Wey M Y, Peng C Y, Wu H Y, Chiang B C, Liu Z S
Department of Environmental Engineering, Chung-Hsing University, Taichung, Taiwan, ROC.
Environ Technol. 2002 Jun;23(6):695-705. doi: 10.1080/09593330.2002.9619254.
The spray dryer system was conventionally employed to remove the SOx, NOx, and HCl in the flue gas. However, the removal efficiency of acid gas in the practical incineration flue gas, which contains dust, heavy metals, and acid gas itself, was seldom mentioned in the literature. The alkaline sorbents possess large specific surface that was a main factor on the adsorption of heavy metals and acid gas. Therefore, the primary objective of this study was focused on the effect of different additives on the removal efficiency of acid gas and heavy metals (Cr, Cd and Pb). The mass and element size distribution of heavy metals in fly ash under different additives were also investigated. The results indicated that the removal efficiency of HCl in the spray dryer system was higher than 97.8%. The effects of additives on the removal efficiency of HCl, however, were undistinguished. In the desulfurization process, the highest removal efficiency was 71.3% when the additive of amorphous SiO2 was added in the spray dryer system. The removal efficiency was 66.0% with the additive of CaCl2 and 63.1% without any additives, respectively. It was also found that the spray dryer system could decrease the concentration of metal in fly ash but increase the amount of fly ash. In addition, amorphous SiO2 in the alkaline sorbent tended to increase the adsorption of heavy metal on reactant, because it could enhance the dispersion of alkaline sorbent.
喷雾干燥器系统通常用于去除烟道气中的二氧化硫、氮氧化物和氯化氢。然而,对于实际焚烧烟道气(其中含有粉尘、重金属和酸性气体本身)中酸性气体的去除效率,文献中很少提及。碱性吸附剂具有较大的比表面积,这是其吸附重金属和酸性气体的一个主要因素。因此,本研究的主要目标聚焦于不同添加剂对酸性气体和重金属(铬、镉和铅)去除效率的影响。同时还研究了不同添加剂条件下飞灰中重金属的质量和元素粒径分布。结果表明,喷雾干燥器系统中氯化氢的去除效率高于97.8%。然而,添加剂对氯化氢去除效率的影响并不显著。在脱硫过程中,当在喷雾干燥器系统中添加无定形二氧化硅添加剂时,最高去除效率为71.3%。添加氯化钙添加剂时去除效率为66.0%,不添加任何添加剂时去除效率为63.1%。还发现喷雾干燥器系统可以降低飞灰中金属的浓度,但会增加飞灰的量。此外,碱性吸附剂中的无定形二氧化硅倾向于增加重金属在反应物上的吸附,因为它可以增强碱性吸附剂的分散性。