Radiocarbon chronology of the late-glacial Puerto Bandera moraines, Southern Patagonian Icefield, Argentina

被引:82
作者
Strelin, J. A. [1 ]
Denton, G. H. [2 ,3 ]
Vandergoes, M. J. [4 ]
Ninnemann, U. S. [5 ,6 ]
Putnam, A. E. [2 ,3 ]
机构
[1] CICTERRA Univ Nacl Cordoba, Inst Antartico Argentino, Cordoba, Argentina
[2] Univ Maine, Dept Earth Sci, Orono, ME 04469 USA
[3] Univ Maine, Climate Change Inst, Orono, ME 04469 USA
[4] GNS Sci, Lower Hutt, New Zealand
[5] Univ Bergen, Bjerknes Ctr Climate Res, N-5007 Bergen, Norway
[6] Univ Bergen, Dept Earth Sci, N-5007 Bergen, Norway
基金
美国海洋和大气管理局;
关键词
Late-glacial; Termination; Radiocarbon; Glacier; Chronology; Patagonia; Southern Patagonian; Icefield; Sea-surface temperature; Antarctic cold reversal; Younger Dryas; Deglaciation; COSMOGENIC NUCLIDE CHRONOLOGY; FRANZ-JOSEF-GLACIER; LAST TERMINATION; ATMOSPHERIC CO2; AMERICA; ADVANCE; CLIMATE; MAXIMUM; AGE; DEGLACIATION;
D O I
10.1016/j.quascirev.2011.05.004
中图分类号
P9 [自然地理学];
学科分类号
0705 ; 070501 ;
摘要
We report radiocarbon dates that constrain the timing of the deposition of the late-glacial Puerto Bandera moraine system alongside the western reaches of Lago Argentino adjacent to the Southern Patagonian Icefield. Close maximum-limiting radiocarbon ages (n = 11) for glacier advance into the outer moraines, with a mean value of 11,100 +/- 60 C-14 yrs BP (12,990 +/- 80 cal yrs BP), were obtained from wood in deformation (soft) till exposed beneath flow and lodgment till in Bahia del Quemado on the northeast side of Brazo Norte (North Branch) of western Lago Argentino. Other exposures of this basal deformation till in Bahia del Quemado reveal incorporated clasts of peat, along with larger inclusions of deformed glaciofluvial and lacustrine deposits. Radiocarbon dates of wood included in these reworked peat clasts range from 11,450 +/- 45 C-14 yrs BP to 13,450 +/- 150 C-14 yrs BP (13,315 +/- 60 to 16,440 +/- 340 cal yrs BP). The implication is that, during this interval, glacier fronts were situated inboard of the Puerto Bandera moraines, with the peat clasts and larger proglacial deposits being eroded and then included in the basal till during the Puerto Bandera advance. Minimum-limiting radiocarbon ages for ice retreat come from basal peat in cores sampled in spillways and depressions generated during abandonment of the Puerto Bandera moraines. Glacier recession and subsequent plant colonization were initiated close behind different frontal sectors of these moraines prior to: 10,750 +/- 75 C-14 yrs BP (12,660 +/- 70 cal yrs BP) east of Brazo Rico, 10,550 +/- 55 C-14 yrs BP (12,490 +/- 80 cal yrs BP) in Peninsula Avellaneda, and 10,400 +/- 50 C-14 yrs BP (12,280 +/- 110 cal yrs BP) in Bahia Catalana. In addition, a radiocarbon date indicates that by 10,350 +/- 45 C-14 yrs BP (12,220 +/- 110 cal yrs BP), the Brazo Norte lobe (or former Upsala Glacier) had receded well up the northern branch of Lago Argentino, to a position behind the Herminita moraines. Furthermore, glacier termini had receded to just outboard of the outer Holocene moraines at Lago Frias and Lago Pearson (Anita) prior to 10,400 +/- 40 C-14 yrs BP (12,270 +/- 100 cal yrs BP) and 9040 +/- 45 C-14 yrs BP (10,210 +/- 50 cal yrs BP), respectively. The most extensive recession registered during the early Holocene was in Agassiz Este Valley, where the Upsala Glacier had pulled back behind the outer Holocene moraine, reaching close to the present-day glacier terminus before 8290 +/- 40 C-14 yrs BP (9300 +/- 80 cal yrs BP). The radiocarbon-dated fluctuations of the Lago Argentino glacier in late-glacial time, given here, are in accord with changes in ocean mixed layer properties, predominately temperature, derived from the isotopic record given here of ODP Core 1233, taken a short distance off shore of the Chilean Lake District. It also matches recently published chronologies of late-glacial moraines in the Southern Alps of New Zealand on the opposite side of the Pacific Ocean from Lago Argentino. Finally, the timing of the late-glacial reversal of the Lago Argentino glacier fits the most recent chronology for the culmination of the Antarctic Cold Reversal (ACR) in the deuterium record of the EPICA Dome C ice core from high on the East Antarctic Plateau. Therefore, we conclude that the climate signature of the ACR was widespread in both the ocean and the atmosphere over at least the southern quarter of the globe. (C) 2011 Elsevier Ltd. All rights reserved.
引用
收藏
页码:2551 / 2569
页数:19
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