Land-sea coupling of early Pleistocene glacial cycles in the southern North Sea exhibit dominant Northern Hemisphere forcing

被引:15
作者
Donders, Timme H. [1 ,2 ]
van Helmond, Niels A. G. M. [3 ]
Verreussel, Roel [2 ]
Munsterman, Dirk [4 ]
ten Veen, Johan [4 ]
Speijer, Robert P. [5 ]
Weijers, JohanW. H. [3 ,8 ]
Sangiorgi, Francesca [3 ]
Peterse, Francien [3 ]
Reichart, Gert-Jan [3 ,6 ]
Damste, Jaap S. Sinninghe [3 ,6 ]
Lourens, Lucas [3 ]
Kuhlmann, Gesa [7 ]
Brinkhuis, Henk [3 ,6 ]
机构
[1] Univ Utrecht, Fac Geosci, Dept Phys Geog, Heidelberglaan 2, NL-3584 CD Utrecht, Netherlands
[2] Netherlands Org Appl Sci Res, TNO Appl Geosci, Princetonlaan 6, NL-3584 CB Utrecht, Netherlands
[3] Univ Utrecht, Fac Geosci, Dept Earth Sci, Heidelberglaan 2, NL-3584 CS Utrecht, Netherlands
[4] Netherlands Org Appl Sci Res, TNO Geol Survey Netherlands, Princetonlaan 6, NL-3584 CB Utrecht, Netherlands
[5] Katholieke Univ Leuven, Dept Earth & Environm Sci, B-3001 Heverlee, Belgium
[6] NIOZ Royal Netherlands Inst Sea Res, NL-1790 AB Den Burg, Texel, Netherlands
[7] Geozentrum Hannover, BGR Fed Inst Geosci & Nat Resources, Stilleweg 2, D-30655 Hannover, NH, Germany
[8] Shell Global Solut Int BV, Grasweg 31, NL-1031 HW Amsterdam, Netherlands
关键词
TERRESTRIAL ORGANIC-MATTER; DINOFLAGELLATE CYSTS; LATE PLIOCENE; LATE NEOGENE; ICE-SHEET; ISOTOPE STRATIGRAPHY; POLLEN TRANSPORT; ATLANTIC-OCEAN; CLIMATE; QUATERNARY;
D O I
10.5194/cp-14-397-2018
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
We assess the disputed phase relations between forcing and climatic response in the early Pleistocene with a spliced Gelasian (similar to 2.6-1.8 Ma) multi-proxy record from the southern North Sea basin. The cored sections couple climate evolution on both land and sea during the intensification of Northern Hemisphere glaciation (NHG) in NW Europe, providing the first well-constrained stratigraphic sequence of the classic terrestrial Praetiglian stage. Terrestrial signals were derived from the Eridanos paleoriver, a major fluvial system that contributed a large amount of freshwater to the northeast Atlantic. Due to its latitudinal position, the Eridanos catchment was likely affected by early Pleistocene NHG, leading to intermittent shutdown and reactivation of river flow and sediment transport. Here we apply organic geochemistry, palynology, carbonate isotope geochemistry, and seismostratigraphy to document both vegetation changes in the Eridanos catchment and regional surface water conditions and relate them to early Pleistocene glacial-interglacial cycles and relative sea level changes. Paleomagnetic and palynological data provide a solid integrated timeframe that ties the obliquity cycles, expressed in the borehole geophysical logs, to Marine Isotope Stages (MIS) 103 to 92, independently confirmed by a local benthic oxygen isotope record. Marine and terrestrial palynological and organic geochemical records provide high-resolution reconstructions of relative terrestrial and sea surface temperature (TT and SST), vegetation, relative sea level, and coastal influence. During the prominent cold stages MIS 98 and 96, as well as 94, the record indicates increased non-arboreal vegetation, low SST and TT, and low relative sea level. During the warm stages MIS 99, 97, and 95 we infer increased stratification of the water column together with a higher percentage of arboreal vegetation, high SST, and relative sea level maxima. The early Pleistocene distinct warm-cold alterations are synchronous between land and sea, but lead the relative sea level change by 3000-8000 years. The record provides evidence for a dominantly Northern Hemisphere-driven cooling that leads the glacial buildup and varies on the obliquity timescale. Southward migration of Arctic surface water masses during glacials, indicated by cool-water dinoflagellate cyst assemblages, is furthermore relevant for the discussion on the relation between the intensity of the Atlantic meridional overturning circulation and ice sheet growth.
引用
收藏
页码:397 / 411
页数:15
相关论文
共 121 条
  • [1] A comparative study of lipids in Sphagnum species
    Baas, M
    Pancost, R
    van Geel, B
    Damsté, JSS
    [J]. ORGANIC GEOCHEMISTRY, 2000, 31 (06) : 535 - 541
  • [2] BAKKEN K, 1986, BOREAS, V15, P185
  • [3] Final closure of Panama and the onset of northern hemisphere glaciation
    Bartoli, G
    Sarnthein, M
    Weinelt, M
    Erlenkeuser, H
    Garbe-Schönberg, D
    Lea, DW
    [J]. EARTH AND PLANETARY SCIENCE LETTERS, 2005, 237 (1-2) : 33 - 44
  • [4] Atmospheric CO2 decline during the Pliocene intensification of Northern Hemisphere glaciations
    Bartoli, Gretta
    Hoenisch, Baerbel
    Zeebe, Richard E.
    [J]. PALEOCEANOGRAPHY, 2011, 26
  • [5] Bijlsma S., 1981, GEOLOGIE MIJNBOUW, P337
  • [6] Numerical modeling of the response of alluvial rivers to Quaternary climate change
    Bogaart, PW
    van Balen, RT
    [J]. GLOBAL AND PLANETARY CHANGE, 2000, 27 (1-4) : 147 - 163
  • [7] DISTRIBUTION OF NORMAL-PARAFFINS AS A CLUE TO RECOGNITION OF SOURCE BEDS
    BRAY, EE
    EVANS, ED
    [J]. GEOCHIMICA ET COSMOCHIMICA ACTA, 1961, 22 (01) : 2 - 15
  • [8] Relative importance of meridional and zonal sea surface temperature gradients for the onset of the ice ages and Pliocene-Pleistocene climate evolution
    Brierley, Christopher M.
    Fedorov, Alexey V.
    [J]. PALEOCEANOGRAPHY, 2010, 25
  • [9] Pliocene Warmth, Polar Amplification, and Stepped Pleistocene Cooling Recorded in NE Arctic Russia
    Brigham-Grette, Julie
    Melles, Martin
    Minyuk, Pavel
    Andreev, Andrei
    Tarasov, Pavel
    DeConto, Robert
    Koenig, Sebastian
    Nowaczyk, Norbert
    Wennrich, Volker
    Rosen, Peter
    Haltia, Eeva
    Cook, Tim
    Gebhardt, Catalina
    Meyer-Jacob, Carsten
    Snyder, Jeff
    Herzschuh, Ulrike
    [J]. SCIENCE, 2013, 340 (6139) : 1421 - 1427
  • [10] Caston V. N. D., 1979, ELSEVIER OCEANOGRA A, V24A, P195