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Insights into electrolytic stabilization with weak polarization as treatment for archaeological copper objects

机译:利用弱极化电解稳定化处理考古铜物体的见解

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Immersion of corroded copper artefacts in dilute sodium sesquicarbonate solution is a well-recognized stabilization technique-especially in the conservation of objects recovered from marine environments and therefore saturated with chlorides. Here we describe three linked experiments performed to investigate a variation on this treatment, involving the application of a low potential to the artefact in order to drive the chloride extraction process. This includes a new spectroelectrochemical approach which allows 2-D pseudorandom X-ray reflection diffraction patterns to be obtained without interrupting the reaction in solution. Experiments were carried out on synthetically produced chloride layers on copper (nantokite and atacamite). We show that a thick chloride layer is, in general, replaced by a thin cuprite layer through a mechanism which involves detachment of the chloride crystallites from the surface prior to dissolution.
机译:将腐蚀的铜制品浸入倍半碳酸钠稀溶液中是一种公认​​的稳定技术,尤其是在保护从海洋环境中回收并因此被氯化物饱和的物体时。在这里,我们描述了三个相关的实验,以研究这种处理方法的变化,包括将低电位施加到文物上以驱动氯化物提取过程。这包括一种新的光谱电化学方法,该方法可在不中断溶液反应的情况下获得二维伪随机X射线反射衍射图。实验是在铜(锌矿和钙铝石)上合成生产的氯化物层上进行的。我们显示出,通常通过溶解机制之前的机制,将厚的氯化物层替换为薄的铜矿层,该机制涉及将氯化物晶体从表面分离。

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