TY - JOUR
T1 - Ultra-depleted, shallow cratonic mantle beneath West Greenland: dunitic xenoliths from Ubekendt Ejland
AU - Bernstein, Stefan
AU - Hanghøj, Karen
AU - Kelemen, Peter B.
AU - Brooks, C. Kent
N1 - Funding Information:
Acknowledgments We thank Berit Wenzel for assistance with the electron microprobe, Hans Holm and Christian Tegner for assistance in the field and Jurek Blusztajn and Robert Frei for assistance with the Os isotope analyses. Constructive reviews by Godfrey Fitton and an anonymous reviewer are appreciated. This work was supported by the Carlsberg Foundation Grant 04-0271; the Danish National Research Foundation; and NSF Research Grants OCE-9416631, OCE-0242233, EAR-9910899 and EAR-0337677.
PY - 2006/9
Y1 - 2006/9
N2 - Dunitic xenoliths from late Palaeogene, alkaline basalt flows on Ubekendt Ejland, West Greenland contain olivine with 100 × Mg/(Mg + Fe), or Mg#, between 92.0 and 93.7. Orthopyroxene has very low Al
2O
3 and CaO contents (0.024-1.639 and 0.062-0.275 wt%, respectively). Spinel has 100 × Cr/(Cr + Al), or Cr#, between 46.98 and 95.67. Clinopyroxene is absent. The osmium isotopic composition of olivine and spinel mineral separates shows a considerable span of
187Os/
188Os values. The most unradiogenic
187Os/
188Os value of 0.1046 corresponds to a Re-depletion age of ca. 3.3 Gy, while the most radiogenic value of 0.1336 is higher than present-day chondrite. The Os isotopic composition of the xenoliths is consistent with their origin as restites from a melt extraction event in the Archaean, followed by one or more subsequent metasomatic event(s). The high Cr# in spinel and low modal pyroxene of the Ubekendt Ejland xenoliths are similar to values of some highly depleted mantle peridotites from arc settings. However, highly depleted, arc-related peridotites have higher Cr# in spinel for a given proportion of modal olivine, compared to cratonic xenolith suites from Greenland, which instead form coherent trends with abyssal peridotites, dredged from modern mid-ocean ridges. This suggests that depleted cratonic harzburgites and dunites from shallow lithospheric mantle represent the residue from dry melting in the Archaean.
AB - Dunitic xenoliths from late Palaeogene, alkaline basalt flows on Ubekendt Ejland, West Greenland contain olivine with 100 × Mg/(Mg + Fe), or Mg#, between 92.0 and 93.7. Orthopyroxene has very low Al
2O
3 and CaO contents (0.024-1.639 and 0.062-0.275 wt%, respectively). Spinel has 100 × Cr/(Cr + Al), or Cr#, between 46.98 and 95.67. Clinopyroxene is absent. The osmium isotopic composition of olivine and spinel mineral separates shows a considerable span of
187Os/
188Os values. The most unradiogenic
187Os/
188Os value of 0.1046 corresponds to a Re-depletion age of ca. 3.3 Gy, while the most radiogenic value of 0.1336 is higher than present-day chondrite. The Os isotopic composition of the xenoliths is consistent with their origin as restites from a melt extraction event in the Archaean, followed by one or more subsequent metasomatic event(s). The high Cr# in spinel and low modal pyroxene of the Ubekendt Ejland xenoliths are similar to values of some highly depleted mantle peridotites from arc settings. However, highly depleted, arc-related peridotites have higher Cr# in spinel for a given proportion of modal olivine, compared to cratonic xenolith suites from Greenland, which instead form coherent trends with abyssal peridotites, dredged from modern mid-ocean ridges. This suggests that depleted cratonic harzburgites and dunites from shallow lithospheric mantle represent the residue from dry melting in the Archaean.
UR - http://www.scopus.com/inward/record.url?scp=33747093304&partnerID=8YFLogxK
U2 - 10.1007/s00410-006-0109-0
DO - 10.1007/s00410-006-0109-0
M3 - Article
SN - 0010-7999
VL - 152
SP - 335
EP - 347
JO - Contributions to Mineralogy and Petrology
JF - Contributions to Mineralogy and Petrology
IS - 3
ER -