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首页> 外文期刊>Radiochimica Acta: International Journal for Chemical Aspects of Nuclear Science and Technology >On the transport and speciation of ruthenium in high temperature oxidising conditions
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On the transport and speciation of ruthenium in high temperature oxidising conditions

机译:高温氧化条件下钌的迁移和形态分析

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In this paper, the transport and speciation of ruthenium under conditions simulating an air ingress accident was studied. Ruthenium dioxide was exposed to an oxidising environment at high temperatures (> 1200 degrees C) in a tubular flow furnace. At these conditions, volatile ruthenium species were formed. A major part of the released ruthenium was deposited in the tube as RuO2. Depending on the experimental conditions, 12-35 wt. % of the released ruthenium was trapped in the outlet filter as RuO2 particles. At completely dry conditions using stainless steel tubes, only 0.1-0.2 wt. % of the released ruthenium reached the trapping bottle as gaseous RuO4. However, when alumina was applied as tube material or the atmosphere contained some water vapour and silver seed particles, the fraction of gaseous ruthenium reaching the trapping bottle increased to 5 wt. % which is close to thermodynamic equilibrium. This indicates that RuO2 does not catalyse the decomposition of RuO4.
机译:本文研究了模拟空袭事故条件下钌的迁移和形态。在管式流动炉中,二氧化钌在高温(> 1200摄氏度)下暴露于氧化环境。在这些条件下,形成了挥发性的钌物质。释放出的钌的大部分以RuO2的形式沉积在管中。取决于实验条件,12-35 wt。 %的释放出的钌以RuO2颗粒的形式被捕集在出口过滤器中。在使用不锈钢管的完全干燥条件下,仅0.1-0.2 wt。 %的释放出的钌以气态RuO4的形式到达捕集瓶。然而,当将氧化铝用作管材或大气中含有一些水蒸气和银种子颗粒时,到达捕集瓶的气态钌含量增加到5 wt。%。 %,接近热力学平衡。这表明RuO2不会催化RuO4的分解。

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