Shelf hypoxia in response to global warming after the Cretaceous-Paleogene boundary impact

Publication date

2018-06-22

Authors

Vellekoop, JohanISNI 0000000452565310
Woelders, Lineke
Van Helmond, Niels A. G. M.ISNI 0000000419542360
Galeotti, Simone
Smit, Jan
Slomp, Caroline P.ISNI 0000000353313441
Brinkhuis, H.ISNI 0000000389669175
Claeys, Philippe
Speijer, Robert P.

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taverne

Abstract

The Chicxulub asteroid impact at the Cretaceous-Paleogene (K-Pg) boundary resulted in one of the most abrupt global warming events in the past 100 m.y., presenting an analogue to current global warming. Here, we present high-resolution geochemical, micropaleontological, and palynological records of the Brazos-1 (Texas, USA), Stevns Klint (Denmark), and Caravaca (Spain) K-Pg boundary sections to assess the rapid environmental changes during the global warming following the brief K-Pg boundary impact winter. Warming during the first millennia after the impact is associated with hypoxic bottom waters at the studied shelf sites, as indicated by molybdenum enrichments, causing major stress for benthic communities. We attribute this decline in dissolved oxygen to a combination of decreased gas solubility and ocean ventilation resulting from the warming of the sea water, and increased oxygen demand in shelf bottom waters due to increased nutrient inputs and associated high productivity.

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Citation

Vellekoop, J, Woelders, L, van Helmond, N A G M, Galeotti, S, Smit, J, Slomp, C P, Brinkhuis, H, Claeys, P & Speijer, R P 2018, 'Shelf hypoxia in response to global warming after the Cretaceous-Paleogene boundary impact', Geology, vol. 46, no. 8, pp. 683-686. https://doi.org/10.1130/G45000.1