Integrated chronostratigraphy of Proterozoic–Cambrian boundary beds in the western Anabar region, northern Siberia
- 1 September 1996
- journal article
- research article
- Published by Cambridge University Press (CUP) in Geological Magazine
- Vol. 133 (5) , 509-533
- https://doi.org/10.1017/s0016756800007810
Abstract
Carbonate-rich sedimentary rocks of the western Anabar region, northern Siberia, preserve an exceptional record of evolutionary and biogeochemical events near the Proterozoic/Cambrian boundary. Sedimentologically, the boundary succession can be divided into three sequences representing successive episodes of late transgressive to early highstand deposition; four parasequences are recognized in the sequence corresponding lithostratigraphically to the Manykai Formation. Small shelly fossils are abundant and include many taxa that also occur in standard sections of southeastern Siberia. Despite this coincidence of faunal elements, biostratigraphic correlations between the two regions have been controversial because numerous species that first appear at or immediately above the basal Tommotian boundary in southeastern sections have first appearances scattered through more than thirty metres of section in the western Anabar. Carbon- and Sr-isotopic data on petrographically and geochemically screened samples collected at one- to two-metre intervals in a section along the Kotuikan River, favour correlation of the Staraya Reckha Formation and most of the overlying Manykai Formation with sub-Tommotian carbonates in southeastern Siberia. In contrast, isotopic data suggest that the uppermost Manykai Formation and the basal 26 m of the unconformably overlying Medvezhya Formation may have no equivalent in the southeast; they appear to provide a sedimentary and palaeontological record of an evolutionarily significant time interval represented in southeastern Siberia only by the sub-Tommotian unconformity. Correlations with radiometrically dated horizons in the Olenek and Kharaulakh regions of northern Siberia suggest that this interval lasted approximately three to six million years, during which essentially all 'basal Tommotian' small shelly fossils evolved.Keywords
This publication has 60 references indexed in Scilit:
- Sr and C isotopes in Lower Cambrian carbonates from the Siberian craton: A paleoenvironmental record during the ‘Cambrian explosion’Published by Elsevier ,2002
- Constraints on the early Cambrian radiation and correlation of the Tommotian and Nemakit-Daldynian regional stages of eastern SiberiaJournal of the Geological Society, 1995
- A carbon isotope reference scale for the Lower Cambrian succession in Siberia: report of IGCP Project 303Geological Magazine, 1994
- Rb-Sr systematics of Vendian-Cambrian claystones from the east European Platform: implications for a multi-stage illite evolutionChemical Geology, 1994
- Precambrian-Cambrian boundary global stratotype ratified and a new perspective of Cambrian timeGeology, 1994
- Stable isotopic calibration of the earliest skeletal fossil assemblages in eastern Siberia (Precambrian‐Cambrian boundary)Terra Nova, 1993
- Precambrian/Cambrian boundary problem: Carbon isotope correlations for Vendian and Tommotian time between Siberia and MoroccoGeology, 1991
- Carbonate ramp‐to‐deeper shale shelf transitions of an Upper Cambrian intrashelf basin, Nolichucky Formation, Southwest Virginia AppalachiansSedimentology, 1981
- Evolution of Florida Bay from island stratigraphyGSA Bulletin, 1979
- Wave‐generated structures and sequences from a shallow marine succession, Lower Carboniferous, County Cork, IrelandSedimentology, 1977