Arid
DOI10.1016/j.gca.2017.05.008
The parent body controls on cosmic spherule texture: Evidence from the oxygen isotopic compositions of large micrometeorites
van Ginneken, M.1,2; Gattacceca, J.3; Rochette, P.3; Sonzogni, C.3; Alexandre, A.3; Vidal, V.3; Genge, M. J.1
通讯作者van Ginneken, M.
来源期刊GEOCHIMICA ET COSMOCHIMICA ACTA
ISSN0016-7037
EISSN1872-9533
出版年2017
卷号212页码:196-210
英文摘要

High-precision oxygen isotopic compositions of eighteen large cosmic spherules (> 500 mu m diameter) from the Atacama Desert, Chile, were determined using IR-laser fluorination - Isotope Ratio Mass spectrometry. The four discrete isotopic groups defined in a previous study on cosmic spherules from the Transantarctic Mountains (Suavet et al., 2010) were identified, confirming their global distribution. Approximately 50% of the studied cosmic spherules are related to carbonaceous chondrites, 38% to ordinary chondrites and 12% to unknown parent bodies. Approximately 90% of barred olivine (BO) cosmic spherules show oxygen isotopic compositions suggesting they are related to carbonaceous chondrites. Similarly, similar to 90% porphyritic olivine (Po) cosmic spherules are related to ordinary chondrites and none can be unambiguously related to carbonaceous chondrites. Other textures are related to all potential parent bodies. The data suggests that the textures of cosmic spherules are mainly controlled by the nature of the precursor rather than by the atmospheric entry parameters. We propose that the Po texture may essentially be formed from a coarse-grained precursor having an ordinary chondritic mineralogy and chemistry. Coarse-grained precursors related to carbonaceous chondrites (i.e. chondrules) are likely to either survive atmospheric entry heating or form V-type cosmic spherules. Due to the limited number of submicron nucleation sites after total melting, ordinary chondrite-related coarse-grained precursors that suffer higher peak temperatures will preferentially form cryptocrystalline (Cc) textures instead of BO textures. Conversely, the BO textures would be mostly related to the fine-grained matrices of carbonaceous chondrites due to the wide range of melting temperatures of their constituent mineral phases, allowing the preservation of submicron nucleation sites. Independently of the nature of the precursors, increasing peak temperatures form glassy textures. (C) 2017 The Authors. Published by Elsevier Ltd.


英文关键词Micrometeorites Cosmic spherules Oxygen isotopes Laser fluorination Parent bodies
类型Article
语种英语
国家England ; France
收录类别SCI-E
WOS记录号WOS:000405787500013
WOS关键词LASER-EXTRACTION TECHNIQUE ; TRACE-ELEMENT ABUNDANCES ; EARLY SOLAR-SYSTEM ; X-RAY-DIFFRACTION ; ATMOSPHERIC ENTRY ; TRANSANTARCTIC MOUNTAINS ; CARBONACEOUS CHONDRITES ; ANTARCTIC ICE ; CHEMICAL-COMPOSITIONS ; CHONDRULE FORMATION
WOS类目Geochemistry & Geophysics
WOS研究方向Geochemistry & Geophysics
来源机构French National Research Institute for Sustainable Development
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/199190
作者单位1.Imperial Coll London, IARC, Dept Earth Sci & Engn, Exhibit Rd, London SW7 2AZ, England;
2.Nat Hist Museum, Dept Earth Sci, Cromwell Rd, London SW7 5BD, England;
3.Aix Marseille Univ, CNRS, IRD, Coll France,CEREGE UM34, Aix En Provence, France
推荐引用方式
GB/T 7714
van Ginneken, M.,Gattacceca, J.,Rochette, P.,et al. The parent body controls on cosmic spherule texture: Evidence from the oxygen isotopic compositions of large micrometeorites[J]. French National Research Institute for Sustainable Development,2017,212:196-210.
APA van Ginneken, M..,Gattacceca, J..,Rochette, P..,Sonzogni, C..,Alexandre, A..,...&Genge, M. J..(2017).The parent body controls on cosmic spherule texture: Evidence from the oxygen isotopic compositions of large micrometeorites.GEOCHIMICA ET COSMOCHIMICA ACTA,212,196-210.
MLA van Ginneken, M.,et al."The parent body controls on cosmic spherule texture: Evidence from the oxygen isotopic compositions of large micrometeorites".GEOCHIMICA ET COSMOCHIMICA ACTA 212(2017):196-210.
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