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首页> 外文期刊>Physics of atomic nuclei >Study of the feasibility of distributed cathodic arc as a plasma source for development of the technology for plasma separation of SNF and radioactive wastes
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Study of the feasibility of distributed cathodic arc as a plasma source for development of the technology for plasma separation of SNF and radioactive wastes

机译:研究分布式阴极电弧作为等离子体源的可行性,以开发SNF和放射性废物的等离子体分离技术

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摘要

One of the key problems in the development of plasma separation technology is designing a plasma source which uses condensed spent nuclear fuel (SNF) or nuclear wastes as a raw material. This paper covers the experimental study of the evaporation and ionization of model materials (gadolinium, niobium oxide, and titanium oxide). For these purposes, a vacuum arc with a heated cathode on the studied material was initiated and its parameters in different regimes were studied. During the experiment, the cathode temperature, arc current, arc voltage, and plasma radiation spectra were measured, and also probe measurements were carried out. It was found that the increase in the cathode heating power leads to the decrease in the arc voltage (to 3 V). This fact makes it possible to reduce the electron energy and achieve singly ionized plasma with a high degree of ionization to fulfill one of the requirements for plasma separation of SNF. This finding is supported by the analysis of the plasma radiation spectrum and the results of the probe diagnostics.
机译:等离子体分离技术发展中的关键问题之一是设计一种等离子体源,该等离子体源使用冷凝的乏核燃料(SNF)或核废料作为原料。本文涵盖了模型材料(ga,氧化铌和氧化钛)的蒸发和电离的实验研究。为此,在研究材料上启动了带有加热阴极的真空电弧,并研究了其在不同状态下的参数。在实验期间,测量了阴极温度,电弧电流,电弧电压和等离子体辐射光谱,并且还进行了探针测量。发现阴极加热功率的增加导致电弧电压的降低(至3V)。该事实使得可以降低电子能量并且以高电离度实现单电离的等离子体,以满足SNF的等离子体分离的要求之一。等离子体辐射光谱分析和探针诊断结果支持了这一发现。

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