首页> 外文期刊>Archaeometry >THE USE OF NEUTRON ANALYSIS TECHNIQUES FOR DETECTING THE CONCENTRATION AND DISTRIBUTION OF CHLORIDE IONS IN ARCHAEOLOGICAL IRON
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THE USE OF NEUTRON ANALYSIS TECHNIQUES FOR DETECTING THE CONCENTRATION AND DISTRIBUTION OF CHLORIDE IONS IN ARCHAEOLOGICAL IRON

机译:利用中子分析技术检测考古铁中氯离子的浓度和分布

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摘要

Chloride (Cl) ions diffuse into iron objects during burial and drive corrosion after excavation. Located under corrosion layers, Cl is inaccessible to many analytical techniques. Neutron analysis offers non-destructive avenues for determining Cl content and distribution in objects. A pilot study used prompt gamma activation analysis (PGAA) and prompt gamma activation imaging (PGAI) to analyse the bulk concentration and longitudinal distribution of Cl in archaeological iron objects. This correlated with the object corrosion rate measured by oxygen consumption, and compared well with Cl measurement using a specific ion meter. High-Cl areas were linked with visible damage to the corrosion layers and attack of the iron core. Neutron techniques have significant advantages in the analysis of archaeological metals, including penetration depth and low detection limits.
机译:埋葬过程中,氯化物(Cl)离子扩散到铁物体中,并在开挖后驱动腐蚀。 Cl位于腐蚀层之下,许多分析技术都无法获得。中子分析提供了确定物体中Cl含量和分布的非破坏性途径。一项前期研究使用了瞬变伽马活化分析(PGAA)和瞬变伽马活化成像(PGAI)来分析考古铁物体中Cl的体积浓度和纵向分布。这与通过耗氧量测得的物体腐蚀速率相关,并与使用特定离子计进行的Cl测得很好。高Cl区域与腐蚀层的可见损伤和铁芯的腐蚀有关。中子技术在分析考古金属方面具有显着优势,包括穿透深度和低检测限。

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