Aluminium in an ocean general circulation model compared with the West Atlantic Geotraces cruises

A model of aluminium has been developed and implemented in an Ocean General Circulation Model (NEMO-PISCES). In the model, aluminium enters the ocean by means of dust deposition. The internal oceanic processes are described by advection, mixing and reversible scavenging. The model has been evaluated...

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Bibliographic Details
Published in:Journal of Marine Systems
Main Authors: van Hulten, M. M. P., Sterl, A., Tagliabue, A., Dutay, J. -C., Gehlen, M., de Baar, H. J. W., Middag, R.
Format: Article in Journal/Newspaper
Language:English
Published: 2013
Subjects:
AL
Online Access:https://hdl.handle.net/11370/8f36f9bd-b8d5-4ae5-8fc4-728d99707a27
https://research.rug.nl/en/publications/8f36f9bd-b8d5-4ae5-8fc4-728d99707a27
https://doi.org/10.1016/j.jmarsys.2012.05.005
Description
Summary:A model of aluminium has been developed and implemented in an Ocean General Circulation Model (NEMO-PISCES). In the model, aluminium enters the ocean by means of dust deposition. The internal oceanic processes are described by advection, mixing and reversible scavenging. The model has been evaluated against a number of selected high-quality datasets covering much of the world ocean, especially those from the West Atlantic Geotraces cruises of 2010 and 2011. Generally, the model results are in fair agreement with the observations. However, the model does not describe well the vertical distribution of dissolved Al in the North Atlantic Ocean. The model may require changes in the physical forcing and the vertical dependence of the sinking velocity of biogenic silica to account for other discrepancies. To explore the model behaviour, sensitivity experiments have been performed, in which we changed the key parameters of the scavenging process as well as the input of aluminium into the ocean. This resulted in a better understanding of aluminium in the ocean, and it is now clear which parameter has what effect on the dissolved aluminium distribution and which processes might be missing in the model, among which boundary scavenging and biological incorporation of aluminium into diatoms. (c) 2012 Elsevier B.V. All rights reserved.