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DETERMINATION OF 125{sup left}I AND 131{sup left}I IN RADIOISOTOPE WASTES

机译:测定125 {sup left} i和131 {sup离开}我在放射性同位素的废物中

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In order to measure a low activity of 125{sup left}I and 131{sup left}I in radioisotope wastes, we took into consideration various sample preparation and separation methods, such as an acid decomposition, an acid leaching and a combustion method. In a previous study, the maximum chemical yield of iodine by an acid leaching was found to be 78.0%. However, in this study, the maximum chemical yield of the acid decomposition method and the combustion method with a radioiodine reference solution was found to be 99.1% and 84.5%, respectively. We selected the acid decomposition method for the analysis of radioisotope waste samples due to its high chemical yield and short preparation and separation time. The chemical yield of the acid decomposition method depends on the reaction time at each experimental stage, added amount of H{sub}3PO{sub}3 and H{sub}2O{sub}2, and the pH of the condensed solution and the condition of the AgI precipitation. The important point for the highest recovery rate from a acid decomposition method is to maintain enough reaction time and pour 10 mL of 30% H{sub}3PO{sub}3 before a distillation, and drop 1 mL of H{sub}2O{sub}2 when the condensed solution is trapped in the Florence flask. Through a study of the acid decomposition method we found an optimal preparation and separation method of 125{sup left}I and 131{sup left}I in radioisotope wastes due to the merits of a short reaction time and high recovery rate, and a counting system was applied to LEPS for the 125{sup left}I and HP Ge gamma-ray spectrometer for 131{sup left}I.
机译:为了测量放射性同位素废物中的125 {SUP左} I和131 {SUP} I的低活动,我们考虑了各种样品制备和分离方法,例如酸分解,酸浸出和燃烧方法。在先前的研究中,发现酸浸出的最大化学产率为78.0%。然而,在该研究中,发现酸分解方法的最大化学产率和具有放射性碘参考溶液的燃烧方法分别为99.1%和84.5%。我们选择了酸分解方法,用于分析放射性同位素废物样品由于其高化学产率和短的制备和分离时间。酸分解方法的化学产率取决于每个实验阶段的反应时间,加入量的H {um} 3po {sub} 3和h {sub} 2o} 2,以及浓缩溶液的pH和pH AGI降水的条件。来自酸分解方法的最高回收率的重要点是在蒸馏前保持足够的反应时间并倒入10ml 30%H} 3po {sub} 3,并滴1ml h {sub} 2o {当凝结的溶液被困在佛罗伦萨烧瓶中时,子} 2。通过对酸分解方法的研究,由于短暂反应时间和高回收率的优点,以及放射性同位杂交的优点和131 {Sup左} I的最佳准备和分离方法。系统应用于125 {sup left} i和hp ge gamma射线光谱仪的LEPs,有131 {sup left} i。

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