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Field test of SO3 removal in ultra-low emission coal-fired power plants

机译:超低排放燃煤发电厂中SO3去除的现场试验

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摘要

Under the extensive implementation of ultra-low emission (ULE) facilities in coal-fired power plants of China, sulfur trioxide (SO3) has received increasing attention due to its impact on human health and operation safety of power plants. However, systematic research and evaluation for controlling SO3 emission in various ULE facilities are still lacking. Here, a systematic study was conducted based on 378 in situ performance evaluation tests carried out in 148 coal-fired power plants. The results illustrate that the SO2/SO3 conversion rate of the selective catalytic reduction devices can be controlled within 1% before and after ULE retrofit. Also, the synergistic removal efficiency of SO3 in the low-low-temperature electrostatic precipitator and the wet electrostatic precipitator can be higher than 70%. The removal efficiency of SO3 in the wet limestone-gypsum flue gas desulfurization scrubber is 33-64% before ULE and 31-81% after, and the average efficiency of the double scrubbers is 8.7% higher than that of the single scrubber. Due to the different SO3 removing abilities of various technologies, the overall efficiency of SO3 removal is in the range between 27 and 95% adopting different ULE technical routes. Average concentration of SO3 emission can be decreased by 51.8% after ULE application.
机译:在中国燃煤发电厂的超低排放(ULE)设施的广泛实施下,三氧化硫(SO3)由于其对发电厂的人力健康和运营安全性的影响而受到越来越大。然而,仍然缺乏对控制SO3排放的系统性研究和评估。在这里,基于148个燃煤发电厂的原位性能评估试验进行了系统研究。结果说明选择性催化还原装置的SO2 / SO 3转化率可以在ULE改射之前和之后控制在1%之内。而且,低温静温沉淀器和湿静电除尘器中SO 3的协同除去效率可以高于70%。在湿石灰石 - 石膏烟气脱硫洗涤器中的SO 3中的去除效率为33-64%,31-81%之后,双洗涤器的平均效率高于单个洗涤器的8.7%。由于SO3去除各种技术的能力不同,SO3去除的总效率在27至95%之间采用不同的ULE技术路线。 ULE应用后,SO3排放的平均浓度可下降51.8%。

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