accessibility__skip_menu__jump_to_main

Full text: Evidence for strong relations between the upper Tagus loess formation (central Iberia) and the marine atmosphere off the Iberian margin during the last glacial period

REFERENCES 
Alcaraz-Castafio, M., 2015. Central Iberia around the last glacial 
maximum: hopes and prospects. Journal of Anthropological 
Research 7, 565-578. 
Alcaraz-Castafio, M., Löpez-Recio, M., Tapias, F., Cuartero, F., 
Baena, J., Ruiz-Zapata, B., Morin, J., Perez-Gonzälez, A., 
Santonja, M., 2017. The human settlement of central Iberia 
during MIS 2: new technological, chronological and environmen- 
tal data from the Solutrean workshop of Las Delicias (Manzanares 
River valley, Spain). Quaternary International 431, 104-124. 
Andersen, K.K., Svensson, A., Rasmussen, 5.O., Steffensen, J.P., 
Johnsen, S.J., Bigler, M., Röthlisberger, R., ef al., 2006. The 
Greenland Ice Core Chronology 2005, 15—42 ka. Partl: con- 
structing the time scale. Quaternary Science Reviews 25, 3246— 
3257. 
Antoine, P., Coutard, S., Guerin, G., Deschodt, L., Goval, E., Locht, 
J.-L., Paris, C., 2016. Upper Pleistocene loess-palaeosol records 
from Northern France in the European context: Environmental 
background and dating of the Middle Palaeolithic. Quaternary 
International 422, 4-24. 
Antoine, P., Rousseau, D.D., Fuchs, M., Hatte, C., Gauthier, C., 
Markovic, S.B., Jovanovic, M., Gaudenyi, T., Moine, O., Rossi- 
gnol, J., 2009. High-resolution record of the last climatic cycle 
in the southern Carpathian Basin (Surduk, Vojvodina, Serbia). 
Quaternary International 198, 19-36. 
Bard, E., Rostek, F., Turon, J.-L., Gendreau, S., 2000. Hydrological 
impact of Heinrich events in the subtropical northeast Atlantic. 
Science 289, 1321-1324. 
Barta, G., 2011. Secondary carbonates in loess-paleosoil sequences: 
a general review. Central European Journal of Geoscience 3, 129— 
146. 
Becze-Deäk, J., Langohr, R., Verecchia, E.P., 1997. Small scale 
secondary CaCO; accumulations in selected sections of the Euro- 
pean loess belt. Morphological forms and potential for paleoen- 
vironmental reconstruction. Geoderma 76, 221-252. 
Berke, M., Tipple, B., Hambach, B., Ehleringer, J., 2015. Life 
form-specific gradients in compound-specific hydrogen isotope 
ratios of modern leaf waxes along a North American Monsoonal 
transect. Oecologia 1-17. 
Boixadera, J., Poch, R.M., Lowick, S.E., Balasch, J.C., 2015. Loess 
and soils in the eastern Ebro Basin. Quaternary International 376. 
114-133. 
Bosqg, M., Bertran, P., Degeai, J.-P., Kreutzer, S., Queffelec, A., 
Moine, O., Morin, E., 2018. Last Glacial aeolian landforms 
and deposits in the Rhone Valley (SE France): spatial distri- 
bution and grain-size characterization. Geomorphology 318. 
250-269. 
Broecker, W., 1994. Massive iceberg discharges as triggers for 
global climate change. Nature 372, 421—424. 
Budsky, A., Wassenburg, J.A., Mertz-Kraus, R., Spötl, C., Jochum, 
K.P., Gibert, L., Scholz, D., 2019. Western Mediterranean 
climate response to Dansgaard/Oeschger events: New insights 
irom speleothem records. Geophysical Research Letters 46, 
9042-9053. 
Buggle, B., Glaser, B., Hambach, U., Gerasimenko, N., Markovic, 
S., 2011. An evaluation of geochemical weathering indices in 
loess-paleosol studies. Quaternary International 240, 12-21. 
Ruggle, B., Hambach, U., Müller, K., Zöller, L., Markovic, S.B., 
Glaser, B., 2014. Iron mineralogical proxies and Quaternary cli- 
mate change in SE-European loess-paleosol sequences. Catena 
117. 4-22. 
c 
u 
D. Wolf et al. 
Bullock, P., Fedoroff, N., Jongerius, A., Stoops, G., Tursina, T., 
1985. Handbook for Soil Thin Section Description. Waine 
Research Publications, Albrighton, UK. 152 pp. 
Burjachs, F., Juliä, R., 1994. Abrupt climate changes during the last 
