Mid-Wisconsin to Holocene permafrost and landscape dynamics based on a drained lake basin core from the northern Seward Peninsula, Northwest Alaska


Autoria(s): Lenz, Josefine; Grosse, Guido; Jones, Benjamin M; Walter Anthony, Katey M; Bobrov, Anatoly A; Wulf, Sabine; Wetterich, Sebastian
Cobertura

LATITUDE: 66.461390 * LONGITUDE: -164.139440 * DATE/TIME START: 2009-04-22T00:00:00 * DATE/TIME END: 2009-04-22T00:00:00

Data(s)

23/04/2015

Resumo

Permafrost-related processes drive regional landscape dynamics in the Arctic terrestrial system. A better understanding of past periods indicative of permafrost degradation and aggradation is important for predicting the future response of Arctic landscapes to climate change. Here, we used a multi-proxy approach to analyze a ~4 m long sediment core from a drained thermokarst lake basin on the northern Seward Peninsula in western Arctic Alaska (USA). Sedimentological, biogeochemistical, geochronological, micropaleontological (ostracoda, testate amoeba) and tephra analyses were used to determine the long-term environmental Early-Wisconsin to Holocene history preserved in our core for Central Beringia. Yedoma accumulation dominated throughout the Early to Late-Wisconsin but was interrupted by wetland formation from 44.5 to 41.5 ka BP. The latter was terminated by deposition of 1 m of volcanic tephra, most likely originating from the South Killeak Maar eruption at about 42 ka BP. Yedoma deposition continued until 22.5 ka BP and was followed by a depositional hiatus in the sediment core between 22.5 and 0.23 ka BP. We interpret this hiatus as due to intense thermokarst activity in the areas surrounding the site, which served as a sediment source during the Late-Wisconsin to Holocene climate transition. The lake forming the modern basin on the upland initiated around 0.23 ka BP, which drained catastrophically in spring 2005. The present study emphasizes that Arctic lake systems and periglacial landscapes are highly dynamic and permafrost formation as well as degradation in Central Beringia was controlled by regional to global climate patterns and as well as by local disturbances.

Formato

application/zip, 6 datasets

Identificador

https://doi.pangaea.de/10.1594/PANGAEA.845556

doi:10.1594/PANGAEA.845556

Idioma(s)

en

Publicador

PANGAEA

Direitos

CC-BY: Creative Commons Attribution 3.0 Unported

Access constraints: unrestricted

Fonte

Supplement to: Lenz, Josefine; Grosse, Guido; Jones, Benjamin M; Walter Anthony, Katey M; Bobrov, Anatoly A; Wulf, Sabine; Wetterich, Sebastian (2015): Mid-Wisconsin to Holocene permafrost and landscape dynamics based on a drained lake basin core from the northern Seward Peninsula, Northwest Alaska. Permafrost and Periglacial Processes, online first, doi:10.1002/ppp.1848

