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Boron-10 effect on the reactivity of the IPR-R1 Triga research reactor

机译:硼10对IPR-R1 Triga研究反应器反应性的影响

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The isotope boron-10 (B-10) has a high thermal neutron absorption cross-section and is used to poison the chain reaction in some light-water reactors (chemical shim). The purpose of this work was to show the effectiveness of boron as a neutron absorber in controlling the reactivity of nuclear reactors cooled by light water. In this way, samples were placed in sealed containers with various concentrations of boric acid in the IPR-R1 Triga nuclear research reactor core. Thus, the reactivity variation of this reactor was determined. The sample characterization was performed before and after the experiments by the measurement of pH and electrical conductivity. The IPR-R1 reactor is located at the Nuclear Technology Development Center (CDTN) in Belo Horizonte, Brazil. Variations of reactivities were evaluated using the static reactivity null method and the dynamic method. The results obtained made it possible to simulate B-10 consumption during the operation of a reactor and its effect on reactivity with increasing boric acid concentrations. The pH values showed small increases after irradiation and their conductivities showed minor changes. As a result of this experiment, a correlation was drawn between various boric acid concentrations and reactor reactivity. (C) 2019 Elsevier Ltd. All rights reserved.
机译:同位素硼10(B-10)具有高的中子吸收截面,可用于中毒某些轻水反应堆(化学垫片)的链反应。这项工作的目的是证明硼作为中子吸收剂在控制被轻水冷却的核反应堆的反应性方面的有效性。通过这种方式,将样品放置在IPR-R1 Triga核研究反应堆堆芯中装有各种浓度硼酸的密封容器中。因此,确定了该反应器的反应性变化。在实验之前和之后通过测量pH和电导率进行样品表征。 IPR-R1反应堆位于巴西贝洛哈里桑塔的核技术开发中心(CDTN)。使用静态零反应活性方法和动态方法评估反应活性的变化。所获得的结果使得有可能模拟反应器运行期间的B-10消耗及其对硼酸浓度增加对反应性的影响。辐照后,pH值显示出很小的增加,而其电导率显示出较小的变化。作为该实验的结果,在各种硼酸浓度和反应器反应性之间得出了相关性。 (C)2019 Elsevier Ltd.保留所有权利。

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