Clay mineral alteration associated with meteorite impact in the marine environment (Barents Sea)
- 1 March 1998
- journal article
- Published by Mineralogical Society in Clay Minerals
- Vol. 33 (1) , 51-64
- https://doi.org/10.1180/000985598545426
Abstract
More than 50 samples from a Barents Sea borehole near the Mjolnir Structure (an extraterrestrial impact feature) were used to investigate changes in the clay assemblage associated with the submarine impact. Seismic evidence, the presence of shocked quartz and a prominent Ir anomaly restricted the potential impact affected zone to a 10 m interval, straddling the Jurassic/Cretaceous boundary.Increased abundance (up to 30 wt%) of a smectite, a randomly interstratified smectite-illite with 85% smectite layers, forms the basis for a two-layer oceanic impact clay model that differs from published terrestrial cases. The smectite is assumed to represent seawater-altered impact glass from the ejecta blanket material that was mixed with resuspended shelf sediments by the collision generated waves. The smectite-rich interval is almost 5 m thick. It is overlain by a coarser unit (~2 m thick) containing abundant smectite, shocked quartz grains, and anomalous Ix contents at its base. The smectite-rich interval may have originated as a density/turbidity current, generated by the impact and the collapse and erosion of the crater rim. Seawater alteration of volcanic glass and changes in the tectonic regime of the provenance area, or changing oceanic current circulation patterns could produce similar variations in the clay mineral assemblage. The most compelling evidence for the possible impact derivation of this clay assemblage is the direct association with the Mjolnir Impact Structure and associated mineralogical and geochemical anomalies.Keywords
This publication has 19 references indexed in Scilit:
- Mjølnir structure: An impact crater in the Barents SeaGeology, 1996
- Comparative mineralogical and geochemical clay sedimentation in the Betic Cordilleras and Basque-Cantabrian Basin areas at the Cretaceous-Tertiary boundarySedimentary Geology, 1995
- Cometary impacts into ocean: their recognition and the threshold constraint for biological extinctionsPalaeogeography, Palaeoclimatology, Palaeoecology, 1993
- Large impact crater in the Barents SeaGeology, 1993
- Ordovician impact crater at Kärdla, Hiiumaa Island, EstoniaTectonophysics, 1992
- Glass from the Cretaceous/Tertiary boundary in HaitiNature, 1991
- A Volcanic EruptionScientific American, 1990
- The origin of the clay minerals at the Cretaceous /Tertiary boundary in DenmarkGSA Bulletin, 1989
- The Precursor of the Cretaceous-Tertiary Boundary Clays at Stevns Klint, Denmark, and DSDP Hole 465AScience, 1984
- Spheroids at the Cretaceous-Tertiary boundary are altered impact droplets of basaltic compositionGeology, 1983