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Climate, glacial and vegetation history of the polar Ural Mountains since c . 27 cal ka bp , inferred from a 54 m long sediment core from Lake Bolshoye Shchuchye

Marlene M. Lenz; Andrei Andreev; Larisa Nazarova; Liudmila S. Syrykh; Stephanie Scheidt; Haflidi Haflidason; Hanno Meyer; Dominik Brill; Bernd Wagner; Raphael Gromig; Matthias Lenz; Christian Rolf; Gerhard Kuhn; Grigoriy Fedorov; John Inge Svendsen; Martin Melles
Journal of Quaternary Science · Vol. 37, Issue 5 · pp. 818-835 · 2022

Abstract

Because continuous and high‐resolution records are scarce in the polar Urals, a multiproxy study was carried out on a 54 m long sediment succession (Co1321) from Lake Bolshoye Shchuchye. The sedimentological, geochemical, pollen and chironomid data suggest that glaciers occupied the lake's catchment during the cold and dry MIS 2 and document a change in ice extent around 23.5–18 cal ka bp. Subsequently, meltwater input, sediment supply and erosional activity decreased as local glaciers progressively melted. The vegetation around the lake comprised open, herb and grass‐dominated tundra‐steppe until the Bølling‐Allerød, but shows a distinct change to probably moister conditions around 17–16 cal ka bp. Local glaciers completely disappeared during the Bølling‐Allerød, when summer air temperatures were similar to today and low shrub tundra became established. The Younger Dryas is confined by distinct shifts in the pollen and chironomid records pointing to drier conditions. The Holocene is characterised by a denser vegetation cover, stabilised soil conditions and decreased minerogenic input, especially during the local thermal maximum between c . 10 and 5 cal ka bp. Subsequently, present‐day vegetation developed and summer air temperatures decreased to modern, except for two intervals, which may represent the Little Ice Age and Medieval Warm Period.

Bibliographic Information

JournalJournal of Quaternary Science
PublisherWiley
Publication Date2022-07-01
Publication Year2022
Volume37
Issue5
Pages818-835
Document TypeJournal Article
Print ISSN0267-8179
eISSN1099-1417
DOI10.1002/jqs.3400
SubjectEarth & Environmental Science

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NARA Access Coverage1996-01-01~Current
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