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Thermal cycling of sodium system and possibility of metal dusting: an analysis

机译:钠系统的热循环和金属粉尘的可能性:分析

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Liquid sodium has been widely recognized as an efficient coolant, but when used at high temperature may encounter thermal cycling during operation, for example, as normally encountered in pool-type fast reactors in service. Under these conditions the behaviour of carbon dissolved in sodium needs special attention. Carbon – sodium chemistry is very complex because of the existence of multiple carbon-bearing species. In addition carbon exists both in the dissolved (‘active’) and undissolved (‘inactive’) forms. Under thermal cycling conditions, and as the temperature is lowered, carbon may precipitate as sodium acetylide. The equilibrium carbon activity imparted by this species is high enough to cause the precipitation of iron carbide (Fe_3C) in ferrous alloys. The Fe_3C may become destabilized at lower activities of carbon in the environment (when the temperature is increased) and may decompose to a fine dispersion of metal and graphite. This phenomenon of ‘metal dusting’ is extremely detrimental to the components of sodium systems. This paper analyses the possibility of metal dusting in an operating sodium system.
机译:液态钠已被广泛认为是一种有效的冷却剂,但在高温下使用时,可能会在运行过程中遇到热循环,例如在使用中的池式快堆中通常会遇到这种情况。在这些条件下,碳在钠中的溶解行为需要特别注意。碳-钠的化学非常复杂,因为存在多种含碳物质。此外,碳以溶解(“活性”)和未溶解(“非活性”)形式存在。在热循环条件下,并且随着温度降低,碳可能以乙炔酸钠的形式沉淀。这种物质赋予的平衡碳活性足够高,足以引起铁合金中碳化铁(Fe_3C)的析出。 Fe_3C在环境中较低的碳活度下(温度升高时)可能变得不稳定,并且可能分解为金属和石墨的精细分散体。这种“金属粉尘”现象对钠系统的成分极为不利。本文分析了运行中的钠系统中金属粉尘的可能性。

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