globalchange  > 过去全球变化的重建
DOI: 10.1016/j.quascirev.2015.12.019
Scopus记录号: 2-s2.0-84952815255
论文题名:
Plant wax δD values record changing Eastern Mediterranean atmospheric circulation patterns during the 8.2 kyr B.P. climatic event
作者: Schemmel F.; Niedermeyer E.M.; Schwab V.F.; Gleixner G.; Pross J.; Mulch A.
刊名: Quaternary Science Reviews
ISSN: 2773791
出版年: 2016
卷: 133
起始页码: 96
结束页码: 107
语种: 英语
英文关键词: 8.2 kyr B.P. climatic event ; Atmospheric circulation ; Holocene ; Plant wax δD ; Precipitation
Scopus关键词: Climatology ; Moisture ; Moisture control ; Paraffins ; Precipitation (chemical) ; Air mass trajectories ; Atmospheric circulation ; Atmospheric circulation patterns ; Climatic events ; Holocenes ; Mediterranean climates ; Precipitation distribution ; Stable hydrogen isotope ; Meteorology ; air mass ; alkane ; atmospheric circulation ; Holocene ; hydrogen isotope ; isotopic composition ; Northern Hemisphere ; precipitation (climatology) ; temperature effect ; trajectory ; Aegean Sea ; Africa ; Asia ; Greece ; Mediterranean Region ; Mediterranean Sea ; Siberia
英文摘要: Throughout the Holocene, the climate of the Mediterranean region has been strongly influenced by variability in the atmospheric circulation of the high and low latitudes. A prominent example for such Holocene climate perturbations is the '8.2 kyr B.P. climatic event'. Reorganization of Northern Hemisphere atmospheric circulation patterns resulted in variations of temperature and precipitation distribution across the Mediterranean. The effects of changing high- and low-latitude atmospheric circulation on Mediterranean climate in relation to the 8.2 kyr B.P. climatic event are, however, not well understood. Here we present a high-resolution record of stable hydrogen isotope composition of plant-wax n-alkanes (δDwax) across the 8.2 kyr B.P. climatic event from the Tenaghi Philippon peat deposit (NE Greece) in order to characterize patterns of precipitation and changes in atmospheric circulation in the Eastern Mediterranean region. Our record reveals pronounced changes in δDwax that correlate closely with previously published palynological data. A long-term decline in δDwax values characterizes the lower part of the section. The 8.2 kyr B.P. climatic event itself is connected to two distinct positive δDwax excursions: a minor shift in δDwax around 8.2 kyr B.P. and a major shift in δDwax between ca. 8.1 and 8.0 kyr B.P.. The upper part of the section shows a progressive trend towards higher δDwax values. We link shifts in δDwax to changes in Mediterranean air mass trajectories supplying precipitation to NE Greece caused by variations in the relative contributions of northerly-derived, D-depleted moisture and southerly-derived, D-enriched moisture. Possible control mechanisms for alternating air mass trajectories include changes in the influence of the Siberian High and differences in the influence of the African and Asian monsoon circulation on anticyclonic conditions in the Mediterranean region as well as regional inflow of moist air masses from the Aegean Sea. © 2016 Published by Elsevier Ltd.
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资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/59697
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作者单位: Senckenberg Biodiversity and Climate Research Centre (BiK-F), Senckenberg, Senckenberganlage 25, Frankfurt am Main, Germany; Institute for Inorganic and Analytic Chemistry, University Jena, Humboldstraße 8, Jena, Germany; Max Planck Institute for Biogeochemistry, Hans-Knöll-Straße 10, Jena, Germany; Paleoenvironmental Dynamics Group, Institute of Earth Sciences, University of Heidelberg, Im Neuenheimer Feld 234, Heidelberg, Germany; Institute of Geosciences, Goethe University Frankfurt, Altenhöferallee 1, Frankfurt am Main, Germany

Recommended Citation:
Schemmel F.,Niedermeyer E.M.,Schwab V.F.,et al. Plant wax δD values record changing Eastern Mediterranean atmospheric circulation patterns during the 8.2 kyr B.P. climatic event[J]. Quaternary Science Reviews,2016-01-01,133
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