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The impact of aqueous washing on the ability of βFeOOH to corrode iron

机译:水洗对βFeOOH腐蚀铁能力的影响

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摘要

Controlling the corrosion of historical and archaeological ferrous metal objects presents a significant challenge to conservators. Chloride is a major corrosion accelerator in coastal areas for historic ferrous metal structures and for the many chloride-containing archaeological objects within museums. Corrosion reactions involve the formation of akaganéite (βFeOOH) which incorporates chloride within its crystal structure and adsorbs it onto its surface. The mobility of the surface-adsorbed chloride in aqueous systems and atmospheric moisture means βFeOOH can itself cause iron to corrode. The extraction of chloride from βFeOOH by aqueous Soxhlet hot wash and aqueous room temperature washing is measured. The impact of this washing on the ability of βFeOOH to corrode iron is quantitatively investigated by determining the oxygen consumption of unwashed, Soxhlet-washed and room temperature-washed samples of βFeOOH mixed with iron powder and exposed to 80 % relative humidity. This acts as a proxy measurement for the corrosion rate of iron. The results are discussed relative to climatic factors for outdoor heritage objects and the treatment of archaeological iron in museums. Delivering better understanding of the properties of βFeOOH supports the development of evidence-based treatments and management procedures in heritage conservation.
机译:控制历史和考古黑色金属物体的腐蚀对保护者提出了重大挑战。氯化物是沿海地区主要的腐蚀促进剂,用于历史悠久的黑色金属结构以及博物馆内许多含氯的考古物品。腐蚀反应涉及形成高铁矾(βFeOOH),其在其晶体结构中掺入氯化物并将其吸附到其表面上。表面吸附的氯化物在水系统和大气水分中的迁移性意味着βFeOOH本身会导致铁腐蚀。进行了索格利特水洗和室温水洗从βFeOOH中提取氯的方法的测定。通过确定未经洗涤,经索氏提取的和室温洗涤过的,混合有铁粉且暴露于80%相对湿度的βFeOOH样品的耗氧量,可以定量研究这种洗涤对βFeOOH腐蚀铁的能力的影响。这可以作为铁腐蚀速率的替代度量。讨论了有关室外遗产对象的气候因素和博物馆中考古铁处理方法的结果。更好地了解βFeOOH的性质,有助于在遗产保护中发展循证疗法和管理程序。

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