4.6 Article

Paleohydrological dynamics in the Western Mediterranean during the last glacial cycle

期刊

GLOBAL AND PLANETARY CHANGE
卷 202, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.gloplacha.2021.103527

关键词

Southern Iberian Peninsula; Leaf waxes; Hydrogen isotopes; Paleohydrology; Mid-low latitude rainfall systems; Last glacial-interglacial transition; Holocene; Western Mediterranean precipitation; West African monsoon

资金

  1. action Proyectos I+D+i del Programa Operativo FEDER 2018 -Junta de Andalucia-UGR [B-RNM-144-UGR18]
  2. Ministerio de Economia y Competitividad of Spain [CGL2013-47038-R, CGL201785415-R]
  3. Junta de Andalucia [RNM-190]
  4. Marie Curie Intra-European Fellowship of the 7th Framework Programme for Research, Technological Development and Demonstration of the European Commission (NAOSIPUK) [PIEF-GA-2012-623027]
  5. Spanish Government (Ministerio de Economia y Competividad) [RYC-2015-18966]
  6. Academy of Finland [316702]
  7. NAOSIPUK project at the University of Glasgow [PIEFGA-2012-623027]
  8. Ministerio de Economia y Competividad [BES-2018-084293]
  9. European Research Council [ERC-2017-ADG-788616]
  10. ERC Consolidator Grant (STEEPclim) [647035]
  11. DFG Cluster of Excellence 2077 >The Ocean Floor -Earth's Uncharted Interface < at MARUM
  12. Fondo Europeo de Desarrollo Regional FEDER
  13. European Research Council (ERC) [647035] Funding Source: European Research Council (ERC)
  14. Academy of Finland (AKA) [316702, 316702] Funding Source: Academy of Finland (AKA)

向作者/读者索取更多资源

Studying the paleohydrological dynamics in the western Mediterranean region provides insights into the impact of precipitation and moisture source changes on hydrogen isotopic signature, revealing the variations in precipitation patterns and their potential mechanisms. Additionally, the identification of the Western Mediterranean Humid Period (WMHP) and corresponding shifts in precipitation patterns suggest a connection to changes in the main rainy season.
The transitional regions between the low and high latitudes of the Northern Hemisphere are highly vulnerable to future climate change yet most of the current climate models usually diverge in their projections. To better understand the dynamics in these regions, the reconstruction of past hydrological fluctuations and precipitation patterns is of paramount importance to accurately constrain present and future climate scenarios. In this study, we investigated paleohydrological dynamics in the western Mediterranean region, a transitional zone between low-mid latitudes and Atlantic - Mediterranean realms. We reconstruct precipitation and moisture source changes during the last -35 ka in order to propose the potential mechanisms driving these oscillations. To do so, we use hydrogen isotopes from sedimentary leaf waxes, more specifically the C31 n-alkane homologue, and a precipitation proxy based on previously published pollen data from a sedimentary core (Padul-15-05) in southern Iberia (Padul wetland -37-N). With this combination we disentangle the coupled effect of precipitation amount and source on the hydrogen isotopic signature of the studied C31 n-alkane record. Our results show three main periods characterized by different precipitation patterns. Low precipitation, mainly linked to a significant contribution from an isotopically-enriched Mediterranean precipitation source, occurred from -30 to -15.5 ka BP and during the last -5 ka, whereas enhanced precipitation with a predominant isotopically-depleted Atlantic precipitation source prevailed from -15.5 to -5 ka BP. This latter stage is here defined as the Western Mediterranean Humid Period (WMHP). In addition, some occasional millennial-scale opposite precipitation patterns can be observed during these climatically distinct periods. These changes in the source of precipitation were likely coupled to a shift in the main rainy season from winter, when Atlantic precipitation prevailed, to late winter-early spring, when the contribution of Mediterranean moisture is higher. Comparison between the studied mid-latitude terrestrial Padul-15-05 core and a low-latitude marine record offshore of northwestern Africa shows clear long-term synchronous responses of both western Mediterranean precipitation and western African monsoon systems to northern Hemisphere atmospheric dynamics, ultimately controlled by orbital forcing and ice-sheets fluctuations.

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