Wintertime phytoplankton bloom in the subarctic Pacific supported by continental margin iron

dc.contributor.author Lam, Phoebe J.
dc.contributor.author Bishop, James K. B.
dc.contributor.author Henning, Cara C.
dc.contributor.author Marcus, Matthew A.
dc.contributor.author Waychunas, Glenn A.
dc.contributor.author Fung, Inez Y.
dc.date.accessioned 2010-05-06T18:09:23Z
dc.date.available 2010-05-06T18:09:23Z
dc.date.issued 2006-02-01
dc.description Author Posting. © American Geophysical Union, 2006. This article is posted here by permission of American Geophysical Union for personal use, not for redistribution. The definitive version was published in Global Biogeochemical Cycles 20 (2006): GB1006, doi:10.1029/2005GB002557. en_US
dc.description.abstract Heightened biological activity was observed in February 1996 in the high-nutrient low-chlorophyll (HNLC) subarctic North Pacific Ocean, a region that is thought to be iron-limited. Here we provide evidence supporting the hypothesis that Ocean Station Papa (OSP) in the subarctic Pacific received a lateral supply of particulate iron from the continental margin off the Aleutian Islands in the winter, coincident with the observed biological bloom. Synchrotron X-ray analysis was used to describe the physical form, chemistry, and depth distributions of iron in size fractionated particulate matter samples. The analysis reveals that discrete micron-sized iron-rich hot spots are ubiquitous in the upper 200 m at OSP, more than 900 km from the closest coast. The specifics of the chemistry and depth profiles of the Fe hot spots trace them to the continental margins. We thus hypothesize that iron hot spots are a marker for the delivery of iron from the continental margin. We confirm the delivery of continental margin iron to the open ocean using an ocean general circulation model with an iron-like tracer source at the continental margin. We suggest that iron from the continental margin stimulated a wintertime phytoplankton bloom, partially relieving the HNLC condition. en_US
dc.description.sponsorship This work was supported by the U.S. Department of Energy, Office of Science, Office of Biological and Environmental Research (KP1202030) to J. K. B and by NSFATM-9987457 to I. F. The Advanced Light Source is supported by the Director, Office of Science, Office of Basic Energy Sciences, Division of Materials Sciences and Division of Chemical Sciences, Geosciences, and Biosciences of the U.S. Department of Energy at Lawrence Berkeley National Laboratory under contract DE-AC03-76SF00098. en_US
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dc.format.mimetype image/tiff
dc.format.mimetype text/plain
dc.identifier.citation Global Biogeochemical Cycles 20 (2006): GB1006 en_US
dc.identifier.doi 10.1029/2005GB002557
dc.identifier.uri https://hdl.handle.net/1912/3401
dc.language.iso en_US en_US
dc.publisher American Geophysical Union en_US
dc.relation.uri https://doi.org/10.1029/2005GB002557
dc.subject Iron en_US
dc.subject Continental margin en_US
dc.subject HNLC en_US
dc.subject Subarctic Pacific en_US
dc.title Wintertime phytoplankton bloom in the subarctic Pacific supported by continental margin iron en_US
dc.type Article en_US
dspace.entity.type Publication
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Figure S1: FeKa maps through data analysis steps for a representative sample (96006p, OSP, 71m) mapped in July 2003.
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Figure S2: Ti XRF map of SOFeX mesh blank showing Ti threshold (10th percentile) in white, outlining the “hole” regions.
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Figure S3: Cr XRF maps of SOFeX mesh blank.
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Figure S4: Determination of Fe noise function using sample Jul96006p (OSP, 71m) and Cr as a noise diagnostic.
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