓并停止。基于静电喷雾理论、双膜理论和反应面理论,对带电喷雾脱硫进行了理论分析。分析表明,充电液滴可以提高液滴的表面吸收特性,增加液滴表面Ca2+浓度,减小液滴表面张力可以减小液滴与烟气之间的传质阻力。同时,液滴的通电和非过量电荷极化增强了液滴吸收SO2的传质冲力。此外,产生二次雾化的充电液滴可以减小液滴直径,增加反应表面,对于具有相同极性电荷的液滴,可以使液滴在塔内分布均匀。SO2吸收效率的提高是在上述重要因素作用下的一个复杂过程。
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