gzlaciation based on pollen analyses of the Abric Romani, Catalo- 
ala, Spain. Quaternary Science Reviews 42, 308-315. 
Cacho, L., Grimalt, J.O., Pelejero, C., Canals, M., Sierro, F.J., Flores, 
J.A., Shackleton, N.J., 1999. Dansgaard-Oeschger and Heinrich 
event imprints in Alboran Sea temperatures. Paleoceanography 
14, 698-705. 
Calvo, F.R., Sanchez, J., Acosta, A., Wolf, D., Faust, D., 2016. 
Granulometrical, mineralogical and geochemical characterization 
of loess deposits in the Tajo Basin. Quaternary International 407, 
14-28. 
Carrasco, R.M., Pedraza, J., Dominguez-Villar, D., Willenbring, 
J.K., Villa, J., 2015. Sequence and chronology of the Cuerpo 
de Hombre paleoglacier (Iberian Central System) during the last 
glacial cycle. Quaternary Science Reviews 129, 163-177. 
Chapman, M.R., Shackleton, N.J., 1999. Global ice-volume fluctu- 
ations, North Atlantic ice-rafting events, and deep-ocean circula- 
(‚on changes between 130 and 70 ka. Geology 27, 795-798. 
Claussen, M., Ganopolski, A., Brovkin, V., Gerstengarbe, F.W., 
Werner, P., 2003. Simulated global-scale response of the climate 
system to Dansgaard/Oeschger and Heinrich events. Climate 
Dynamics 21, 361-370. 
Columbu, A., Chiarini, V., Spötl, C., Benazzi, S., Hellstrom, J., 
Cheng, H., De Waele, J., 2020. Speleothem record attests to sta- 
Ile environmental conditions during Neanderthal-modern human 
:urnover in southern Italy. Nature Ecology and Evolution 4. 
1188-1195. 
“utler, K.B., Edwards, R.L., Taylor, F.W., Cheng, H., Adkins, J., 
Gallup, C.D., Cutler, P.M., Burr, G.S., Bloom, A.L., 2003. 
Rapid sea-level fall and deep-ocean temperature change since 
‘he last interglacial period. Earth and Planetary Science Letters 
206, 253-271. 
D’Agostino, R., Lionello, P., 2020. The atmospheric moisture bud- 
get in the Mediterranean: Mechanisms for seasonal changes in the 
Last Glacial Maximum and future warming scenario. Quaternary 
Science Reviews 241, 106392. https:/doi.org/10.1016/j.quas- 
cirev.2020.106392 
de Abreu, L., Shackleton, N.J., Schönfeld, J., Hall, M., Chapman, 
M., 2003. Millennial-scale oceanic climate variability off the 
Western Iberian margin during the last two glacial periods. 
Marine Geology 196, 1-20. 
Denniston, R.F., Houts, A.N., Asmerom, Y., Wanamaker Jr., A.D., 
Haws, J.A., Polyak, V.J., Thatcher, D.L., et al., 2018. A stalagmite 
cest of North Atlantic SST and Iberian hydroclimate linkages over 
(he last two glacial cycles. Climate of the Past 14, 1893-1913. 
De San Jose Lancha, M. A., 1973. Mapa Geolögico de Espatia, 
E.1:50.000 n° 606 (Chinchön). Segunda serie (MAGNA). 
IGME, Madrid. 
Diefendorf, A.F., Mueller, K.E., Wing, S.L., Koch, P.L., Freeman, 
K.H., 2010. Global patterns in leaf '°C discrimination and impli- 
zations for studies of past and future climate. Proceedings of the 
National Academy of Sciences 107, 5738-5743. 
Dominguez-Villar, D., Carrasco, R.M., Pedraza, J., Cheng, H., 
Edwards, R.L., Willenbring, J.K., 2013. Early maximum extent 
of paleoglaciers from Mediterranean mountains during the last glaci- 
ation. Scientific Reports 3, 2034. https:/doi.org/10.1038/srep02034. 
Duller, G.A.T., 2003. Distinguishing quartz and feldspar in single 
grain luminescence measurements. Radiation Measurements 37. 
161-165. 
Downloaded from https://www.cambridge.org/core. IP address: 77.191.167.9, on 05 Feb 2021 at 17:09:02. subject to the Cambridge Core terms of use. available at 
attns'/Aanann cambridoe ora/carefterms https’ /Z/idalara/10 1017 Zalı1a 20720 11
	        
Waiting...

Note to user

Dear user,

In response to current developments in the web technology used by the Goobi viewer, the software no longer supports your browser.

Please use one of the following browsers to display this page correctly.

Thank you.