Palavras-Chave #<2 µm, >9 phi; >2 mm; 0.0002 - 0.002 mm; 2000-63 µm; 63-2 µm; A. areneria var. c. major; A. flavum; Aflavum flavum; Age, 14C AMS; Age, 14C calibrated; Age, dated; Age, dated, range, maximum; Age, dated, range, minimum; Age, dated material; Age, dated standard deviation; Age dated; Age dated max; Age dated min; Age model; Age std dev; Al2O3; Aluminium oxide; Arc.sp; Arcella areneria var. compressa major; Arcella sp.; AWI_PerDyn; B. indica; BP, 2 sigma; Bullinularia indica; C; C/N; C. aerophila; C. aerophila var. major; C. arcelloides; C. candida; C. cassis; C. cf. Aculeata; C. cf. acuminata; C. cf. kahli; C. cf. kahli var. major; C. constricta; C. constricta var. minor; C. ecornis; C. ecornis var. minima; C. eurystoma; C. gibba; C. ikpukpuensis f; C. ikpukpuensis juv; C. ikpukpuensis m; C. kahli; C. ophtalmica f; C. ophtalmica juv; C. plagiostoma; C. plagiostoma f major; C. sylvatica; C. sylvatica f major; C. sylvatica var. minor; C. sylvatica var. sphagnicola; CaCO3; Calcium carbonate; Calcium oxide; Candona candida; Candona ikpukpuensis, female; Candona ikpukpuensis, juvenile; Candona ikpukpuensis, male; Candoninae, juvenile; Candoninae juv; CaO; Carapaces, preserved; Carapaces preserv; Carbon; Carbon, inorganic, total; Carbon, organic, total; Carbon/Nitrogen ratio; Centropyxis aerophila; Centropyxis aerophila var. major; Centropyxis cassis; Centropyxis cf. Aculeata; Centropyxis cf. acuminata; Centropyxis constricta; Centropyxis constricta var. minor; Centropyxis ecornis; Centropyxis ecornis var. minima; Centropyxis gibba; Centropyxis plagiostoma; Centropyxis plagiostoma forma major; Centropyxis sylvatica; Centropyxis sylvatica forma major; Centropyxis sylvatica var. minor; Centropyxis sylvatica var. sphagnicola; Chlorine; Cl; Conductivity, electrolytical; Counting, light microscope; Counting, ostracode valves and carapaces; Cyclopyxis arcelloides; Cyclopyxis cf. kahli; Cyclopyxis cf. kahli var. major; Cyclopyxis eurystoma; Cyclopyxis kahli; Cypria ophtalmica, female; Cypria ophtalmica, juvenile; D. cf. globulus; D. globulus; D. lucida; D. penardi; d13C; Dated material; delta 13C; Depth; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; Depth bot; Depth top; Difflugia cf. globulus; Difflugia globulus; Difflugia lucida; Difflugia penardi; E. filifera; E. tuberculata; EC; Euglypha filifera; Euglypha tuberculata; F. caudata f; F. caudata juv; F. caudata m; F. pedata f; F. pedata juv; F. pedata m; F. protzi f; F. protzi juv; F. protzi m; Fabaeformiscandona caudata, female; Fabaeformiscandona caudata, juvenile; Fabaeformiscandona caudata, male; Fabaeformiscandona pedata, female; Fabaeformiscandona pedata, juvenile; Fabaeformiscandona pedata, male; Fabaeformiscandona protzi, female; Fabaeformiscandona protzi, juvenile; Fabaeformiscandona protzi, male; FeO; Fragm; Fragmentation; Glass shard; H. petricola; H. petricola var. amethystea; H. sylvatica; Heleopera petricola; Heleopera petricola var. amethystea; Heleopera sylvatica; Ind; Individuals; Iron oxide, FeO; K2O; kappa; Label; Lab label; Laboratory code/label; Magnesium oxide; Manganese oxide; Mass spectrometry; MgO; MnO; Na2O; Nitrogen, total; normalized to 30 g of dry sediment; Number of taxa; P. callida; P. penardi; P2O5; Periglacial Dynamics @ AWI; pH; Phosphorus oxide; Plagiopyxis callida; Plagiopyxis penardi; Potassium oxide; Poznan Radiocarbon Laboratory; S. humicola; S. smithi; Sample code/label; Sample mass; Samp m; Schoenbornia humicola; Schoenbornia smithi; Silicon dioxide; SiO2; Size fraction < 0.002 mm, > 9 phi, clay; Size fraction > 2 mm, gravel; Size fraction 0.063-0.002 mm, silt; Size fraction 2.000-0.063 mm, sand; smoll ps; Sodium oxide; Standard deviation; Std dev; Sum; Susceptibility, volume; Taxa; Testa sp.; TIC; TiO2; Titanium oxide; TN; TOC; TRef. = 25 °C; Water content of wet mass; Water wm
Tipo

Dataset