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Thermal characteristics of spent activated carbon generated from air cleaning units in korean nuclear power plants

机译:韩国核电站空气净化装置产生的废活性炭的热特性

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To identify the feasibility of disposing of spent activated carbon as a clearance level waste, we performed characterization of radioactive pollution for spent activated carbon through radioisotope analysis; results showed that the C-14 concentrations of about half of the spent activated carbon samples taken from Korean NPPs exceeded the clearance level limit. In this situation, we selected thermal treatment technology to remove C-14 and analyzed the moisture content and thermal characteristics. The results of the moisture content analysis showed that the moisture content of the spent activated carbon is in the range of 1.2–23.9 wt% depending on the operation and storage conditions. The results of TGA indicated that most of the spent activated carbon lost weight in 3 temperature ranges. Through py-GC/MS analysis based on the result of TGA, we found that activated carbon loses weight rapidly with moisture desorption reaching to 100°C and desorbs various organic and inorganic carbon compounds reaching to 200°C. The result of pyrolysis analysis showed that the experiment of C-14 desorption using thermal treatment technology requires at least 3 steps of heat treatment, including a heat treatment at high temperature over 850°C, in order to reduce the C-14 concentration below the clearance level.
机译:为了确定将废活性炭作为清除水平废物处置的可行性,我们通过放射性同位素分析对废活性炭进行了放射性污染表征。结果表明,从韩国核电厂提取的废活性炭样品中,约有一半的C-14浓度超过了清除水平限值。在这种情况下,我们选择了热处理技术来去除C-14并分析了水分含量和热特性。水分含量分析的结果表明,根据操作和存储条件的不同,废活性炭的水分含量在1.2–23.9 wt%的范围内。 TGA的结果表明,大部分废活性炭在3个温度范围内失重。通过基于TGA的py-GC / MS分析,我们发现,活性炭的失重迅速,水分解吸达到100°C,各种有机和无机碳化合物解吸达到200°C。热解分析的结果表明,使用热处理技术进行的C-14解吸实验至少需要3个热处理步骤,包括在850°C以上的高温下进行热处理,以将C-14的浓度降低到低于1100℃。清除等级。

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