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首页> 外文期刊>Journal of Magnesium and Alloys >Clarifying the influence of albumin on the initial stages of magnesium corrosion in Hank's balanced salt solution
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Clarifying the influence of albumin on the initial stages of magnesium corrosion in Hank's balanced salt solution

机译:阐明白蛋白在汉克&#39中镁腐蚀初期的影响。平衡盐溶液

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摘要

The corrosion behavior of Mg, a promising biodegradable metallic material, in protein-containing pseudophysiological environment is still not fully understood. In this work, the influence of albumin on the corrosion behavior of commercially pure magnesium (CP Mg) is investigated during short-term tests in Hank's Balanced Salt Solution (HBSS). This work focuses on the reactions at the Mg/medium interface from the perspective of the interactions among albumin, media components and substrate. Hydrogen evolution tests demonstrate that the physiological amount of albumin (40?g?L?1) accelerates Mg corrosion in HBSS during the first few hours but slows down the degradation afterwards. The presence of albumin decreases the concentration of free Ca2+ in HBSS and delays formation of protective co-precipitation products on Mg surface. The evolution of local pH (differs from typically monitored bulk pH) near Mg/medium interface in albumin-containing HBSS is reported for the first time. Comparison of local and bulk pH values elucidates the pH buffering effect of albumin during the immersion period. Based on these results, adsorption, chelating and pH buffering effects are summarized as three important aspects of albumin influence on Mg corrosion. Additionally, constant replenishment of medium components is shown to be an influential factor during the Mg corrosion tests.
机译:毫无前途的可生物降解金属材料在含蛋白质的假物质环境中仍未完全理解Mg的腐蚀行为仍未完全理解。在这项工作中,在Hank平衡盐溶液(HBSS)的短期试验期间研究了白蛋白对商业纯镁(CP MG)的腐蚀行为的影响。这项工作从白蛋白,介质组分和衬底之间的相互作用的角度侧重于MG /中界面的反应。氢进化试验表明,在前几个小时内,白蛋白的生理量(40μl≤1)在HBS中加速Mg腐蚀,但之后减慢了降解。白蛋白的存在降低了HBSS中游离Ca2 +的浓度,并延迟形成Mg表面上的保护性共沉淀产物。首次报道局部pH(从典型监测的本体pH的不同的局部pH)的演变在含白蛋白的HBS中的Mg /中间界面附近。局部和本体pH值的比较阐明了浸渍期间白蛋白的pH缓冲效果。基于这些结果,对吸附,螯合和pH缓冲效应总结为白蛋白对MG腐蚀的三个重要方面。另外,在MG腐蚀测试期间,常量补充培养基组分是一种影响因素。

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