Search for meteoritic GEMS II: Comparison of inclusions in amorphous silicates from the Paris chondrite and from anhydrous chondritic interplanetary dust particles
Autor: | K. K. Ohtaki, Thomas Stephan, K. L. Villalon, John P. Bradley, Hope A. Ishii, Andrew M. Davis |
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Rok vydání: | 2021 |
Předmět: |
Materials science
010504 meteorology & atmospheric sciences Pentlandite engineering.material 010502 geochemistry & geophysics 01 natural sciences Silicate Astrobiology Amorphous solid chemistry.chemical_compound Interplanetary dust cloud chemistry Geochemistry and Petrology Chondrite engineering Glass with embedded metal and sulfides 0105 earth and related environmental sciences |
Zdroj: | Geochimica et Cosmochimica Acta. 310:346-362 |
ISSN: | 0016-7037 |
DOI: | 10.1016/j.gca.2021.05.041 |
Popis: | Amorphous silicates containing abundant nano-inclusions have been reported in the Paris CM chondrite (Leroux et al., 2015). They have chemical and morphological similarities to glass with embedded metal and sulfides (GEMS) found in interplanetary dust particles (IDPs) and micrometeorites believed to originate from comets. We used scanning transmission electron microscopy (STEM) with energy-dispersive X-ray spectroscopy (EDS) and nanodiffraction to study the chemistry and mineralogy of these inclusions in order to understand the origin of the GEMS-like material in Paris and its possible relationships to other materials found in primitive chondritic materials including IDP GEMS. EDS and diffraction analyses indicate compositional and mineralogical differences between the nanophase inclusions in cometary GEMS and Paris GEMS-like material. Metal inclusions are notably absent within Paris amorphous silicate. Ni-rich sulfides, including pentlandite, are common in even the least altered matrix material of Paris, while they are absent in GEMS-bearing IDPs and Ultracarbonaceous Antarctic Micrometeorites (UCAMMs). From examination of the inclusions, we cannot yet confirm or refute the possibility that GEMS-like material in Paris is related to cometary GEMS. The distinct compositions and mineralogy of the Paris material may be due to aqueous alteration of cometary GEMS precursors, but they may also denote an independent origin for meteoritic GEMS-like assemblages. |
Databáze: | OpenAIRE |
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