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首页> 外文期刊>Applied radiation and isotopes: including data, instrumentation and methods for use in agriculture, industry and medicine >Polonium behavior following a vacuum window rupture in a lead-bismuth eutectic based accelerator driven system
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Polonium behavior following a vacuum window rupture in a lead-bismuth eutectic based accelerator driven system

机译:真空窗口在基于铅铋基于加速器驱动系统中的真空窗破裂之后的Polonium行为

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摘要

Accelerator driven fast nuclear reactors cooled by lead-bismuth eutectic (LBE) are developed for transmuting long-lived radionuclides in spent nuclear fuel. Due to the nature of the coolant, operating the reactor will result in a production of Po-210 by neutron capture. Understanding the behavior of this highly radiotoxic nuclide in the event of a failure of the window separating the evacuated proton beam guide from the reactor core is required for safety assessments. The present work aims at acquiring this knowledge by studying the evaporation of polonium from neutron-irradiated LBE and its deposition in a scaled down model of the beam tube. Experimental results along with Monte Carlo simulations indicate that polonium adsorbs as a single species with an adsorption enthalpy of approximately -156 kJ/mol.
机译:用铅铋共晶(LBE)冷却的加速器驱动快核反应堆是为了转化乏核燃料中的长寿命放射性核素而开发的。由于冷却剂的性质,运行反应堆将通过中子俘获产生Po-210。安全评估需要了解这种高放射性毒性核素在真空质子束流导管与反应堆堆芯分离的窗口发生故障时的行为。本工作旨在通过研究中子辐照LBE中钋的蒸发及其在束管缩尺模型中的沉积来获得这一知识。实验结果和蒙特卡罗模拟表明,钋作为单一物种吸附,吸附焓约为-156 kJ/mol。

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