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PM2.5 Emission Reduction by Technical Improvement in a Typical Coal-Fired Power Plant in China

机译:通过技术改进减少中国典型燃煤电厂的PM2.5排放

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To investigate PM2.5 reduction by technical improvement in typical Chinese coal-fired power plants, two units built in different time with different particulate matter (PM) control technologies but with the same coal-fired boiler type were selected to characterize the concentrations of PM2.5 generated and emitted from coal-fired power plants. We found that significant benefit of PM2.5 emission reduction was achieved by technological improvement. Due to the increase in the installed capacity and the application of low NOx burner alone, PM2.5 emission factor without adopting other air pollution control devices decreased from 0.153 kg t–1 (the 100 MW unit) to 0.123 kg t–1 (the 300 MW unit). With the help of an improved electrostatic precipitator (ESP) of which removal efficiency increased from 76.4% to 97.5%, PM2.5 emission factor further decreased from 0.014 kg t–1 (the unit with a normal ESP) to 0.003 kg t–1 (the unit with a cold-side ESP and a wet flue gas desulphurization (WFGD)). However, the application of flue gas denitrification and desulfurization devices may alter PM2.5 compositions and their emissions. For instance, the installation of a WFGD was found to largely increase the emissions of water-soluble ions in PM2.5 (e.g., SO42–, Ca2+, and NH4+).
机译:为了研究典型的中国燃煤电厂通过技术改进而减少的PM2.5,选择了两个在不同时间建造的具有不同颗粒物(PM)控制技术但具有相同燃煤锅炉类型的装置来表征PM2的浓度.5燃煤电厂的产生和排放。我们发现,通过技术改进可以实现PM2.5减排的显着效益。由于装机容量的增加和仅采用低NOx燃烧器的应用,未采用其他空气污染控制装置的PM2.5排放因子从0.153 kg t-1(100 MW机组)降至0.123kg t-1( 300 MW机组)。借助改进的静电除尘器(ESP),其去除效率从76.4%提高到97.5%,PM2.5排放因子进一步从0.014 kg t-1(具有正常ESP的装置)降低到0.003 kg t-1 (带有冷侧ESP和湿法烟气脱硫(WFGD)的装置)。但是,烟气脱硝和脱硫装置的应用可能会改变PM2.5的成分及其排放。例如,发现安装WFGD会大大增加PM2.5中水溶性离子的排放(例如SO42-,Ca2 +和NH4 +)。

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