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首页> 外文期刊>Journal of Environmental Radioactivity >The enrichment behavior of natural radionuclides in pulverized oil shale-fired power plants
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The enrichment behavior of natural radionuclides in pulverized oil shale-fired power plants

机译:天然放射性核素在油页岩火力发电厂中的富集行为

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The oil shale industry is the largest producer of NORM (Naturally Occurring Radioactive Material) waste in Estonia. Approximately 11-12 million tons of oil shale containing various amounts of natural radionuclides is burned annually in the Narva oil shale-fired power plants, which accounts for approximately 90% of Estonian electricity production. The radionuclide behavior characteristics change during the fuel combustion process, which redistributes the radionuclides between different ash fractions. Out of 24 operational boilers in the power plants, four use circulating fluidized bed (CFB) technology and twenty use pulverized fuel (PF) technology. Over the past decade, the PF boilers have been renovated, with the main objective to increase the efficiency of the filter systems. Between 2009 and 2012, electrostatic precipitators (ESP) in four PF energy blocks were replaced with novel integrated desulphurization technology (NID) for the efficient removal of fly ash and SO_2 from flue gases. Using gamma spectrometry, activity concentrations and enrichment factors for the ~(238)U (~(238)U, ~(226)Ra, ~(210)Pb) and ~(232)Th (~(232)Th, ~(228)Ra) family radionuclides as well as ~(40)K were measured and analyzed in different PF boiler ash fractions. The radionuclide activity concentrations in the ash samples increased from the furnace toward the back end of the flue gas duct. The highest values in different PF boiler ash fractions were in the last field of the ESP and in the NID ash, where radionuclide enrichment factors were up to 4.2 and 3.3, respectively. The acquired and analyzed data on radionuclide activity concentrations in different PF boiler ashes (operating with an ESP and a NID system) compared to CFB boiler ashes provides an indication that changes in the fuel (oil shale) composition and boiler working parameters, as well as technological enhancements in Estonian oil shale fired power plants, have had a combined effect on the distribution patterns of natural radionuclides in the oil shale combustion products.
机译:油页岩产业是爱沙尼亚最大的NORM(天然放射性物质)废物生产商。纳尔瓦油页岩火力发电厂每年燃烧约11-12百万吨含有各种天然放射性核素的油页岩,约占爱沙尼亚发电量的90%。放射性核素行为特征在燃料燃烧过程中会发生变化,这会在不同灰分之间重新分配放射性核素。在电厂的24台运行锅炉中,有4台使用循环流化床(CFB)技术,有20台使用粉煤(PF)技术。在过去的十年中,对PF锅炉进行了翻新,其主要目的是提高过滤系统的效率。在2009年至2012年之间,用新型集成式脱硫技术(NID)取代了四个PF能源块中的静电除尘器(ESP),以有效去除烟道气中的飞灰和SO_2。使用伽马能谱法测定〜(238)U(〜(238)U,〜(226)Ra,〜(210)Pb)和〜(232)Th(〜(232)Th,〜(在不同的PF锅炉灰分中测量并分析了228)Ra)族放射性核素以及〜(40)K。灰分样品中的放射性核素活度浓度从炉子向烟气管道的后端增加。在不同的PF锅炉灰分中,最高值出现在ESP的最后一个区域和NID灰中,其中放射性核素富集系数分别高达4.2和3.3。与CFB锅炉烟灰相比,不同PF锅炉烟灰(与ESP和NID系统配合使用)中放射性核素活度浓度的采集和分析数据表明,燃料(油页岩)的成分和锅炉工作参数以及爱沙尼亚油页岩火力发电厂的技术改进对油页岩燃烧产物中天然放射性核素的分布方式产生了综合影响。

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