在还原陨石中形成含挥发性物质的天青石

IF 2.2 4区 地球科学 Q2 GEOCHEMISTRY & GEOPHYSICS Meteoritics & Planetary Science Pub Date : 2024-06-03 DOI:10.1111/maps.14220
Zoë E. Wilbur, Timothy J. McCoy, Catherine M. Corrigan, Jessica J. Barnes, Sierra V. Brown, Arya Udry
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引用次数: 0

摘要

恩斯特陨石,包括奥比里特陨石和恩斯特陨石,都是在与水星类似的极度还原条件下形成的。尽管还原性很强,但 MESSENGER 任务表明,水星表面的挥发物(如 S、Na、K、Cl)比以前认为的要丰富得多。为了更好地了解这些挥发物的矿物宿主以及它们是如何形成的,这项工作研究了一种罕见的、含钾的硫化物--djerfisherite--在enstatite chondrites和aubrites中的化学和岩石学环境。翠榴石在奥勃里特岩中的岩石学环境表明,这种关键的Cl宿主是在特罗里特岩结晶和达乌布雷特岩溶解之后形成的。在其他硫化物的边缘以及与金属的接触中,通常可以观察到辉绿岩。我们提出了在奥长陨石中形成辉绿岩的蚀变模型,即在奥长陨石母体上,通过无水、富含碱和钙的流体变质作用,辉绿岩和铁镍金属发生蚀变,生成次生辉绿岩。此外,我们还观察到在米勒山脉07139 EH3软玉和毕肖普维尔奥勃岩的撞击熔融区域内,djerfisherite中的挥发物发生了流失,并探索了太阳系其他还原体上的硫化物化学可能发生的撞击脱落变化。气相或液相相互作用可能是还原系统中富含挥发性物相形成的重要因素。虽然预计汞柱表面的大部分 Na 和 K 存在于长石中,但翠绿辉石可能是 K、Na 和 Cl 的一个次要但关键的储层。水星等还原体上的翠榴石可能是通过晚期原生变质作用形成的硫化物。
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The formation of volatile-bearing djerfisherite in reduced meteorites

Enstatite meteorites, both aubrites and enstatite chondrites, formed under exceptionally reducing conditions, similar to the planet Mercury. Despite being reduced, the MESSENGER mission showed that the surface of Mercury is more enriched in volatiles (e.g., S, Na, K, Cl) than previously thought. To better understand the mineral hosts of these volatiles and how they formed, this work examines the chemistry and petrographic settings of a rare, K-bearing sulfide called djerfisherite within enstatite chondrites and aubrites. The petrographic settings of djerfisherite within aubrites suggest this critical host of Cl formed after both the crystallization of troilite and exsolution of daubréelite. Djerfisherite is commonly observed as a rim on other sulfides and in contact with metal. We present an alteration model for djerfisherite formation in aubrite meteorites, whereby troilite and Fe-Ni metal are altered through anhydrous, alkali- and Cl-rich fluid metasomatism on the aubrite parent body to produce secondary djerfisherite. Moreover, we observe a loss of volatiles in djerfisherite within impact melted regions of the Miller Range 07139 EH3 chondrite and the Bishopville aubrite and explore the potential for impact devolatilization changes to sulfide chemistry on other reduced bodies in the Solar System. Vapor or fluid phase interactions are likely important in the formation of volatile-rich phases in reduced systems. While most Na and K on the mercurian surface is expected to be hosted in feldspar, djerfisherite is likely a minor, but critical, reservoir for K, Na, and Cl. Djerfisherite present on reduced bodies, such as Mercury, may represent sulfides formed via late-stage, primary metasomatism.

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来源期刊
Meteoritics & Planetary Science
Meteoritics & Planetary Science 地学天文-地球化学与地球物理
CiteScore
3.90
自引率
31.80%
发文量
121
审稿时长
3 months
期刊介绍: First issued in 1953, the journal publishes research articles describing the latest results of new studies, invited reviews of major topics in planetary science, editorials on issues of current interest in the field, and book reviews. The publications are original, not considered for publication elsewhere, and undergo peer-review. The topics include the origin and history of the solar system, planets and natural satellites, interplanetary dust and interstellar medium, lunar samples, meteors, and meteorites, asteroids, comets, craters, and tektites. Our authors and editors are professional scientists representing numerous disciplines, including astronomy, astrophysics, physics, geophysics, chemistry, isotope geochemistry, mineralogy, earth science, geology, and biology. MAPS has subscribers in over 40 countries. Fifty percent of MAPS'' readers are based outside the USA. The journal is available in hard copy and online.
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