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Phase Analysis of Corrosion Products from Nuclear Power Plants

机译:核电站腐蚀产物的相分析

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The variability of the properties and the composition of the corrosion products of the stainless CrNi and mild steels in dependence on the conditions (temperature, acidity, etc.) is of such a range that, in practice, it is impossible to determine the properties of the corrosion products for an actual case from the theoretical data only. Since the decontamination processes for the materials of the water-cooled reactor (VVER-440) secondary circuits are in a process of development, it is necessary to draw the needed information by the measurement and analysis of the real specimens. The corrosion layer was separated by scraping the rust off the surface and the powder samples were studied by transmission Moessbauer spectroscopy. It should be noted that the gamma spectroscopic measurements give no evidence of the presence of low-energy gamma radiation emitted from the samples. The scrapped specimen powder was homogenised (using the 50 μm sieve) and fixed into the special holder. The~(57) Co in Rh matrix was used as the radioactive Moessbauer source. Measured spectra were fitted using program NORMOS SITE. According to the results obtained from Moessbauer spectra, it is possible to establish that the main component of secondary circuit's corrosion products is magnetite Fe_3O_4. Next components are hematite α-Fe_2O_3 and hydroxide akagenite β-FeOOH, which is characterised by a significant paramagnetic doublet in the middle of the spectra. The sextets corresponding to base materials (martensite and austenite steels) were identified in all measured spectra.
机译:CrNi不锈钢和低碳钢的性能和腐蚀产物的成分随条件(温度,酸度等)而变化的范围是在实践中无法确定其性能。仅根据理论数据得出实际情况下的腐蚀产物。由于水冷反应堆(VVER-440)二次回路材料的净化过程正在进行中,因此有必要通过对实际样本的测量和分析来得出所需的信息。通过从表面刮除锈来分离腐蚀层,并通过透射Moessbauer光谱研究粉末样品。应该注意的是,伽马能谱测量没有证据表明存在从样品中发出的低能伽马射线。将刮碎的标本粉末均质化(使用50μm筛子),然后固定到专用支架中。 Rh基体中的〜(57)Co被用作放射性Moessbauer源。使用程序NORMOS SITE拟合测量的光谱。根据从Moessbauer光谱获得的结果,可以确定二次回路腐蚀产物的主要成分是磁铁矿Fe_3O_4。接下来的成分是赤铁矿α-Fe_2O_3和氢氧化钾赤铁矿β-FeOOH,其特征是在光谱中间存在明显的顺磁双峰。在所有测得的光谱中都可以识别出对应于基础材料(马氏体和奥氏体钢)的六边形。

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