Permafrost Soils

Artikelnummer: 978-3-642-08887-2
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Most of the Earth¿s biosphere is characterized by low temperatures. Vast areas (>20%) of the soil ecosystem are permanently frozen or are unfrozen for only a few weeks in summer. Permafrost regions occur at high latitudes and also at high ele- tions; a significant part of the global permafrost area is represented by mountains. Permafrost soils are of global interest, since a significant increase in temperature is predicted for polar regions. Global warming will have a great impact on these soils, especially in northern regions, since they contain large amounts of organic carbon and act as carbon sinks, and a temperature increase will result in a release of carbon into the atmosphere. Additionally, the intensified release of the clima- relevant tracer gas methane represents a potential environmental harzard. Significant numbers of viable microorganisms, including bacteria, archaea, p- totrophic cyanobacteria and green algae, fungi and protozoa, are present in per- frost, and the characteristics of these microorganisms reflect the unique and extreme conditions of the permafrost environment. Remarkably, these microorg- isms have been reported to be metabolically active at subzero temperatures, even down to ?20°C.

Most of the Earth¿s biosphere is characterized by low temperatures. Vast areas (>20%) of the soil ecosystem are permanently frozen or are unfrozen for only a few weeks in summer. Permafrost regions occur at high latitudes and also at high ele- tions; a significant part of the global permafrost area is represented by mountains. Permafrost soils are of global interest, since a significant increase in temperature is predicted for polar regions. Global warming will have a great impact on these soils, especially in northern regions, since they contain large amounts of organic carbon and act as carbon sinks, and a temperature increase will result in a release of carbon into the atmosphere. Additionally, the intensified release of the clima- relevant tracer gas methane represents a potential environmental harzard. Significant numbers of viable microorganisms, including bacteria, archaea, p- totrophic cyanobacteria and green algae, fungi and protozoa, are present in per- frost, and the characteristics of these microorganisms reflect the unique and extreme conditions of the permafrost environment. Remarkably, these microorg- isms have been reported to be metabolically active at subzero temperatures, even down to ?20°C.

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VerlagSpringer
EinbandKartonierter Einband (Kt)
Erscheinungsjahr2010
Seitenangabe348 S.
AusgabekennzeichenEnglisch
AbbildungenXIV, 348 p. 78 illus., 4 illus. in color., schwarz-weiss Illustrationen, farbige Illustrationen
MasseH23.5 cm x B15.5 cm 557 g
CoverlagSpringer (Imprint/Brand)
ReiheSoil Biology
AutorMargesin, Rosa (Hrsg.)

Alle Bände der Reihe "Soil Biology"

Über den Autor Rosa (Hrsg.) Margesin

Rosa Margesin is full professor at the Institute of Microbiology, University of Innsbruck, Austria. Her field of research are cold-adapted microorganisms, with the focus on alpine habitats, including ecology, biodiversity and taxonomy of psychrophiles, soil microbiology, and environmental microbiology (biodegradation and bioremediation). Rosa Margesin is (Co-)Editor of 10 books published by Springer, and of various Thematic Journal Issues. She (co-)authored more than 100 publications and reviews in international peer-reviewed journals.

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