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Characteristics of copper corrosion in simulated uterine fluid in the presence of protein.

机译:蛋白质存在下模拟子宫液中铜的腐蚀特征。

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In order to acquire more knowledge of the performance of copper-bearing intrauterine devices (Cu-IUDs), corrosion behavior of copper in a simulated uterine fluid was investigated in the presence of proteins. The proteins studied included serum albumin, gamma-globulin and hemoglobin. Electrochemical polarization resistance measurements indicated that, in all cases under study, the corrosion rate of copper declined with time and the proteins always increased the rate. Moreover, different kinds of protein showed different dependence of copper corrosion rate on protein level. Addition of serum albumin initially raised the copper corrosion rate; however, the higher albumin concentration resulted in less promotion of the corrosion. X-ray diffraction (XRD) of the specimen surface showed that, both in the presence and absence of serum albumin, cuprous oxide was the only corrosion product, even though at higher concentrations of albumin less cuprous oxide was formed. This implies that serum albumin does not alter the corrosion mechanism. Electrochemical cathodic reduction of the oxide film and chemical analysis of solution after corrosion testing proved that the proportion of soluble ionic copper in the whole corrosion products varied with the albumin level. The copper corrosion rate in the presence of gamma-globulin or hemoglobin increased monotonically with increasing concentration of the protein. These three proteins shifted the corrosion potential of copper towards negative. It could be inferred that the proteins accelerated the anodic dissolution process of copper and hence enhanced its corrosion.
机译:为了获得更多关于含铜宫内节育器(Cu-IUDs)性能的知识,研究了在蛋白质存在下模拟子宫液中铜的腐蚀行为。研究的蛋白质包括血清白蛋白,γ-球蛋白和血红蛋白。电化学极化电阻的测量表明,在所研究的所有情况下,铜的腐蚀速率均会随时间下降,蛋白质始终会提高腐蚀速率。此外,不同种类的蛋白质显示出铜腐蚀速率对蛋白质水平的依赖性不同。血清白蛋白的添加最初提高了铜的腐蚀速率;然而,较高的白蛋白浓度导致较少的腐蚀促进。样品表面的X射线衍射(XRD)结果表明,在有或没有血清白蛋白的情况下,氧化亚铜都是唯一的腐蚀产物,即使在较高的白蛋白浓度下,形成的氧化亚铜也很少。这意味着血清白蛋白不会改变腐蚀机理。氧化膜的电化学阴极还原和腐蚀测试后的溶液化学分析表明,整个腐蚀产物中可溶性离子铜的比例随白蛋白水平的变化而变化。在存在γ-球蛋白或血红蛋白的情况下,铜的腐蚀速率随蛋白质浓度的增加而单调增加。这三种蛋白质使铜的腐蚀电位向负方向移动。可以推断出蛋白质加速了铜的阳极溶解过程,从而增强了铜的腐蚀。

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