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Synergistic Emission Reduction of Particulate Pollutants in Coal-fired Power Plants Using Ultra-low Emission Technology

机译:使用超低排放技术协同减少燃煤发电厂颗粒污染物的减少

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The total particulate matter (TPM) is a crucial indicator when evaluating flue gas emissions from coal-fired units. TPM contains solid and liquid contaminants and condensable particulate matter (CPM), which is mainly composed of sulfate and various anions, cations, and metal ions. This study selected three typical large-capacity coal-fired power plants in Shanghai retrofitted with ultra-low emission technology and monitored their emissions of PM2.5, SO3, and CPM during power generation. The results showed that the plants achieved comprehensive removal rates of 99.689–99.878% and 86.99–92.92% for PM2.5 and SO3, resulting in emitted concentrations of approximately 0.99–1.79 and 1.91–2.50 mg m–3, respectively, which are considerably lower than those associated with the traditional flue gas process. Additionally, a significant decrease in the emitted filterable particulate matter (FPM) caused a simultaneous decrease in CPM. After being equipped with the ultra-low emission technology, the units displayed a 76% reduction in the emitted FPM concentration and a smaller FPM/CPM ratio (1:2 vs. 1:1). The emitted TPM (the sum of CPM and FPM) was reduced by 82%, with an average measured concentration of 7.36 ± 3.56 mg m–3. The values we obtained are representative and provide basic data for environmental assessment and local environmental policy formulation.
机译:当评估燃煤单位的烟气排放时,总颗粒物(TPM)是关键指标。 TPM含有固体和液体污染物和可粘稠的颗粒物(CPM),其主要由硫酸盐和各种阴离子,阳离子和金属离子组成。本研究选择了上海的三种典型的大型大容量燃煤电厂,以外的超低排放技术进行了改造,并在发电期间监测了PM2.5,SO3和CPM的排放。结果表明,该植物达到PM2.5和SO3的综合去除率为99.689-99.878%和86.99-92.92%,产生约0.99-1.79和1.91-2.50 mg M-3的发出浓度,这很大低于与传统烟气过程相关的那些。另外,发射的可滤射颗粒物质(FPM)的显着降低导致CPM同时降低。在配备超低排放技术后,该单元显示出发射的FPM浓度减少76%,FPM / CPM比(1:2与1:1)降低。发射的TPM(CPM和FPM的总和)降低了82%,平均测量浓度为7.36±3.56mg M-3。我们获得的价值观是代表性的,并为环境评估和地方环境政策制定提供基本数据。

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