首页> 外文会议>International conference on environmental remediation and radioactive waste management >THE RADIOACTIVITY OF ~3H IN METALS BY A HIGH TEMPERATURE FURNACE AND A LIQUID SCINTILLATION COUNTER
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THE RADIOACTIVITY OF ~3H IN METALS BY A HIGH TEMPERATURE FURNACE AND A LIQUID SCINTILLATION COUNTER

机译:高温炉和液体闪烁计数器金属中〜3H的放射性

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The radioactivity of ~3H of the metal samples from the nuclear sites was analyzed by using a commercialized high temperature furnace and a Liquid Scintillation Counter (LSC). The ~3H activity of the sample was measured according to the duration of the high temperature combustion and the oxidation temperature. Basically, the recovery from the furnace was 90% for ~3H and the LSC had a quenching efficiency of approximately 30 %. HNO_3 was used as a trapping solution for ~3H and the solution was cocktailed with a scintillator. The activity extracted from the sample was increased till the combustion time elapsed 60 minutes and the increasing rate was reduced continuously thereafter at 600 °C whereas 80 % of radioactivity was extracted during the first 15 minutes at 900 °C. Also, the pretreatment for the metal sample, which included a high temperature combustion and trapping, had the time required of at least four hours at 900 °C. Finally, it was suggested that this high temperature combustion method could be applied to analyze the activity of the radioactive metal waste from the nuclear power plants.
机译:通过使用商业化的高温炉和液体闪烁计数器(LSC)来分析来自核位点的金属样品的〜3H的放射性。根据高温燃烧的持续时间和氧化温度测量样品的〜3H活性。基本上,从炉子中的回收率为90%,〜3H,LSC淬火效率约为30%。 HNO_3用作诱捕溶液〜3H,溶液用闪烁体搅拌。从样品中提取的活性升高至60分钟经过的燃烧时间,然后在600℃下连续减少速率,而在900℃下在前15分钟内提取80%的放射性。而且,包括高温燃烧和捕获的金属样品的预处理在900℃下具有至少4小时所需的时间。最后,有人建议可以应用这种高温燃烧方法来分析来自核电厂的放射性金属废物的活性。

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