4.2 Article

Integrating carbon isotope excursions into automated stratigraphic correlation: an example from the Silurian of Baltica

Journal

BULLETIN OF GEOSCIENCES
Volume 87, Issue 4, Pages 681-U224

Publisher

CZECH GEOLOGICAL SURVEY
DOI: 10.3140/bull.geosci.1307

Keywords

biostratigraphy; chemostratigraphy; bentonite; graphic correlation; constrained optimization; Silurian; Baltica

Funding

  1. National Science Foundation [EAR9219731, EAR9980372, OPP0338274, EAR0518939]
  2. NASA [NNX10AR78G]
  3. IGCP Project [591]
  4. NASA [NNX10AR78G, 124258] Funding Source: Federal RePORTER

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To correlate the burgeoning volume of biostratigraphic information available from the Silurian rocks of Baltica, it is advantageous to use numerical algorithms. Graphical correlation and related numerical methods routinely incorporate taxon range-ends and bentonites. Bentonites must be matched exactly. Local taxon ranges match or under-represent true ranges and may be stretched to fit hypotheses of correlation. Carbon isotope excursions are better handled as conservative uncertainty intervals - a new data class with properties and freedoms that are the opposite of taxon ranges. Uncertainty intervals match or over-represent truly correlative segments and inflexion points in the local series of isotopic ratios; they may be shrunk to fit correlations between sections. By these means, three fundamentally different kinds of stratigraphic information may be combined in a mutually supportive fashion without over-stating the precision of any of them. When incorporated as uncertainty intervals, Silurian isotopic excursions improve automated construction of inter-regional, ordinal time-lines of taxon first-and last-appearances at both the coarsest and finest resolution. The known succession of a few named excursions helps to stack relatively brief stratigraphic sections into their correct order in longer time-lines. The limits and details of individual excursions support some of the highest-resolution segments of optimized time-lines of individual taxon originations and extinctions. At intermediate scales, local taxon ranges are the unrivalled information source. For the best results, detailed taxon ranges, bentonite analyses and stable isotope time series need to be developed from the same rocks as often as possible.

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