Articles | Volume 9, issue 5
https://doi.org/10.5194/bg-9-1915-2012
https://doi.org/10.5194/bg-9-1915-2012
Research article
 | 
30 May 2012
Research article |  | 30 May 2012

Timescales for the development of methanogenesis and free gas layers in recently-deposited sediments of Arkona Basin (Baltic Sea)

J. M. Mogollón, A. W. Dale, H. Fossing, and P. Regnier

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Cited articles

Arndt, S., Hetzel, A., and Brumsack, H.-J.: Evolution of organic matter degradation in Cretaceous black shales inferred from authigenic barite: A reaction-transport model, Geochim. Cosmochim. Ac., 73, 2000–2022, https://doi.org/10.1016/j.gca.2009.01.018, 2009.
Bennike, O. and Jensen, J.: Late- and postglacial shore level changes in the southwestern Baltic Sea, B. Geol. Soc. Denmark, 45, 27–38, 1998.
Bianchi, T. S., Engelhaupt, E., Westman, P., Andren, T., Rolff, C., and Elmgren, R.: Cyanobacterial blooms in the Baltic Sea: Natural or human-induced?, Limnol. Oceanogr., 45, 716–726, https://doi.org/10.4319/lo.2000.45.3.0716, 2000.
Bj{ö}rck, S.: A review of the history of the Baltic Sea, 13.0–8.0 ka BP, Quatern. Int., 27, 19–40, https://doi.org/10.1016/1040-6182(94)00057-C, 1995.
Boetius, A., Ravenschlag, K., Schubert, C. J., Rickert, D., Widdel, F., Gieseke, A., Amann, R., J{ø}rgensen, B. B., Witte, U., and Pfannkuche, O.: A marine microbial consortium apparently mediating anaerobic oxidation of methane, Nature, 407, 623–626, 2000.
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