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Tundra Fire Effects on Soils and Three Plant Communities Along a Hill-Slope Gradient in the Seward Peninsula, Alaska

Datos Bibliográficos

ID16865355
AutoresCharles H Racine (autor de correspondencia)
Año1981
Volumen34
Número1
Fecha de publicación1981-01-01
Peer ReviewedSí
Open AccessSí
TipoARTICLE
RevistaARCTIC (JOURNAL)
Identificadores de la revistaISSN: 0004-0843 • E-ISSN: 1923-1245
EditorialThe Arctic Institute of North America (PUBLISHER)
DOI10.14430/arctic2508
OpenAlexW2149763271
IdiomaEN
Citas recibidas5
Referencias citadas2

During summer 1977, wildfires burned extensive areas of low arctic tundra in the Seward Peninsula, Alaska. The present study was initiated in July 1978 to determine the effects of these fires on tundra soils and vegetation. Nine 10 m × 1 m permanent belt transects were established at regular intervals along the topographic gradient of a burned hill-slope in the central Seward Peninsula near Imuruk Lake. Soil characteristics and plant species density and cover were determined in each of the 90 1-m2 plots on this slope during July of both 1978 and 1979. Soils and vegetation had been quantitatively sampled on this slope in 1973, thereby providing pre-fire comparisons; a sedge tussock-shrub tundra community with mud circles occupied the poorly drained footslope and a birch and ericaceous shrub tundra community with elongate turf-banked frost boils had developed on the moderately well-drained backslope. The broad, poorly-drained summit of this slope was occupied by sedge-shrub tundra with low-centered polygons. The severity of burning in July 1977 varied along this slope with moderate to heavy burning of the birch and ericaceous shrub tundra and light to moderate burning of the sedge tussock-shrub tundra and sedge-shrub tundra communities. Post-fire (1978 and 1979) changes in plant cover, species composition and soil thaw depths are shown to vary with position on the slope and burning severity. The relationship of these changes to natural succession in the absence of fire is discussed

Arctic · Ecological succession · Geography · Peat · Physical geography · Plant community · Shrub · Soil water · Tundra · Tussock · Vegetation (pathology) · Climate change and permafrost · Ecology · Environmental Science · Geology · Geology and Paleoclimatology Research · Indigenous Studies and Ecology · Oceanography · Soil Science

  • Response of Overwintering Caribou to Burned Habitat in Northwest Alaska

    Open Access•Kyle Joly, Peter J Bente et al.•ARCTIC•2009

  • Response of Nesting Lapland Longspurs ( Calcarius lapponicus ) to Burned Tundra on the Seward Peninsula

    Open Access•John M Wright•ARCTIC•1981

  • Multi-decadal patterns of vegetation succession after tundra fire on the Yukon-Kuskokwim Delta, Alaska

    Open Access•Gerald V Frost, Rachel A Loehman et al.•Environmental Research Letters•2020

  • A Discriminant Analysis Model of Alaskan Biomes Based on Spatial Climatic and Environmental Data

    Open Access•James J Simpson, Michael C Stuart et al.•ARCTIC•2009

  • Forty Years of Northern Natural Science

    Open Access•G G E Scudder•ARCTIC•1987

  • Tundra Fires and Two Archaeological Sites in the Seward Peninsula, Alaska

    Open Access•Charles H Racine, Marilyn M Racine•ARCTIC•1979

  • Geology of the Imuruk Lake area, Seward Peninsula, Alaska

    David M Hopkins•1963

Obras citantes distintas5
Citas por año0,11
Intervalo de citas1981 - 2020 (40)
Velocidad de citaciónhistorical
Altamente citadoNo
Tipos de citaNeutras: 3
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