Deutsch
 
Hilfe Datenschutzhinweis Impressum
  DetailsucheBrowse

Datensatz

DATENSATZ AKTIONENEXPORT
  Disequilibrium oxygen isotope distribution among aqueously altered minerals in Ryugu asteroid returned samples

Kita, N. T., Kitajima, K., Nagashima, K., Kawasaki, N., Sakamoto, N., Fujiya, W., et al. (2024). Disequilibrium oxygen isotope distribution among aqueously altered minerals in Ryugu asteroid returned samples. Meteoritics and Planetary Science, 59. doi:10.1111/maps.14163.

Item is

Basisdaten

einblenden: ausblenden:
Genre: Zeitschriftenartikel

Externe Referenzen

einblenden:
ausblenden:
Beschreibung:
-
OA-Status:
Hybrid

Urheber

einblenden:
ausblenden:
 Urheber:
Kita, Noriko T.1, Autor
Kitajima, Kouki1, Autor
Nagashima, Kazuhide1, Autor
Kawasaki, Noriyuki1, Autor
Sakamoto, Naoya1, Autor
Fujiya, Wataru1, Autor
Abe, Yoshinari1, Autor
Aleon, Jerome1, Autor
Alexander, Conel M. O'D.1, Autor
Amari, Sachiko1, Autor
Amelin, Yuri1, Autor
Bajo, Ken-ichi1, Autor
Bizzarro, Martin1, Autor
Bouvier, Audrey1, Autor
Carlson, Richard W.1, Autor
Chaussidon, Marc1, Autor
Choi, Byeon-Gak1, Autor
Dauphas, Nicolas1, Autor
Davis, Andrew M.1, Autor
Di Rocco, Tommaso1, Autor
Fukai, Ryota1, AutorGautam, Ikshu1, AutorHaba, Makiko K.1, AutorHibiya, Yuki1, AutorHidaka, Hiroshi1, AutorHomma, Hisashi1, AutorHoppe, Peter2, Autor           Huss, Gary R.1, AutorIchida, Kiyohiro1, AutorIizuka, Tsuyoshi1, AutorIreland, Trevor R.1, AutorIshikawa, Akira1, AutorItoh, Shoichi1, AutorKleine, Thorsten1, AutorKomatani, Shintaro1, AutorKrot, Alexander N.1, AutorLiu, Ming-Chang1, AutorMasuda, Yuki1, AutorMckeegan, Kevin D.1, AutorMorita, Mayu1, AutorMotomura, Kazuko1, AutorMoynier, Frederic1, AutorNakai, Izumi1, AutorNguyen, Ann1, AutorNittler, Larry1, AutorOnose, Morihiko1, AutorPack, Andreas1, AutorPark, Changkun1, AutorPiani, Laurette1, AutorQin, Liping1, AutorRussell, Sara S.1, AutorSchoenbaechler, Maria1, AutorTafla, Lauren1, AutorTang, Haolan1, AutorTerada, Kentaro1, AutorTerada, Yasuko1, AutorUsui, Tomohiro1, AutorWada, Sohei1, AutorWadhwa, Meenakshi1, AutorWalker, Richard J.1, AutorYamashita, Katsuyuki1, AutorYin, Qing-Zhu1, AutorYokoyama, Tetsuya1, AutorYoneda, Shigekazu1, AutorYoung, Edward D.1, AutorYui, Hiroharu1, AutorZhang, Ai-Cheng1, AutorNakamura, Tomoki1, AutorNaraoka, Hiroshi1, AutorNoguchi, Takaaki1, AutorOkazaki, Ryuji1, AutorSakamoto, Kanako1, AutorYabuta, Hikaru1, AutorAbe, Masanao1, AutorMiyazaki, Akiko1, AutorNakato, Aiko1, AutorNishimura, Masahiro1, AutorOkada, Tatsuaki1, AutorYada, Toru1, AutorYogata, Kasumi1, AutorNakazawa, Satoru1, AutorSaiki, Takanao1, AutorTanaka, Satoshi1, AutorTerui, Fuyuto1, AutorTsuda, Yuichi1, AutorWatanabe, Sei-ichiro1, AutorYoshikawa, Makoto1, AutorTachibana, Shogo1, AutorYurimoto, Hisayoshi1, Autor mehr..
Affiliations:
1external, ou_persistent22              
2Particle Chemistry, Max Planck Institute for Chemistry, Max Planck Society, ou_1826291              

