3.9 Article

Comparing dust flux records from the Subarctic North Pacific and Greenland: Implications for atmospheric transport to Greenland and for the application of dust as a chronostratigraphic tool

期刊

PALEOCEANOGRAPHY
卷 30, 期 6, 页码 583-600

出版社

AMER GEOPHYSICAL UNION
DOI: 10.1002/2014PA002748

关键词

Subarctic North Pacific; eolian dust; helium-4; atmospheric circulation; chronostratigrapy; paleoreservoir age

资金

  1. U.S. NSF [OCE1060907]
  2. DFG (German National Science Foundation) through the DFG-Leibniz Center for Surface Process and Climate Studies at the University of Potsdam
  3. NOAA Climate and Global Change Postdoctoral Fellowship
  4. Division Of Ocean Sciences
  5. Directorate For Geosciences [1060907] Funding Source: National Science Foundation

向作者/读者索取更多资源

We present a new record of eolian dust flux to the western Subarctic North Pacific (SNP) covering the past 27,000years based on a core from the Detroit Seamount. Comparing the SNP dust record to the North Greenland Ice Core Project (NGRIP) ice core record shows significant differences in the amplitude of dust changes to the two regions during the last deglaciation, while the timing of abrupt changes is synchronous. If dust deposition in the SNP faithfully records its mobilization in East Asian source regions, then the difference in the relative amplitude must reflect climate-related changes in atmospheric dust transport to Greenland. Based on the synchronicity in the timing of dust changes in the SNP and Greenland, we tie abrupt deglacial transitions in the Th-230-normalized He-4 flux record to corresponding transitions in the well-dated NGRIP dust flux record to provide a new chronostratigraphic technique for marine sediments from the SNP. Results from this technique are complemented by radiocarbon dating, which allows us to independently constrain radiocarbon paleoreservoir ages. We find paleoreservoir ages of 745140years at 11,653year B.P., 680228years at 14,630year B.P., and 790498years at 23,290year B.P. Our reconstructed paleoreservoir ages are consistent with modern surface water reservoir ages in the western SNP. Good temporal synchronicity between eolian dust records from the Subantarctic Atlantic and equatorial Pacific and the ice core record from Antarctica supports the reliability of the proposed dust tuning method to be used more widely in other global ocean regions.

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