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Evaluation of the use of magnetic sector secondary ion mass spectrometry to investigate 14C distribution in Magnox reactor core graphite

机译:使用磁区二次离子质谱法研究Magnox反应堆堆芯石墨中14 C分布的评估

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摘要

Large quantities of irradiated graphite will arise from the decommissioning of the UK’s Magnox power stations. Irradiated graphite contains C as well as other longer lived radionuclides (e.g. Cl). The potential use of magnetic sector secondary ion mass spectrometry (MS-SIMS) to examine the distribution of the C within trepanned graphite samples from a Magnox nuclear power station has been investigated. This work indicates that the methodology proposed has the potential to be used to analyse irradiated graphite samples with preliminary results highlighting a possible C enrichment in the carbonaceous deposit found on a channel wall sample. C concentrations in samples without this deposit were below the limits of detection of the instrument. The methodology used for these determinations ensured that possible mass interferences between 14C species and oxygen-bearing or nitrogen-bearing species were eliminated from the analysis. Future work will utilize the methodology proposed in this work on a larger number of samples.
机译:英国Magnox发电厂的退役将产生大量的辐照石墨。辐照的石墨含有C以及其他寿命更长的放射性核素(例如Cl)。已经研究了利用磁区二次离子质谱(MS-SIMS)检查来自Magnox核电站的化石墨样品中C的分布的潜在用途。这项工作表明,所提出的方法学有可能用于分析辐照石墨样品,初步结果突显了通道壁样品上发现的碳质沉积物中可能存在C富集。没有这种沉积物的样品中的C浓度低于仪器的检测极限。这些测定所使用的方法确保了从分析中消除了14 C物种与含氧或含氮物种之间可能的质量干扰。未来的工作将在大量样本中利用这项工作中提出的方法。

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