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Purification of Liquid Metal Systems with Sodium Coolant from Oxygen Using Getters

机译:使用吸气剂用氧气中的钠冷却剂纯化液态金属系统

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摘要

For increasing the safety and economic parameters of nuclear power stations (NPSs) with sodium coolant, it was decided to install all systems contacting radioactive sodium, including purification systems of circuit I, in the reactor vessel. The performance and capacity of cold traps (CTs) (conventional element of coolant purification systems) in these conditions are limited by their volume. It was proposed to use hot traps (HTs) in circuit I for coolant purification from oxygen. It was demonstrated that, at rated parameters of the installation when the temperature of the coolant streamlining the getter (gas absorber) is equal to 550℃, the hot trap can provide the required coolant purity. In shutdown modes at 250-300℃, the performance of the hot trap is reduced by four orders of magnitude. Possible HT operation regimes for shutdown modes and while reaching rated parameters were proposed and analyzed. Basic attention was paid to purification modes at power rise after commissioning and accidental contamination of the coolant when the initial oxygen concentration in it reached 25 mln~(-1). It was demonstrated that the efficiency of purification systems can be increased using HTs with the getter in the form of a foil or granules. The possibility of implementing the 'fast purification' mode in which the coolant is purified simultaneously with passing over from the shutdown mode to the rated parameters was substantiated.
机译:为了提高使用钠冷却剂的核电站的安全性和经济性,决定在反应堆容器中安装所有与放射性钠接触的系统,包括回路I的净化系统。在这些条件下,冷阱(CT)(冷却剂净化系统的常规元件)的性能和容量受到其体积的限制。有人建议在回路I中使用热阱(HT),以从氧气中净化冷却剂。结果表明,在装置的额定参数下,当使吸气剂(气体吸收器)流化的冷却液温度等于550℃时,热阱可以提供所需的冷却液纯度。在250-300℃的停机模式下,热阱的性能降低了四个数量级。提出并分析了停机模式和达到额定参数时可能的高温运行方式。基本关注的是调试后功率上升时的净化模式以及冷却液中的初始氧气浓度达到25毫升〜(-1)时意外污染冷却液。已经证明,使用金属薄片或颗粒形式的吸气剂可以使用HT提高纯化系统的效率。证实了实现“快速净化”模式的可能性,其中冷却剂在从关闭模式过渡到额定参数的同时被净化。

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