李坚, 吕瑞彤, 王川. 碳酸氢钠干法脱硫的实验研究[J]. 北京工业大学学报, 2020, 46(4): 353-359. DOI: 10.11936/bjutxb2019010012
    引用本文: 李坚, 吕瑞彤, 王川. 碳酸氢钠干法脱硫的实验研究[J]. 北京工业大学学报, 2020, 46(4): 353-359. DOI: 10.11936/bjutxb2019010012
    LI Jian, Lü Ruitong, WANG Chuan. Experimental Study on Dry Desulphurization of Sodium Bicarbonate[J]. Journal of Beijing University of Technology, 2020, 46(4): 353-359. DOI: 10.11936/bjutxb2019010012
    Citation: LI Jian, Lü Ruitong, WANG Chuan. Experimental Study on Dry Desulphurization of Sodium Bicarbonate[J]. Journal of Beijing University of Technology, 2020, 46(4): 353-359. DOI: 10.11936/bjutxb2019010012

    碳酸氢钠干法脱硫的实验研究

    Experimental Study on Dry Desulphurization of Sodium Bicarbonate

    • 摘要: 为了促进污染物协同控制和超低排放的实现,简化烟气脱硫除尘工艺,为选择性催化还原法(selective catalytic reduction,SCR)脱硝创造适宜的烟气条件,利用烟气干法脱硫除尘一体化装置,研究了碳酸氢钠干法脱硫的温度、钠硫比(stoichiometric ratio of sodium bicarbonate to sulfur,NSR)、入口SO2质量浓度、NaHCO3粒径和粉尘质量浓度等因素对脱硫效率的影响,对装置的脱硫性能做出评价,最佳脱硫效率达到95%以上.实验结果表明:温度、NSR为主要影响因素,在130~200℃温度范围内,脱硫效率随温度的升高呈先下降后保持稳定的趋势;随着NSR的增大,效率呈先增加后保持稳定的规律;入口SO2的质量浓度为1 000~2 000 mg/m3,脱硫效率随入口质量浓度的增大而有所增加;粒径较小的NaHCO3颗粒脱硫效率更好;烟气中的粉尘在一定程度上能够促进脱硫反应的进行.

       

      Abstract: To promote the realization of coordinated control of pollutants and ultra-low emission, simplify desulfurization and dust removal process and create suitable flue gas conditions for selective catalytic reduction (SCR) denitrification, the effects of various factors on the desulfurization efficiency of sodium bicarbonate dry desulfurization were studied by setting up an integrated device for dry desulfurization and dust removal of flue gas. This report shows that how the factors of the system, such as temperature, the stoichiometric ratio of sodium bicarbonate to sulfur (NSR), the mass concentration of inlet SO2, particle size of sodium bicarbonate and mass concentration of the dust affect the desulfurization efficiency. According to the results, the best removal efficiency approached 95%. As the main factors of dry flue gas desulfurization, the efficiency dropped first and then remained stable with the increase of the temperature within the range of 130-200℃, and rose with the increase of NSR before they were stable. The efficiency increased with the mass concentration of inlet SO2 within the range of 1 000-2 000 mg/m3. In addition, the desulfurizer with a smaller particle size had better desulfurization efficiency. Therefore, the dust in flue gas can promote the desulfurization reaction to some extent.

       

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