巴西燃煤电厂烟气脱硫废弃物样品的物理化学和放射学特征

D. Fungaro, L. Grosche, P. Silva
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引用次数: 0

摘要

烟气脱硫废渣是燃煤电厂烟气脱硫过程中产生的工业副产物。这种副产品含有微量的自然产生的放射性核素和元素,如as, Ba, Co, Cr, Zn。烟气脱硫废弃物的特性对其资源化利用具有重要意义,主要取决于脱硫过程。本文利用x射线衍射(XRD)、扫描电镜(SEM)、x射线荧光(XFR)和粒度分析等方法,对三家燃煤电厂采用半干法和湿法两种脱硫方法收集的两种脱硫材料进行了表征。采用中子活化分析和伽玛能谱法测定了238U、232Th、228Th、226Ra、228Ra、210Pb、40K及微量元素的放射性含量。所有样品的主要成分为Ca, Si, S, Al和Fe。湿法烟气脱硫副产物镁含量也较高。废渣主要含半水合亚硫酸钙和半水合亚硫酸钙。半干法烟气脱硫的粒径小于湿法烟气脱硫。238U、232Th、226Ra、210Pb、228Ra、228Th和40K的平均活性浓度分别为50-71、33-42、28-52、113-150、26-33、33-39、161-390 Bq kg-1。根据浸出和增溶试验的结果,将FGD样品归类为无害和非惰性。所得数据对评价烟气脱硫副产物的可能应用有帮助。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Physicochemical and radiological characterization of flue gas desulfuration waste samples from Brazilian coal-fired power plants
Flue gas desulfurization (FGD) waste is an industrial by-product generated during the flue gas desulfurization process in coal-fired power plants. This by-product contain trace quantities of naturally occurring radionuclides and elements such as As, Ba, Co, Cr, Zn. The characteristics of FGD waste are important for its reuse and are mainly depend on the desulfurization process. In this work, two types of FGD materials collected from three coal-fired power plants using semi-dry and wet processes were characterized by X-Ray Diffraction (XRD), Scanning Electron Microscope (SEM), X-ray fluorescence (XFR) and particle size analysis. The radioactive content of 238U, 232Th, 228Th, 226Ra, 228Ra, 210Pb and 40K and trace elements were also determined using Neutron activation analysis and Gamma-ray spectrometry. The major constituents for all samples were Ca, Si, S, Al and Fe. Wet FGD by-product presented also high magnesium content. The wastes contain mainly semi-hydrate calcium sulfite and calcium sulfate. The particle size of FGD from semi-dry process was lower than that from the wet process. The average activity concentration of 238U, 232Th, 226Ra, 210Pb, 228Ra, 228Th and 40K varied between were 50-71, 33-42, 28-52, 113-150, 26-33, 33-39, 161-390 Bq kg-1, respectively. According to the results of leaching and solubilization tests, FGD samples were classified as non-hazardous and non-inert. The obtained data are useful for evaluation of possible applications of FGD by-products.
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