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The Influence of Relative Humidity and Intrinsic Chloride on Post-excavation Corrosion Rates of Archaeological Wrought Iron

机译:相对湿度和内在氯化物对考古锻铁开挖后腐蚀速率的影响

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This study examined the impact of relative humidity (RH) on the corrosion rate of 129 archaeological iron nails from two sites. Oxygen consumption of individual nails in controlled RH was used as a corrosion rate proxy to deliver quantitative data on corrosion rate as a function of RH. This was negligible at 20% RH, slow up to 40% RH for both sites, and increased rapidly at 60% RH for Roman nails from Caerleon (Wales) and at 70% RH for medieval nails from Billingsgate (London). The nails were digested and their chloride content was determined and related to their oxygen consumption at specific RH values. While a generic pattern of corrosion as a function of chloride was identified, for any single concentration of chloride corrosion rate was not predictable. Desiccation is in common use to control post-excavation corrosion of archaeological iron; quantifying how differing levels of desiccation changed corrosion rate provided a scaled tool for identifying corrosion risk, estimating object longevity, and calculating cost benefit for storage options.
机译:这项研究检查了相对湿度(RH)对来自两个地点的129个考古铁钉的腐蚀速率的影响。在受控的相对湿度下,单个指甲的耗氧量用作腐蚀速率的替代指标,以提供有关相对于相对湿度的腐蚀速率的定量数据。对于20%RH,这两个位置的相对湿度可以忽略不计,对于两个部位,RH都可以减慢到40%RH;对于来自Caerleon(Wales)的罗马指甲,相对湿度为70%RH,对于来自Billingsgate(伦敦)的中世纪指甲,相对湿度则为70%。消解指甲并确定其氯化物含量,并将其与特定RH值下的耗氧量相关。尽管确定了腐蚀随氯化物变化的一般模式,但对于任何单一浓度的氯化物,腐蚀速率都是不可预测的。干燥通常用于控制考古铁的挖掘后腐蚀。量化不同程度的干燥度如何改变腐蚀速率,提供了一种可缩放的工具,用于识别腐蚀风险,估算对象寿命并计算存储选项的成本效益。

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