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Analysis of Zirconium and Nickel Based Alloys and Zirconium Oxides by Relative and Internal Monostandard Neutron Activation Analysis Methods

机译:相对和内部单标准中子活化分析方法分析锆和镍基合金及氧化锆

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Background The chemical characterization of metallic alloys and oxides is conventionally carried out by wet chemical analytical methods and/or instrumental methods. Instrumental neutron activation analysis (INAA) is capable of analyzing samples nondestructively. As a part of a chemical quality control exercise, Zircaloys 2 and 4, nimonic alloy, and zirconium oxide samples were analyzed by two INAA methods. The samples of alloys and oxides were also analyzed by inductively coupled plasma optical emission spectroscopy (ICP-OES) and direct current Arc OES methods, respectively, for quality assurance purposes. The samples are important in various fields including nuclear technology. Methods Samples were neutron irradiated using nuclear reactors, and the radioactive assay was carried out using high-resolution gamma-ray spectrometry. Major to trace mass fractions were determined using both relative and internal monostandard (IM) NAA methods as well as OES methods. Results In the case of alloys, compositional analyses as well as concentrations of some trace elements were determined, whereas in the case of zirconium oxides, six trace elements were determined. For method validation, British Chemical Standard (BCS)-certified reference material 310/1 (a nimonic alloy) was analyzed using both relative INAA and IM-NAA methods. Conclusion The results showed that IM-NAA and relative INAA methods can be used for nondestructive chemical quality control of alloys and oxide samples.
机译:背景技术金属合金和氧化物的化学表征通常通过湿化学分析方法和/或仪器方法进行。仪器中子活化分析(INAA)能够无损分析样品。作为化学质量控制活动的一部分,通过两种INAA方法分析了Zircaloys 2和4,镍合金和氧化锆样品。为了保证质量,还分别通过电感耦合等离子体发射光谱法(ICP-OES)和直流电弧OES方法对合金和氧化物样品进行了分析。样品在包括核技术在内的各个领域中都很重要。方法采用核反应堆对样品进行中子辐照,并采用高分辨率伽玛射线能谱法进行放射性分析。使用相对和内部单一标准(IM)NAA方法以及OES方法确定主要到痕量的质量分数。结果对于合金,确定了成分分析以及一些痕量元素的浓度,而对于氧化锆,确定了6种痕量元素。为了进行方法验证,使用相对的INAA和IM-NAA方法对英国化学标准(BCS)认证的参考材料310/1(一种含烟合金)进行了分析。结论结果表明,IM-NAA和相关的INAA方法可用于合金和氧化物样品的无损化学质量控制。

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