Inhalt

einblenden:
ausblenden:
Schlagwörter: -
 Zusammenfassung: Oxygen 3-isotope ratios of magnetite and carbonates in aqueously altered carbonaceous chondrites provide important clues to understanding the evolution of the fluid in the asteroidal parent bodies. We conducted oxygen 3-isotope analyses of magnetite, dolomite, and breunnerite in two sections of asteroid Ryugu returned samples, A0058 and C0002, using a secondary ion mass spectrometer (SIMS). Magnetite was analyzed by using a lower primary ion energy that reduced instrumental biases due to the crystal orientation effect. We found two groups of magnetite data identified from the SIMS pit morphologies: (1) higher δ18O (from 3‰ to 7‰) and ∆17O (~2‰) with porous SIMS pits mostly from spherulitic magnetite, and (2) lower δ18O (~ −3‰) and variable ∆17O (0‰–2‰) mostly from euhedral magnetite. Dolomite and breunnerite analyses were conducted using multi-collection Faraday cup detectors with precisions ≤0.3‰. The instrumental bias correction was applied based on carbonate compositions in two ways, using Fe and (Fe + Mn) contents, respectively, because Ryugu dolomite contains higher amounts of Mn than the terrestrial standard. Results of dolomite and breunnerite analyses show a narrow range of ∆17O; 0.0‰–0.3‰ for dolomite in A0058 and 0.2‰–0.8‰ for dolomite and breunnerite in C0002. The majority of breunnerite, including large ≥100 μm grains, show systematically lower δ18O (~21‰) than dolomite (25‰–30‰ and 23‰–27‰ depending on the instrumental bias corrections). The equilibrium temperatures between magnetite and dolomite from the coarse-grained lithology in A0058 are calculated to be 51 ± 11°C and 78 ± 14°C, depending on the instrumental bias correction scheme for dolomite; a reliable temperature estimate would require a Mn-bearing dolomite standard to evaluate the instrumental bias corrections, which is not currently available. These results indicate that the oxygen isotope ratios of aqueous fluids in the Ryugu parent asteroid were isotopically heterogeneous, either spatially, or temporary. Initial water ice accreted to the Ryugu parent body might have ∆17O > 2‰ that was melted and interacted with anhydrous solids with the initial ∆17O < 0‰. In the early stage of aqueous alteration, spherulitic magnetite and calcite formed from aqueous fluid with ∆17O ~ 2‰ that was produced by isotope exchange between water (∆17O > 2‰) and anhydrous solids (∆17O < 0‰). Dolomite and breunnerite, along with some magnetite, formed at the later stage of aqueous alteration under higher water-to-rock ratios where the oxygen isotope ratios were nearly at equilibrium between fluid and solid phases. Including literature data, δ18O of carbonates decreased in the order calcite, dolomite, and breunnerite, suggesting that the temperature of alteration might have increased with the degree of aqueous alteration.

Details

einblenden:
ausblenden:
Sprache(n): eng - English
 Datum: 2024-04-01
 Publikationsstatus: Online veröffentlicht
 Seiten: -
 Ort, Verlag, Ausgabe: -
 Inhaltsverzeichnis: -
 Art der Begutachtung: -
 Identifikatoren: ISI: 001194489200001
DOI: 10.1111/maps.14163
 Art des Abschluß: -

Veranstaltung

einblenden:

Entscheidung

einblenden:

Projektinformation

einblenden:

Quelle 1

einblenden:
ausblenden:
Titel: Meteoritics and Planetary Science
Genre der Quelle: Zeitschrift
 Urheber:
Affiliations:
Ort, Verlag, Ausgabe: Fayetteville, AR : Meteoritical Society at the University of Arkansas, Dept. of Chemistry and Biochemistry
Seiten: 20 Band / Heft: 59 Artikelnummer: - Start- / Endseite: - Identifikator: ISSN: 1086-9379
CoNE: https://pure.mpg.de/cone/journals/resource/954925424162