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The cosmochemical behavior of mercury

机译:汞的宇宙化学行为

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摘要

We review long-standing reports of both the 'Hg paradox' that Hg abundances in meteorites are inconsistent with its volatile behavior and the anomalous ~(196)Hg/~(202)Hg ratios in all types of extraterrestrial material. A careful study of the literature suggests that both results may be due to overestimation of ~(202)Gh abundances from neutron activation analysis. We reevaluate Hg condensation in the solar nebula using both volatility trends for chondritic meteorites and thermodynamic calculations. The extent of Hg depletion in Allende indicates a 50% condensation temperature of 350 K. Thermodynamic calculations show that Hg condenses into various metal alloys at 300 K or lower. At lower temperatures, Hg can be incorporated into Fe, Ni sulfides as a trace element. We investigate chemisorption as a method for incorporating Hg into solid material in the solar nebula. A large fraction of Hg can chemisorb on metal surfaces at temperatures as high as 515 K, depending on the grain size.
机译:我们回顾了关于“汞悖论”的长期报道,即陨石中的汞丰度与其挥发性行为以及所有类型的地球外物质中异常的〜(196)Hg /〜(202)Hg比率不一致。对文献的仔细研究表明,两种结果都可能是由于中子活化分析对〜(202)Gh丰度的高估。我们使用软骨状陨石的挥发性趋势和热力学计算来重新评估太阳星云中的汞凝结。汞在阿连德的耗竭程度表明50%的冷凝温度为350K。热力学计算表明,汞在300 K或更低的温度下冷凝成各种金属合金。在较低的温度下,Hg可以作为微量元素掺入Fe,Ni硫化物中。我们研究化学吸附作为一种将汞掺入太阳星云中固体物质的方法。取决于晶粒大小,大部分汞会在高达515 K的温度下化学吸附在金属表面上。

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