华电技术 ›› 2020, Vol. 42 ›› Issue (9): 56-62.

• 烟气洁净排放 • 上一篇    下一篇

安徽省火电厂超低排放改造对减排成效的影响

  

  1. 国网安徽省电力有限公司电力科学研究院,合肥 230601
  • 出版日期:2020-09-25 发布日期:2020-09-28

Effect of ultra-low emission transformation on emission reduction of thermal power plants in Anhui Province

  1. State Grid Anhui Electric Power Research Institute,Hefei 230601,China
  • Online:2020-09-25 Published:2020-09-28

摘要: 安徽省于2014年开始对辖区内的所有燃煤机组进行超低排放改造,并于2019年年底基本完成。利用改造前后火电机组SO2,NOx,颗粒物(PM)的排放数据,计算3种大气污染物的排放绩效和减排总量,定量研究燃煤电厂超低排放改造的减排成效。结合天气-化学预报(WRF-Chem)空气质量模式,评估火电行业减排对大气质量的改善。结果表明,全省燃煤电厂SO2,NOx,PM的年排放量由2014年的40 174.1,65 947.2,14 683.6 t下降至2019年的12 579.5,23 709.3,1 817.6 t,分别下降了68.7%,64.1%,87.6%。在2种情景下,WRF-Chem模拟结果显示,实施超低排放改造后安徽省大气中SO2,NOx,PM2.5和PM10平均质量浓度分别下降0.41,1.49,1.28,2.07 μg/m3,降幅为4.0%,4.1%,2.7%和2.8%。这表明超低排放改造对大气污染物的减排效果显著,而PM2.5与PM10受到非火电污染源的影响,降幅较低。该研究结果为下一步污染物的治理提供了思路。

关键词: 燃煤电厂, 超低排放改造, 大气污染, WRF-Chem模式, 颗粒物, 节能减排

Abstract: Ultra-low emissions transformation for coal-fired power plants in Anhui Province was made from 2014 and basically completed in 2019. Comparing the emission of SO2, NOx and particulate matter before and after the transformation, the discharge performance and emission reduction of the three pollutants above was calculated and taken as the basis for quantitative study on ultra-low emissions transformation for coal-fired power plants. Taking WRF-Chem model, air quality improvement made by ultra-low emissions transformation was assessed. The results show that the SO2, NOx and particulate matter discharged from coal-fired power plants in Anhui decreased from 40 174.1, 65 947.2 and 14 683.6 t in 2014 to 12 579.5, 23 709.3 and 1 817.6 t in 2019, with reduction ratios of 68.7%,64.1% and 87.6%, respectively. WRF-Chem stimulated the pollutant distribution under two different scenarios, whose results showed that after the ultra-low emission transformation in Anhui Province, the average mass concentrations of SO2, NOx, PM2.5 and PM10 in the atmosphere decreased by around 0.41, 1.49, 1.28 and 2.07 μg/m3, being down by 4.0%, 4.1%, 2.7% and 2.8% roughly. The results show that ultra-low emission transformation has a significant effect on the air pollutant reduction, while PM2.5 and PM10 show a limited reduction affected by non-thermal power sources. The study providing ideas for the further pollutant control.

Key words: coal-fired power plant, ultra-low emissions transformation, air pollution, WRF-Chem, particulate matter, energy conservation and emissions reduction