A comprehensive study of apatite grains in Ryugu rock fragments

IF 2.2 4区 地球科学 Q2 GEOCHEMISTRY & GEOPHYSICS Meteoritics & Planetary Science Pub Date : 2024-05-11 DOI:10.1111/maps.14177
B. J. Tkalcec, P. Tack, E. De Pauw, B. Bazi, B. Vekemans, M. Lindner, L. Vincze, M. Di Michiel, J. Garrevoet, G. Falkenberg, T. Nakamura, T. Morita, K. Amano, D. Nakashima, F. Langenhorst, K. Pollok, H. Yurimoto, T. Noguchi, R. Okazaki, H. Yabuta, H. Naraoka, K. Sakamoto, S. Tachibana, T. Yada, M. Nishimura, A. Nakato, A. Miyazaki, K. Yogata, M. Abe, T. Okada, T. Usui, M. Yoshikawa, T. Saiki, S. Tanaka, F. Terui, S. Nakazawa, S. Watanabe, Y. Tsuda, F. E. Brenker
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Abstract

Apatite is present as an accessory phase in many meteorites and is often formed as a secondary product of aqueous alteration. Its propensity to incorporate rare earth elements (REE) results in apatite usually being the main REE-bearing phase in hydrously altered meteorites. Asteroid Ryugu is thought to have experienced pervasive aqueous alteration and material collected from the surface of Ryugu is expected to provide insight into asteroidal aqueous alteration processes without influence by terrestrial weathering. Morphologies and mineral associations of apatite grains from five rock fragments collected from the asteroid Ryugu by the Hayabusa2 spacecraft were examined and their REE concentrations were measured by synchrotron X-ray fluorescence (SXRF) spectroscopy. The main minerals associated with apatite are dolomite, magnetite, and pyrrhotite. Grain boundary corrosion of the interfaces between apatite assemblages and the surrounding matrix suggest that paragenetic formation on the asteroid was followed by a later episode of hydrous alteration. Light REE (LREE) concentration levels recorded at 20–150 times those of bulk CI levels together with a steady increase from LREE toward enrichment of medium REE (MREE, up to Er) at 50–400 times bulk CI levels may suggest postgenetic removal of LREE from Ryugu apatite grains by late-stage circulation of a hydrothermal fluid.

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龙宫岩石碎片中磷灰石颗粒的综合研究
磷灰石是许多陨石的附属相,通常是水蚀变的次生产物。由于磷灰石具有结合稀土元素(REE)的倾向,因此通常是水蚀变陨石中主要的含稀土元素相。小行星龙宫被认为经历了普遍的水蚀变,从龙宫表面采集的材料有望让人们深入了解不受陆地风化影响的小行星水蚀变过程。通过同步辐射 X 射线荧光(SXRF)光谱,研究了隼鸟 2 号航天器从龙宫小行星上采集的五块岩石碎片中磷灰石颗粒的形态和矿物关联,并测量了其 REE 浓度。与磷灰石相关的主要矿物是白云石、磁铁矿和黄铁矿。磷灰石集合体与周围基质之间界面的晶界腐蚀表明,小行星上的副成因形成之后又发生了水化蚀变。记录到的轻度 REE(LREE)浓度水平是大体积 CI 水平的 20-150 倍,而且中度 REE(MREE,最高为 Er)浓度从 LREE 稳步上升到大体积 CI 水平的 50-400 倍,这可能表明龙宫磷灰石晶粒中的 LREE 是在成因后期通过热液循环从龙宫磷灰石晶粒中去除的。
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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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