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Peatland initiation in Central European Russia during the Holocene

Effect of climate conditions and fires

Datos Bibliográficos

ID12265456
AutoresЕлена Новенко (0000-0003-2174-8467, Lomonosov Moscow State University, autor de correspondencia), Natalia Mazei (0000-0002-4759-8703, Lomonosov Moscow State University), Dmitry Kupriyanov (0000-0003-1441-4039, Lomonosov Moscow State University), Maria V Kusilman (Lomonosov Moscow State University), Alexander Olchev (0000-0002-6144-5826, Lomonosov Moscow State University), Alexander V Olchev (Lomonosov Moscow State University)
Año2020
Volumen31
Número4
Páginas545-555
Fecha de publicación2020-12-24
Peer ReviewedSí
Open AccessSí
TipoARTICLE
RevistaThe Holocene (JOURNAL)
Identificadores de la revistaISSN: 0959-6836 • E-ISSN: 1477-0911
EditorialSAGE Publishing (PUBLISHER • US)
DOI10.1177/0959683620981709
OpenAlexW3117384764
IdiomaEN
Citas recibidas3
Referencias citadas50

Peatlands store massive amounts of organic carbon, but the fate of this carbon remains unclear as global climate continues to warm. The age of peatland inception and the main drivers of peat initiation are one of the most important issues in Holocene paleoecology, especially for the numerous but under investigated peatlands in European Russia. This paper introduces new peatland initiation ages for 44 mires in three areas located in the central part of European Russia within the Polesie landscape belt. This region is characterised by waterlogged sandy plains and flat surface topography. Phases of peatland initiation were compared with Holocene fire regime derived from macro-charcoal data as well as with regional climatic reconstructions. We found that peat inception in the region started around 12,000 cal yr BP, but the most active phases of peatland initiation took place during the periods 8500–7500, 7000–6000, 5300–5800, 4000–3500 and 1700–1200 cal yr BP. Expect for rapid peat growth during the early Holocene, peatland initiation mostly coincided with warm climatic periods and increased fire frequency. Forest soil paludification in poorly drained Polesie landscapes was presumably enhanced by reduced evapotranspiration and changes in water balance due to disturbance of forest cover after wildfires. We expect that rising air temperature in the current century will cause higher fire frequencies and may encourage waterlogging of forests and ecosystem transformation

Archaeology · Charcoal · Climate change · Ecosystem · Evapotranspiration · Fire regime · Geography · Holocene · Paleoecology · Peat · Physical geography · Waterlogging (archaeology · Wetland · Coastal wetland ecosystem dynamics · Environmental Science · Geology and Paleoclimatology Research · Peatlands and Wetlands Ecology · Ecology · Geology · Oceanography · Paleontology

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    Open Access•Maria Nosova, Н Г Лавренов et al.•Vegetation History and…•2026

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    Open Access•Maria Nosova, Andrey Zakharov et al.•Quaternary International•2025

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Obras citantes distintas3
Citas por año3
Intervalo de citas2025 - 2026 (2)
Velocidad de citacióncurrent
Altamente citadoNo
Tipos de citaNeutras: 3
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