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Removal of mercury contamination on primary mass standards by hydrogen plasma and thermal desorption

机译:通过氢等离子体和热脱附去除主要质量标准上的汞污染

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The removal of a high mercury contamination on a Pt reference mass by thermal desorption was studied directly by x-ray photoemission spectroscopy (XPS). Subsequently the contamination mechanism was investigated. Samples of PtIr and AuPt exposed to vapour of mercury in air were studied using XPS and gravimetric mass determination. We find an extremely rapid mercury contamination which takes place within minutes and reaches an initial equilibrium state after 2 h to 4 h. Roughly 1 to 2 monolayers of mercury adsorbs directly on the metal surface. A natural contamination of carbon and oxygen compounds is at the top. Due to the accumulation of mercury, we find a gain in mass which corresponds to 20 μg to 26 μg for a PtIr standard. XPS data from a historical Pt standard give strong evidence for further average mercury accumulation of (1.3 ± 0.1) μg/year during a period of more than a century. This can be explained by a two-step mechanism presented in this study. The speed of contamination depends on the initial surface conditions. Polishing activates the surface and results in an enhanced accumulation of mercury. Natural contamination by C and O can delay but not prevent contamination. We further demonstrate that the mercury contamination can be removed by both hydrogen plasma and thermal desorption. The removal of mercury by hydrogen plasma can directly be attributed to the synthesis of gaseous mercury dihydrides at low pressures.
机译:通过X射线光电子能谱(XPS)直接研究了通过热脱附去除Pt参考质量上的高汞污染。随后研究了污染机理。使用XPS和重量分析法研究了暴露在空气中汞蒸气中的PtIr和AuPt样品。我们发现汞污染非常迅速,在几分钟之内发生,并在2 h至4 h后达到初始平衡状态。大约1到2个汞单层直接吸附在金属表面上。顶部的自然是碳和氧化合物的污染。由于汞的积累,我们发现质量增加相当于PtIr标准品的20μg至26μg。来自历史悠久的Pt标准的XPS数据提供了强有力的证据,表明在一个多世纪的时间里,平均汞累积量进一步达到(1.3±0.1)μg/年。这可以通过本研究中介绍的两步机制来解释。污染的速度取决于初始表面条件。抛光可活化表面并导致汞的积累增加。 C和O的自然污染会延迟但不能防止污染。我们进一步证明,可以通过氢等离子体和热脱附去除汞污染。氢等离子体除去汞可直接归因于在低压下合成气态二氢化汞。

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