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Investigation of thorium utilization in accelerator driven systems

机译:加速器驱动系统中钍利用的研究

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This article deals with the idea of using accelerator driven systems for thorium transmutation into the fissile material, which can be utilized in the accelerator driven systems and in thermal nuclear reactors. Thorium occurs on the Earth only in fertile isotope Th-232. It can be converted to fissile isotope U-233 by neutron capture and subsequent beta decay. The experimental part handles the data that were acquired by irradiation of four thorium samples in the field of secondary neutrons inside the QUINTA spallation set-up, which was irradiated by 660 MeV protons. Reaction rates for the different products were estimated using gamma-ray spectroscopy and activation techniques. Furthermore, Pa-233 production rates were also determined in all experimental samples. Pa-233 and fission production rates were calculated in all experimental samples using the MCNPX transport code and evaluated nuclear data for high-energy reactions. The experimental results are of a great importance for the future investigation of thorium in the accelerator driven system concept, validation of Monte Carlo-based calculation codes and validation of high-energy nuclear models.
机译:本文涉及使用钍嬗变的加速器驱动系统进入裂变材料,可用于加速器驱动系统和热核反应堆。钍仅在肥沃的同位素TH-232中发生在地球上。它可以通过中子捕获和随后的β腐烂转化为裂变同位素U-233。实验部门处理通过在Quinta介质设置的次级中子领域中照射四个钍样品来获取的数据,其被660meV质子辐照。使用γ射线光谱和活化技术估计不同产品的反应速率。此外,在所有实验样品中也确定了PA-233生产率。使用MCNPX传输代码的所有实验样品计算PA-233和裂变生产率,并评估高能量反应的核数据。实验结果对于加速器驱动系统概念的未来对钍的未来调查至关重要,验证基于蒙特卡罗的计算代码和高能量核模型的验证。

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