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Comparative studies of chemical and electrochemical preparation of artificial bronze patinas and their protection by corrosion inhibitor

机译:化学和电化学制备人造青铜铜锈及其受缓蚀剂保护的比较研究

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摘要

The bronze artefacts of cultural heritage are often covered with patina, a layer of corrosion products, which confers their aesthetic and also protects the substrate bronze. Due to the increasing atmospheric pollution these layers are often dissolving when exposed in urban environment. In this work we propose the use of an innoxious imidazole compound as a corrosion inhibitor for patinated bronze. On a Cu-6Sn (wt%) bronze, three types of patinas were synthesized: two by chemical methods (in a sulphate solution and a chloride one) and one by an electrochemical process (in a sulphate/carbonate solution). A blue-green patina was obtained in all three cases, and their morphological and structural characterization was performed by SEM, EDS and Raman spectroscopy. It was found that the sulphate patina is composed essentially of brochantite, the chloride patina of atacamite, and the electrochemical patina of malachite. All three patinas have also a smooth part of surface consisted of cuprite. As corrosion inhibitor 4-methyl- 1 -(p-tolyl) imidazole was used on all patinas, in a solution of 0.2 g L~(-1) Na_2SO_4 + 0.2 g L~(-1) NaHC03 acidified to pH 5 which simulates acid rain in urban environment. The results have shown that the inhibitor improves the stability of all three kinds of patinas and can be recommended for protection of works of art.
机译:文化遗产的青铜器皿经常被铜锈覆盖,铜锈是一层腐蚀产物,赋予其美观性并保护了基底青铜。由于不断增加的大气污染,这些层暴露在城市环境中时通常会溶解。在这项工作中,我们建议使用无毒的咪唑化合物作为古铜青铜的腐蚀抑制剂。在Cu-6Sn(wt%)青铜上,合成了三种类型的古铜色:两种是化学方法(在硫酸盐溶液中,在一种氯化物溶液中),另一种是通过电化学方法(在硫酸盐/碳酸盐溶液中)。在这三种情况下均获得了蓝绿色的铜绿,并通过SEM,EDS和拉曼光谱对它们的形态和结构进行了表征。已发现硫酸盐铜绿主要由Brantantite,atacamite的氯化物铜绿和孔雀石的电化学铜绿组成。所有三个铜绿还具有由铜矿组成的光滑表面。在所有古铜色上使用4-甲基-1-(对甲苯基)咪唑作为缓蚀剂,在0.2 g L〜(-1)Na_2SO_4 + 0.2 g L〜(-1)NaHCO 3酸化至pH 5的溶液中模拟城市环境中的酸雨。结果表明,该抑制剂可提高所有三种古铜色的稳定性,可推荐用于艺术品保护。

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