首页> 外文会议>14th International Conference on Nuclear Engineering 2006(ICONE14) vol.1 >EXPERIMENTAL INVESTIGATION OF EVAPORATION BEHAVIOR OF POLONIUM AND RARE-EARTH ELEMENTS IN LEAD-BISMUTH EUTECTIC POOL
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EXPERIMENTAL INVESTIGATION OF EVAPORATION BEHAVIOR OF POLONIUM AND RARE-EARTH ELEMENTS IN LEAD-BISMUTH EUTECTIC POOL

机译:铅铋共晶池中LON和稀土元素蒸发行为的实验研究

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Equilibrium evaporation behavior was experimentally investigated for polonium (~(210)Po) in liquid lead-bismuth eutectic (LBE) and for rare-earth elements gadolinium (Gd) and europium (Eu) in LBE to understand and clarify the transfer behavior of toxic impurities from LBE coolant to a gas phase. The experiments utilized the 'transpiration method' in which saturated vapor in an isothermal evaporation pot was transported by inert carrier gas and collected outside of the pot. While the previous paper ICONE12-49111 has already reported the evaporation behavior of LBE and of tellurium in LBE, this paper summarizes the outlines and the results of experiments for important impurity materials ~(210)Po and rare-earth elements which are accumulated in liquid LBE as activation products and spallation products. In the experiments for rare-earth elements, non-radioactive isotope was used. The LBE pool is about 330-670 g in weight and has a surface area of 4cm x 14cm. ~(210)Po experiments were carried out with a smaller test apparatus and radioactive ~(210)Po produced through neutron irradiation of LBE in the Japan Materials Testing Reactor (JMTR). We obtained fundamental and instructive evaporation data such as vapor concentration, partial vapor pressure of ~(210)Po in the gas phase, and gas-liquid equilibrium partition coefficients of the impurities in LBE under the temperature condition between 450 and 750℃. The ~(210)Po test revealed that Po had characteristics to be retained in LBE but was still more volatile than LBE solvent. A part of Eu tests implied high volatility of rare-earth elements comparable to that of Po. This tendency is possibly related to the local enrichment of the solute near the pool surface and needs to be investigated more. These results are useful and indispensable for the evaluation of radioactive materials transfer to the gas phase in LBE-cooled nuclear systems.
机译:通过实验研究了液态铅-铋共晶(LBE)中的((〜(210)Po)以及LBE中的稀土元素g(Gd)和euro(Eu)的平衡蒸发行为,以了解和阐明有毒物质的转移行为。从LBE冷却剂到气相的杂质。实验利用“蒸腾法”,其中等温蒸发罐中的饱和蒸气由惰性载气运输并收集到罐外。尽管先前的ICONE12-49111论文已经报道了LBE和碲中LBE的蒸发行为,但本文总结了重要杂质材料〜(210)Po和在液体中积累的稀土元素的概况和实验结果。 LBE作为激活产品和散裂产品。在稀土元素的实验中,使用了非放射性同位素。 LBE池的重量约为330-670 g,表面积为4cm x 14cm。 〜(210)Po实验是使用较小的测试设备进行的,并且在日本材料试验反应堆(JMTR)中通过LBE的中子辐照产生了放射性〜(210)Po。我们获得了基本的和有指导意义的蒸发数据,例如蒸气浓度,气相中〜(210)Po的部分蒸气压以及在450至750℃的温度条件下LBE中杂质的气液平衡分配系数。 〜(210)Po测试表明,Po具有保留在LBE中的特性,但仍比LBE溶剂具有更高的挥发性。 Eu测试的一部分暗示了与Po相当的稀土元素的高挥发性。这种趋势可能与池表面附近溶质的局部富集有关,需要进一步研究。这些结果对于评估LBE冷却核系统中转移到气相的放射性物质是有用的,也是必不可少的。

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