English
 
Help Privacy Policy Disclaimer
  Advanced SearchBrowse

Item

ITEM ACTIONSEXPORT
  Mode of occurrence, textural settings and nitrogen-isotopic compositions of in situ diamonds and other carbon phases in the Bencubbin meteorite

Mostefaoui, S., El Goresy, A., Hoppe, P., Gillet, P., & Ott, U. (2002). Mode of occurrence, textural settings and nitrogen-isotopic compositions of in situ diamonds and other carbon phases in the Bencubbin meteorite. Earth and Planetary Science Letters, 204(1-2), 89-100.

Item is

Basic

show hide
Genre: Journal Article
Alternative Title : Earth Planet. Sci. Lett.

Files

show Files

Locators

show

Creators

show
hide
 Creators:
Mostefaoui, S.1, Author           
El Goresy, A.1, Author           
Hoppe, P.1, Author           
Gillet, P., Author
Ott, U.1, Author           
Affiliations:
1Cosmochemistry, Max Planck Institute for Chemistry, Max Planck Society, ou_1826294              

Content

show
hide
Free keywords: meteorites; bencubbinites; N-15/N-14; shock-induced diamonds; NanoSIMS
 Abstract: Investigations on a polished thin section (PTS) by reflected- light microscopy, laser micro-Raman spectroscopy, and cathodoluminescence of the Bencubbin meteorite revealed the presence of diamond grains ranging in size from 200 nm to 1 mum in Fe-Ni metal, silicates, and at metal-silicate interfaces. Most of the diamonds are associated with poorly graphitized carbon (PGC). Nitrogen isotopic measurements with the new generation NanoSIMS 50 ion microprobe indicate the presence of two isotopically distinct types of nitrogen carriers: One carrier type consists of diamonds, their associated PGCs, and diamond-free PGCs (called group-B). It is N-poor and has isotopically close to normal N. The other carrier type consists only of diamond-free PGCs (called group-A), is N-rich and heavily enriched in N-15 (delta(15)N(max) similar to 1000 parts per thousand). The petrographic and Raman characteristics of the diamonds are indicative of formation by shock. The difference in the N-isotopic compositions of diamonds and the associated group-B PGCs on the one hand, and the group-A diamond-free PGCs on the other, suggests that a N-15-rich component was probably incorporated into the Bencubbin parent body in an episode subsequent to the shock event that induced carbon-diamond phase transformation from the pristine PGCs with isotopically normal nitrogen. In the second episode, presumably in a milder shock event, significant amounts of N were delivered and redistributed among different phases. The isotopically heavy N signature is hence not pristine to the Bencubbin parent body, but was brought in by a second impactor. (C) 2002 Elsevier Science B.V. All rights reserved.

Details

show
hide
Language(s): eng - English
 Dates: 2002-11-30
 Publication Status: Issued
 Pages: -
 Publishing info: -
 Table of Contents: -
 Rev. Type: Peer
 Identifiers: eDoc: 6279
ISI: 000179477200007
 Degree: -

Event

show

Legal Case

show

Project information

show

Source 1

show
hide
Title: Earth and Planetary Science Letters
  Alternative Title : Earth Planet. Sci. Lett.
Source Genre: Journal
 Creator(s):
Affiliations:
Publ. Info: -
Pages: - Volume / Issue: 204 (1-2) Sequence Number: - Start / End Page: 89 - 100 Identifier: ISSN: 0012-821X