Yan Jin-pei, Yang Lin-jun, Zhang Xia, Sun Lu-juan, Zhang Yu, Shen Xiang-lin
School of Energy and Environment, Southeast University, Nanjing 210096, China.
Huan Jing Ke Xue. 2008 Dec;29(12):3337-41.
The influence of two methods of gas moisture conditioning on removal efficiency of PM2.5 from coal combustion with addition of atomized droplets and steam was investigated. The particles size distribution and number concentration were measured in real time by electrical low pressure impactor (ELPI). The results show that collection efficiency of PM2.5 from coal combustion can be highly improved with steam condensational enlargement. Particle stage collection efficiency increases with the particles, especially for those smaller than 0.3 microm. The separation efficiency can be improved by 60% with the size of particles increasing from 0.03 microm to 0.3 microm for 0.1 kg/m3 of steam addition. The removal efficiency is independent of the gas temperature at the inlet of conditioning chamber for steam addition. But it increases with the gas temperature obviously for atomized droplets addition, which can be improved by 30% with increasing gas temperature from 136 degrees C to 256 degrees C. High removal efficiency of PM2.5 from coal combustion can be obtained with atomized droplets evaporation in hot flue gas except for steam addition.
研究了两种气体湿度调节方法对添加雾化液滴和蒸汽的燃煤中PM2.5去除效率的影响。采用低压冲击器(ELPI)实时测量颗粒尺寸分布和数量浓度。结果表明,蒸汽冷凝增大可显著提高燃煤中PM2.5的捕集效率。颗粒分级捕集效率随颗粒增大而增加,尤其是对于小于0.3微米的颗粒。对于添加量为0.1kg/m3的蒸汽,随着颗粒尺寸从0.03微米增加到0.3微米,分离效率可提高60%。对于添加蒸汽的情况,去除效率与调节室入口处的气体温度无关。但对于添加雾化液滴的情况,去除效率随气体温度显著增加,随着气体温度从136℃升高到256℃,去除效率可提高30%。除添加蒸汽外,在热烟气中雾化液滴蒸发也可获得较高的燃煤中PM2.5去除效率。