Biotic response of calcareous nannoplankton to abrupt warming across the Paleocene/Eocene boundary reflects a primary response to climatically induced parameters including increased continental runoff of freshwater, global acidification of sea-water, high sedimentation rates, and calcareous nannoplankton assemblage turnover. We identify ecophenotypic nannofossil species adapted to low pH conditions (Discoaster anartios, D. araneus, Rhomboaster spp.), excursion taxa adapted to the extremely warm climatic conditions (Bomolithus supremus and Coccolithus bownii), three species of the genus Toweius (T. serotinus, T. callosus, T. occultatus) adapted to warm, rather than cool, water conditions, opportunists adapted to high productivity conditions (Coronocyclus bramlettei, Neochiastozygus junctus), and species adapted to oligotropic and/or cool water conditions that went into refugium during the PETM (Zygrablithus bijugatus, Calcidiscus? parvicrucis and Chiasmolithus bidens). Discoaster anartios was adapted to meso- to eutrophic, rather than oligotrophic, conditions. Comparison of these data to previous work on sediments deposited on shelf settings suggests that local conditions such as high precipitation rates and possible increase in major storms such as hurricanes resulted in increased continental run-off and high sedimentation rates that affected assemblage response to the PETM.
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- 2013/06/3-7 Ocean acidification session at the 9th International Carbon Dioxide Conference (ICDC9), Beijing, China.
- 2013/07/22-24 Third Annual Science Meeting of the UK Ocean Acidification Research Programme (UKOA ASM), St Andrews, Scotland.
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- 2013/07/4. Aquatic life in a warmer and higher CO2 world – session at SEB, Valencia, Spain.
- 2013/08/25-30 "Ocean Acidification: processes, time scales and biotic response", session at the 2013 Goldschmidt Conference, Florence, Italy.
- 2013/09/23-27. Session on the “Physico–chemical aspects of ocean acidification in the ICES area”, ICES Annual Science Conference, Reykjavik, Iceland.
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- Quantitative Proteomics or Biomineralization or Ocean Acidification: Postdoctoral position at HKU
- Dissolution of Carbonate Sediments Under Rising p CO2 and Ocean Acidification: Observations from Devil’s Hole, Bermuda








