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Holocene climate change in Arctic Canada and Greenland.

Authors :
Briner, Jason P.
McKay, Nicholas P.
Axford, Yarrow
Bennike, Ole
Bradley, Raymond S.
de Vernal, Anne
Fisher, David
Francus, Pierre
Fréchette, Bianca
Gajewski, Konrad
Jennings, Anne
Kaufman, Darrell S.
Miller, Gifford
Rouston, Cody
Wagner, Bernd
Source :
Quaternary Science Reviews. Sep2016, Vol. 147, p340-364. 25p.
Publication Year :
2016

Abstract

This synthesis paper summarizes published proxy climate evidence showing the spatial and temporal pattern of climate change through the Holocene in Arctic Canada and Greenland. Our synthesis includes 47 records from a recently published database of highly resolved Holocene paleoclimate time series from the Arctic (Sundqvist et al., 2014). We analyze the temperature histories represented by the database and compare them with paleoclimate and environmental information from 54 additional published records, mostly from datasets that did not fit the selection criteria for the Arctic Holocene database. Combined, we review evidence from a variety of proxy archives including glaciers (ice cores and glacial geomorphology), lake sediments, peat sequences, and coastal and deep-marine sediments. The temperature-sensitive records indicate more consistent and earlier Holocene warmth in the north and east, and a more diffuse and later Holocene thermal maximum in the south and west. Principal components analysis reveals two dominant Holocene trends, one with early Holocene warmth followed by cooling in the middle Holocene, the other with a broader period of warmth in the middle Holocene followed by cooling in the late Holocene. The temperature decrease from the warmest to the coolest portions of the Holocene is 3.0 ± 1.0 °C on average (n = 11 sites). The Greenland Ice Sheet retracted to its minimum extent between 5 and 3 ka, consistent with many sites from around Greenland depicting a switch from warm to cool conditions around that time. The spatial pattern of temperature change through the Holocene was likely driven by the decrease in northern latitude summer insolation through the Holocene, the varied influence of waning ice sheets in the early Holocene, and the variable influx of Atlantic Water into the study region. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
02773791
Volume :
147
Database :
Academic Search Index
Journal :
Quaternary Science Reviews
Publication Type :
Academic Journal
Accession number :
117644288
Full Text :
https://doi.org/10.1016/j.quascirev.2016.02.010