Soils and frost boil ecosystems across the North American Arctic Transect

[1] We studied soil properties of frost boils at nine zonal-vegetation locations across the North American Arctic Transect (NAAT) in order to better understand arctic soils and their interaction with other biogeophysical components of frost boil ecosystems. Soil genetic horizons were analyzed for pa...

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Online Access:http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.547.8262
http://www.geobotany.uaf.edu/library/pubs/2007JG000672.pdf
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spelling ftciteseerx:oai:CiteSeerX.psu:10.1.1.547.8262 2023-05-15T14:51:53+02:00 Soils and frost boil ecosystems across the North American Arctic Transect The Pennsylvania State University CiteSeerX Archives application/pdf http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.547.8262 http://www.geobotany.uaf.edu/library/pubs/2007JG000672.pdf en eng http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.547.8262 http://www.geobotany.uaf.edu/library/pubs/2007JG000672.pdf Metadata may be used without restrictions as long as the oai identifier remains attached to it. http://www.geobotany.uaf.edu/library/pubs/2007JG000672.pdf text ftciteseerx 2016-01-08T11:22:29Z [1] We studied soil properties of frost boils at nine zonal-vegetation locations across the North American Arctic Transect (NAAT) in order to better understand arctic soils and their interaction with other biogeophysical components of frost boil ecosystems. Soil genetic horizons were analyzed for particle size, pH, electrical conductivity, total organic carbon (OC) and nitrogen (N), bulk density and volumetric water content. Surface soils (0–5 cm) across frost boil patterns were analyzed for of pH, OC, water content, extractable N and P, and exchangeable K, Ca and Na. Our results revealed that soil texture, pH, EC, P, Na and Ca contents are strongly influenced by local parent materials. Soil pH was acidic in the north going to alkaline in the midtransect and then again back to acidic in the south. Simple correlations between soil analytical data and observed frost boil properties across the NAAT support and are consistent with the laboratory and theoretical-conceptual models of pattern ground dynamics that have been developed by others. Soil water related well to texture. Soil horizon %OC and profile OC stocks under the pattern corresponded well to biomass and frost heave, respectively. Also soil water was closely related to biomass and heave. Nutrients in surface soils at sites corresponded to OC stocks. An interaction between soil water and segregation of Na and Ca between the pattern and interpattern was found for locations with high cation availability. At these sites, chemical as well as physical disruption of the pattern area could affect plant establishment. Overall there was a good linkage between properties relating to frost boil pattern dynamics and soil biogeochemical properties. Our study offers insight into the important process of cryoturbation for carbon sequestration in Gelisols across the Arctic. Text Arctic Unknown Arctic
institution Open Polar
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description [1] We studied soil properties of frost boils at nine zonal-vegetation locations across the North American Arctic Transect (NAAT) in order to better understand arctic soils and their interaction with other biogeophysical components of frost boil ecosystems. Soil genetic horizons were analyzed for particle size, pH, electrical conductivity, total organic carbon (OC) and nitrogen (N), bulk density and volumetric water content. Surface soils (0–5 cm) across frost boil patterns were analyzed for of pH, OC, water content, extractable N and P, and exchangeable K, Ca and Na. Our results revealed that soil texture, pH, EC, P, Na and Ca contents are strongly influenced by local parent materials. Soil pH was acidic in the north going to alkaline in the midtransect and then again back to acidic in the south. Simple correlations between soil analytical data and observed frost boil properties across the NAAT support and are consistent with the laboratory and theoretical-conceptual models of pattern ground dynamics that have been developed by others. Soil water related well to texture. Soil horizon %OC and profile OC stocks under the pattern corresponded well to biomass and frost heave, respectively. Also soil water was closely related to biomass and heave. Nutrients in surface soils at sites corresponded to OC stocks. An interaction between soil water and segregation of Na and Ca between the pattern and interpattern was found for locations with high cation availability. At these sites, chemical as well as physical disruption of the pattern area could affect plant establishment. Overall there was a good linkage between properties relating to frost boil pattern dynamics and soil biogeochemical properties. Our study offers insight into the important process of cryoturbation for carbon sequestration in Gelisols across the Arctic.
author2 The Pennsylvania State University CiteSeerX Archives
format Text
title Soils and frost boil ecosystems across the North American Arctic Transect
spellingShingle Soils and frost boil ecosystems across the North American Arctic Transect
title_short Soils and frost boil ecosystems across the North American Arctic Transect
title_full Soils and frost boil ecosystems across the North American Arctic Transect
title_fullStr Soils and frost boil ecosystems across the North American Arctic Transect
title_full_unstemmed Soils and frost boil ecosystems across the North American Arctic Transect
title_sort soils and frost boil ecosystems across the north american arctic transect
url http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.547.8262
http://www.geobotany.uaf.edu/library/pubs/2007JG000672.pdf
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http://www.geobotany.uaf.edu/library/pubs/2007JG000672.pdf
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