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Atmospheric corrosion of Cu by UV, ozone and NaCl

机译:紫外线,臭氧和氯化钠对铜的大气腐蚀

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摘要

The effects of ultraviolet (UV), ozone and NaCl on the atmospheric corrosion of Cu have been studied. The corrosion products were analysed by X-ray diffraction and quantified by coulometric reduction. Surface morphology after exposure was studied by scanning electron microscopy. The protection effect of naturally formed copper oxide was shown by comparing the corrosion behaviours of Cu and Ag with UV and ozone but in the absence of NaCl. Ultraviolet illumination had a significant accelerating effect on Cu corrosion regardless of the presence of ozone. With ozone and NaCl, the accelerating effect of UV was more evident at low relative humidity (RH) (60%) than at high RH (90%). Loading of NaCl is critical for the formation of Cu_2(OH)_3Cl, a common corrosion product of Cu in marine environments. Oxidation of Cu_2O to Cu_2(OH)_3Cl in the presence of NaCl by oxygen and ozone is a possible pathway for the formation of Cu_2(OH)_3Cl.
机译:研究了紫外线,臭氧和氯化钠对铜大气腐蚀的影响。通过X射线衍射分析腐蚀产物并通过库仑还原法定量。通过扫描电子显微镜研究曝光后的表面形态。通过比较铜和银与紫外线和臭氧在没有氯化钠的情况下的腐蚀行为,可以证明天然形成的氧化铜的保护作用。无论是否存在臭氧,紫外线照射对Cu腐蚀都有明显的促进作用。在臭氧和氯化钠的作用下,低相对湿度(RH)(60%)时的紫外线促进作用比高相对湿度(90%)时更明显。 NaCl的负载对于形成Cu_2(OH)_3Cl(在海洋环境中常见的Cu腐蚀产物)至关重要。在NaCl存在下,氧气和臭氧将Cu_2O氧化为Cu_2(OH)_3Cl是形成Cu_2(OH)_3Cl的可能途径。

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