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首页> 外文期刊>International Journal of Economy, Energy and Environment >TSP, PM10 and PM2.5 Distribution Characteristics in the Thermal Power Plants in Korea
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TSP, PM10 and PM2.5 Distribution Characteristics in the Thermal Power Plants in Korea

机译:韩国火电厂的TSP,PM10和PM2.5分布特征

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In this study, the emission characteristics and heavy metal contents of TSP, PM10 and PM2.5 pollutants from three thermal power plants in Korea were investigated and compared to the electric production capacity, type of fuel and sort of air-pollution-control device. For the measurement and analysis, Korean standard test method US EPA method were used. The average concentration of TSP, PM10 and PM2.5 emitted from Plant A were 7.39, 6.16, 4.83 mg/Sm3, Plant B was 5.82, 4.87, 2.35 mg/Sm3 and Plant C was 1.54, 1.40, 10.02 mg/Sm3, respectively. Plant A that uses heavy oil as the main fuel showed higher TSP, PM10 and PM2.5 than Plant B that uses mostly anthracite coal, and plant B showed higher TSP, PM10 and PM2.5 than Plant C that mainly uses bituminous coal. The concentration of fine particles decreased as electricity-production capacity increased. The fractions of PM10 and PM2.5 in TSP were relatively high in tested plants; this result means that more fine particles than coarse particles were emitted from all stacks. The distribution of heavy metals by particle size showed similar trends in all plants. The concentration of Zn and Mn in TSP, PM10 and PM2.5 showed higher than the others in all plants. These results confirm that the content of heavy metals in the particulate matter is influenced by the fuel that the plant uses.
机译:本研究调查了韩国三座火电厂的TSP,PM10和PM2.5污染物的排放特征和重金属含量,并将其与发电能力,燃料类型和空气污染控制装置的种类进行了比较。对于测量和分析,使用韩国标准测试方法US EPA方法。工厂A排放的TSP,PM10和PM2.5的平均浓度分别为5.39、6.16、4.83 mg / Sm3,工厂B的平均浓度分别为1.54、1.40、10.02 mg / Sm3和1。 。使用重油作为主要燃料的工厂A的TSP,PM10和PM2.5高于主要使用无烟煤的工厂B,而工厂B的TSP,PM10和PM2.5高于主要使用烟煤的工厂C。随着发电量的增加,细颗粒的浓度降低。在受试植物中,TSP中PM10和PM2.5的比例较高。这个结果意味着从所有烟囱中排出的细颗粒比粗颗粒更多。在所有植物中,重金属的粒径分布均显示出相似的趋势。在所有植物中,TSP,PM10和PM2.5中锌和锰的浓度均高于其他植物。这些结果证实,颗粒物中重金属的含量受工厂使用的燃料的影响。

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