宋畅, 尹武昌, 余学海, 靳旺宗, 顾永正, 陈凌云, 李朋, 王家伟, 汪涛, 吴华成, 张永生. 1000MW近零排放燃煤机组细颗粒物及SO3排放和分布特征[J]. 中国电机工程学报, 2022, 42(5): 1867-1874. DOI: 10.13334/j.0258-8013.pcsee.210162
引用本文: 宋畅, 尹武昌, 余学海, 靳旺宗, 顾永正, 陈凌云, 李朋, 王家伟, 汪涛, 吴华成, 张永生. 1000MW近零排放燃煤机组细颗粒物及SO3排放和分布特征[J]. 中国电机工程学报, 2022, 42(5): 1867-1874. DOI: 10.13334/j.0258-8013.pcsee.210162
SONG Chang, YIN Wuchang, YU Xuehai, JIN Wangzong, GU Yongzheng, CHEN Lingyun, LI Peng, WANG Jiawei, WANG Tao, WU Huacheng, ZHANG Yongsheng. Emission and Distribution Characteristics of Fine Particulate Matter and SO3 in 1000MW Near-zero Emission Coal-fired Unit[J]. Proceedings of the CSEE, 2022, 42(5): 1867-1874. DOI: 10.13334/j.0258-8013.pcsee.210162
Citation: SONG Chang, YIN Wuchang, YU Xuehai, JIN Wangzong, GU Yongzheng, CHEN Lingyun, LI Peng, WANG Jiawei, WANG Tao, WU Huacheng, ZHANG Yongsheng. Emission and Distribution Characteristics of Fine Particulate Matter and SO3 in 1000MW Near-zero Emission Coal-fired Unit[J]. Proceedings of the CSEE, 2022, 42(5): 1867-1874. DOI: 10.13334/j.0258-8013.pcsee.210162

1000MW近零排放燃煤机组细颗粒物及SO3排放和分布特征

Emission and Distribution Characteristics of Fine Particulate Matter and SO3 in 1000MW Near-zero Emission Coal-fired Unit

  • 摘要: 针对国华寿光电厂2号1000MW近零排放燃煤机组,在100%、45%负荷和不同NOx排放浓度下,对烟气全流程颗粒物和SO3浓度进行现场采样测试,研究了分级颗粒物中水溶性离子含量分布,并给出了前体物SO3的排放特征。结果表明:不同工况下PM10和PM2.5排放浓度分别不超过0.92mg/m3和0.24mg/m3;随着负荷的降低,颗粒物质量和数量浓度都出现下降,但粒径分布并未明显变化;随着NOx排放浓度上升,选择性催化还原(selective catalytic reduction,SCR)后和电除尘(electrostatic precipitator,ESP)后部分粒径段颗粒物浓度出现下降,尤其是ESP后0.006~0.0138μm、0.0553~5.980μm粒径段的变化趋势较为明显。SCR前后PM2.5中水溶性离子质量占比约4%,以Ca2+和\textSO_4^2 - 为主,各粒径段质量分布相对均匀;湿式电除尘(wet electrostatic precipitator,WESP)前后PM2.5中水溶性离子质量占比约39.5%,以Mg2+、\textSO_4^2 - 、NH4+为主,在 < 0.2μm粒径段中富集,不同负荷下烟气中SO3在烟道沿程上的迁移规律基本一致,SCR和ESP会导致SO3浓度增加,WFGD和WESP对SO3具有吸收作用,其排放浓度为1.2~1.9mg/m3,综合脱除效率为45.2%~65.1%。

     

    Abstract: Emission characteristics of fine particles and SO3 were studied in Guohua Shouguang Power Plant No. 2 1000MW ultra-low emission coal-fired unit under 100%, 45% load and different NOx emission concentration, the distribution of water-soluble ion content in classified particles and the concentration of precursor SO3 were studied. The results show that the emission concentration of PM10 and PM2.5 under 100% and 45% load does not exceed 0.92mg/m3 and 0.24mg/m3, respectively. With the decrease of load, the quality and quantity concentration of particulate matter decreased, but the particle size distribution did not change significantly. As the NOx emission concentration increased, the concentration of particulate matter in some particle size decreased after SCR and ESP, especially the 0.006~0.0138μm, 0.0553~5.980μm particle size range after ESP. The water-soluble ions in the particles before and after SCR accounted for about 4% of the total mass, mainly contain Ca2+ and \textSO_4^2 - ; which increased to 39.5% before and after WESP, mainly contain Mg2+, \textSO_4^2 - , NH4+ and enriched in particles < 0.2μm. The migration of SO3 in flue gas under different loads is basically the same. SCR and ESP will increase the concentration of SO3, WFGD and WESP have an absorption effect on SO3, and their emission concentration is 1.2~1.9mg/m3. The comprehensive removal efficiency is 45.2%~65.1%.

     

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