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Metazoan-algal benthic ecosystems enhance automicritic slope boundstone: The Triassic Great Bank of Guizhou carbonate platform, Xiliang margin, China

Research output: Contribution to journalArticlepeer-review

Abstract

Carbonate platforms with automicritic boundstone slopes differ from detrital platforms in their architecture and reservoir proper-ties. The controls on the occurrence of automicritic boundstone slopes are poorly constrained, but they have generally been associated with depleted reefs and other metazoan-algal benthic ecosystems. To test this association, we investigated automicritic boundstone occurrence across the end-Permian extinction and Triassic biotic recovery on the Xiliang slope of the Great Bank of Gui-zhou (GBG), an isolated carbonate platform in southern China. Our findings indicate that automicritic boundstone accumulation was not enhanced by depleted Early Triassic benthic ecosystems. Instead, detrital sediment dominated the GBG slope, and automi-critic boundstone was absent until the late Spathian (latest Early Triassic), 4–5 million yr after extinction. Beginning in upper Spathian strata, automicrite forms small (<1.5 cm) and sparse (<15% estimated volume) masses in slope boundstone, coinciding with an early stage of benthic ecosystem recovery. When a metazoan-algal reef subsequently formed during more advanced recovery in the middle Anisian (lower Middle Triassic), automi-crite occurrences were more abundant (up to 40% estimated vol-ume) and larger (up to ?10 cm). The proportions of automicrite and metazoan-algal fossils within samples are also positively correlated (Spearman’s r=0.70; P < 0.0001). Our findings suggest that the controls on slope automicrite accumulation and metazoan-algal benthic ecosystems are similar or that benthic metazoans and algae enhance, rather than inhibit, automicrite accumulation. Our results imply that concept-driven predictions of automicritic boundstone occurrence should be modified—automicritic slopes are not more likely to occur during geologic intervals with depleted benthic ecosystems.

Original languageEnglish (US)
Pages (from-to)1851-1884
Number of pages34
JournalAAPG Bulletin
Volume108
Issue number10
DOIs
StatePublished - Oct 2024

All Science Journal Classification (ASJC) codes

  • Fuel Technology
  • Energy Engineering and Power Technology
  • Geology
  • Geochemistry and Petrology
  • Earth and Planetary Sciences (miscellaneous)

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