Calcareous nannofossil changes in the Early Oligocene linked to nutrient and atmospheric CO2

Author:

Ma Ruigang,Yang Haizhang,Jin Xiaobo,Zhao Zhao,Zhang Gongcheng,Liu Chuanlian

Publisher

Springer Science and Business Media LLC

Subject

Aquatic Science,Oceanography

Reference71 articles.

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2. Aubry M P. 2007. A major Pliocene coccolithophore turnover: Change in morphological strategy in the photic zone. In: Monechi S, Coccioni R, Rampino M, eds. Large Ecosystem Perturbations: Causes and Consequences. The Geological Society of America, Special Paper, 424: 25–51

3. Aubry M P. 2009. A sea of Lilliputians. Palaeogeography, Palaeoclimatology, Palaeoecology, 284(1–2): 88–113, doi: https://doi.org/10.1016/j.palaeo.2009.08.020

4. Aubry M P, Bord D. 2009. Reshuffling the cards in the photic zone at the Eocene/Oligocene boundary. In: Koeberl C, Montanari A, eds. The Late Eocene Earth: Hothouse, Icehouse, and Impacts. The Geological Society of America, Special Paper, 452: 279–301

5. Auer G, Piller W E, Harzhauser M. 2014. High-resolution calcareous nannoplankton palaeoecology as a proxy for small-scale environmental changes in the Early Miocene. Marine Micropaleontology, 111: 53–65, doi: https://doi.org/10.1016/j.marmicro.2014.06.005

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