Publication
Names
  • D.L. Schrader
  • I.A. Franchi
  • H.C. Connolly
  • R.C. Greenwood
  • D.S. Lauretta
  • J.M. Gibson
Title
The formation and alteration of the Renazzo-like carbonaceous chondrites I: Implications of bulk-oxygen isotopic composition
Abstract
To better understand the role of aqueous alteration on the CR chondrite parent asteroid, a whole-rock oxygen isotopic study of 20 meteorites classified as Renazzo-like carbonaceous chondrites (CR) was conducted. The CR chondrites analyzed for their oxygen isotopes were Dhofar 1432, Elephant Moraine (EET) 87770, EET 92042, EET 96259, Gao-Guenie (b), Graves Nunataks (GRA) 95229, GRA 06100, Grosvenor Mountains (GRO) 95577, GRO 03116, LaPaz Ice Field (LAP) 02342, LAP 04720, Meteorite Hills (MET) 00426, North West Africa (NWA) 801, Pecora Escarpment (PCA) 91082, Queen Alexandra Range (QUE) 94603, QUE 99177, and Yamato-793495 (Y-793495). Three of the meteorites, Asuka-881595 (A-881595), GRA 98025, and MET 01017, were found not to be CR chondrites. The remaining samples concur petrographically and with the well-established oxygen-isotope mixing line for the CR chondrites. Their position along this mixing line is controlled both by the primary oxygen-isotopic composition of their individual components and their relative degree of aqueous alteration. Combined with literature data and that of this study, we recommend the slope for the CR-mixing line to be 0.70 ± 0.04 (2sigma), with a delta 17O-intercept of -2.23 ± 0.14 (2sigma). Thin sections of Al Rais, Shisr 033, Renazzo, and all but 3 samples analyzed for oxygen isotopes were studied petrographically. The abundance of individual components is heterogeneous among the CR chondrites, but FeO-poor chondrules and matrix are the most abundant constituents and therefore, dominate the whole-rock isotopic composition. The potential accreted ice abundance, physico-chemical conditions of aqueous alteration (e.g. temperature and composition of the fluid) and its duration control the degree of alteration of individual CR chondrites. Combined with literature data, we suggest that LAP 02342 was exposed to lower temperature fluid during alteration than GRA 95229. With only two falls, terrestrial alteration of the CR chondrites complicates the interpretation of their whole rock isotopic composition, particularly in the most aqueously altered samples, and those with relatively higher matrix abundances. We report that QUE 99177 is the isotopically lightest whole rock CR chondrite known (delta 18O = -2.290/00, delta 17O = -4.080/00), possibly due to isotopically light unaltered matrix; which shows that the anhydrous component of the CR chondrites is isotopically lighter than previously thought. Although it experienced aqueous alteration, QUE 99177 provides the best approximation of the pristine CR-chondrite parent body's oxygen-isotopic composition, before aqueous alteration took place. Using this value as a new upper limit on the anhydrous component of the CR chondrites, water/rock ratios were recalculated and found to be higher than previously thought; ratios now range from 0.281 to 1.157. We also find that, according to their oxygen isotopes, a large number of CR chondrites appear to be minimally aqueously altered; although sample heterogeneity complicates this interpretation.
Keywords
meteorites, carbonaceous chondrites, CR chondrites, oxygen isotopes, meteorite Dhofar 1432, meteorite Elephant Moraine EET 87770, meteorite Elephant Moraine EET 92042, meteorite Elephant Moraine EET 96259, meteorite Gao-Guenie, meteorite Graves Nunataks GRA 95229, meteorite Graves Nunataks GRA 06100, meteorite Grosvenor Mountains GRO 95577, meteorite Grosvenor Mountains GRO 03116, meteorite LaPaz Ice Field LAP 02342, meteorite LaPaz Ice Field LAP 04720, meteorite Meteorite Hills MET 00426, meteorite North West Africa NWA 801, meteorite Pecora Escarpment PCA 91082, meteorite Queen Alexandra Range QUE 94603, meteorite Queen Alexandra Range QUE 99177, meteorite Yamato-793495 (Y-793495), modal abundances
Content
material-matter, planetary sciences
Year
2011
Journal
Geochimica et Cosmochimica Acta
Volume
75
Number
1
Pages
308 - 325
Pages number
18
Document type
article
Publication state
published
Comments
oxygen isotopic composition of CR chondrites - interpretation in terms of extent of aqueous alteration