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Euxinia

  • Geochemical Characteristics of Late Ordovician Shales in the Upper Yangtze Platform, South China: Implications for Redox Environmental Evolution

    Geochemical Characteristics of Late Ordovician Shales in the Upper Yangtze Platform, South China: Implications for Redox Environmental Evolution

  • Jocelyn A. Sessa

    Jocelyn A. Sessa

  • Microbial Diversity Under Extreme Euxinia: Mahoney Lake, Canada V

    Microbial Diversity Under Extreme Euxinia: Mahoney Lake, Canada V

  • Persistent Global Marine Euxinia in the Early Silurian ✉ Richard G

    Persistent Global Marine Euxinia in the Early Silurian ✉ Richard G

  • Coincidence of Photic Zone Euxinia and Impoverishment of Arthropods

    Coincidence of Photic Zone Euxinia and Impoverishment of Arthropods

  • This Article Was Published in an Elsevier Journal. the Attached Copy

    This Article Was Published in an Elsevier Journal. the Attached Copy

  • A Sulfidic Driver for the End-Ordovician Mass Extinction

    A Sulfidic Driver for the End-Ordovician Mass Extinction

  • Resolving Ecological Feedbacks on the Ocean Carbon Sink in Earth System Models David I

    Resolving Ecological Feedbacks on the Ocean Carbon Sink in Earth System Models David I

  • Nitrogen Cycle Feedbacks As a Control on Euxinia in the Mid-Proterozoic Ocean

    Nitrogen Cycle Feedbacks As a Control on Euxinia in the Mid-Proterozoic Ocean

  • Rapid Expansion of Oceanic Anoxia Immediately Before the End-Permian Mass Extinction

    Rapid Expansion of Oceanic Anoxia Immediately Before the End-Permian Mass Extinction

  • Transient Marine Euxinia at the End of the Terminal Cryogenian Glaciation

    Transient Marine Euxinia at the End of the Terminal Cryogenian Glaciation

  • EFFECTS of CLIMATE CHANGE and PERTURBATION in BIOGEOCHEMICAL CYCLES on OXYGEN DISTRIBUTION and OCEAN ACIDIFICATION by TERESA

    EFFECTS of CLIMATE CHANGE and PERTURBATION in BIOGEOCHEMICAL CYCLES on OXYGEN DISTRIBUTION and OCEAN ACIDIFICATION by TERESA

  • Temperature-Driven Nutrient Recycling and Euxinia As a Marine Mass Extinction Mechanism

    Temperature-Driven Nutrient Recycling and Euxinia As a Marine Mass Extinction Mechanism

  • Patterns of Local and Global Redox Variability During the Cenomanian–Turonian Boundary Event (Oceanic Anoxic Event 2)

    Patterns of Local and Global Redox Variability During the Cenomanian–Turonian Boundary Event (Oceanic Anoxic Event 2)

  • I Nutrients, Productivity, and Redox Conditions During Greenhouse

    I Nutrients, Productivity, and Redox Conditions During Greenhouse

  • End Ordovician Extinctions: a Coincidence of Causes

    End Ordovician Extinctions: a Coincidence of Causes

  • Late Ordovician Mass Extinction Caused by Volcanism, Warming, and Anoxia, Not Cooling and Glaciation David P.G

    Late Ordovician Mass Extinction Caused by Volcanism, Warming, and Anoxia, Not Cooling and Glaciation David P.G

  • Oceanic Euxinia in Earth History: Causes and Consequences Katja M

    Oceanic Euxinia in Earth History: Causes and Consequences Katja M

Top View
  • Vertebrate Anatomy Morphology Palaeontology ISSN 2292-1389 Published 2 May, 2019 Meeting Logo Design: Robin Sissons Editors: Alison M
  • Sulfur Isotopes Track the Global Extent and Dynamics of Euxinia During Cretaceous Oceanic Anoxic Event 2
  • Termination of Cryogenian Ironstone Deposition by Deep Ocean Euxinia
  • Marine Redox Variability from Baltica During Extinction Events in the Latest Ordovician–Early Silurian T ⁎ Seth A
  • (Maleimide) Proxies for the Assessment of Photic Zone Euxinia
  • Early Mississippian Ocean Anoxia Triggering
  • Mass Extinctions and the Structure and Function of Ecosystems
  • Short-Term Euxinia Coinciding with Rotaliporid Extinctions During the Cenomanian-Turonian Transition in the Middle-Neritic Easte
  • Organic Geochemistry of the Early Toarcian Oceanic Anoxic Event in Hawsker Bottoms, Yorkshire, England
  • Modelling Features of the Biological Pump and Its Impact on Marine Oxygen Distribution
  • Tracing Water Column Euxinia in Eastern Mediterranean Sapropels S5 and S7
  • Niche Expansion for Phototrophic Sulfur Bacteria at the Proterozoic–Phanerozoic Transition
  • Taphonomy of the Lower Jurassic
  • Gmd-2018-309.Pdf
  • (Llandovery–Wenlock Boundary) Mass Extinction ∗ Seth A
  • Microbial Life in the Nascent Chicxulub Crater Bettina Schaefer1, Kliti Grice1*, Marco J.L
  • Tracing-Euxinia.Pdf
  • Two Pulses of Oceanic Environmental Disturbance During the Permian–Triassic Boundary Crisis ∗ ∗ Jun Shen A, , Qinglai Feng A, Thomas J


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