THE RECENT TRANSITION FROM GLACIAL TO PERIGLACIAL ENVIRONMENT IN A HIGH ALTITUDE ALPINE BASIN (SABBIONE BASIN, NORTH-WESTERN ITALIAN ALPS). PRELIMINARY OUTCOMES FROM A MULTIDISCIPLINARY APPROACH

High Alps are characterised by glacial and periglacial environments, which change sensitively in response to climatic changes. The global warming that has been witnessed over the last few decades has caused remarkable effects on high altitude mountain zones. In order to assess the ongoing transition...

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Main Authors: COLOMBO, NICOLA, BUFFA, Giorgio, FRATIANNI, SIMONA, Giaccone, Elisa, Paro, Luca
Other Authors: Colombo, Nicola, Buffa, Giorgio, Fratianni, Simona
Format: Article in Journal/Newspaper
Language:English
Published: 2016
Subjects:
Online Access:http://hdl.handle.net/2318/1620206
https://doi.org/10.4461/GFDQ.2016.39.3
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spelling ftunivtorino:oai:iris.unito.it:2318/1620206 2023-11-05T03:44:35+01:00 THE RECENT TRANSITION FROM GLACIAL TO PERIGLACIAL ENVIRONMENT IN A HIGH ALTITUDE ALPINE BASIN (SABBIONE BASIN, NORTH-WESTERN ITALIAN ALPS). PRELIMINARY OUTCOMES FROM A MULTIDISCIPLINARY APPROACH COLOMBO, NICOLA BUFFA, Giorgio FRATIANNI, SIMONA Giaccone, Elisa Paro, Luca Colombo, Nicola Giaccone, Elisa Paro, Luca Buffa, Giorgio Fratianni, Simona 2016 http://hdl.handle.net/2318/1620206 https://doi.org/10.4461/GFDQ.2016.39.3 eng eng info:eu-repo/semantics/altIdentifier/wos/WOS:000389169500003 volume:39 (1) firstpage:21 lastpage:36 numberofpages:16 journal:GEOGRAFIA FISICA E DINAMICA QUATERNARIA http://hdl.handle.net/2318/1620206 doi:10.4461/GFDQ.2016.39.3 info:eu-repo/semantics/altIdentifier/scopus/2-s2.0-84999176917 info:eu-repo/semantics/openAccess Periglacial processes Climate change Glaciers Geomorphology Vegetation NW Italian Alps. info:eu-repo/semantics/article 2016 ftunivtorino https://doi.org/10.4461/GFDQ.2016.39.3 2023-10-10T22:24:01Z High Alps are characterised by glacial and periglacial environments, which change sensitively in response to climatic changes. The global warming that has been witnessed over the last few decades has caused remarkable effects on high altitude mountain zones. In order to assess the ongoing transition from glacial to periglacial environments, due to climate change, and its effects on cryosphere, geosphere and biosphere, a multidisciplinary approach has been applied in the Sabbione Basin (Italy). In this study, attention has mainly been paid to two selected areas (pilot sites) representative of glacial-periglacial interactions in the investigated basin. Climatological and geomorphological studies have been conducted, together with analyses on the potential permafrost distribution. Furthermore, floristic surveys have been carried out to characterise the vegetation within the periglacial sites and Artemisia genipi has been selected as the monitoring species because of its abundance and its late flowering season. The climatic analyses have indicated that, over the last decades, air temperatures have increased and snow cover duration and thickness have decreased, thus causing a substantial regression of the glaciers. Periglacial processes and new permafrost-related landforms have been developing in recently deglaciated areas. The distribution, reproductive state and phenology of the monitoring species show a clear relationship with the permafrost-related landforms (i.e. rock glaciers). Moreover, the phenological delay observed in some of the Artemisia genipi individuals shows that micro-morphology and cold water sources have a considerable influence on their development. Finally, it has been found that lower altitude plant species have been colonising the basin, indicating an upward shift due to global warming conditions. Article in Journal/Newspaper permafrost Università degli studi di Torino: AperTo (Archivio Istituzionale ad Accesso Aperto)
institution Open Polar
collection Università degli studi di Torino: AperTo (Archivio Istituzionale ad Accesso Aperto)
op_collection_id ftunivtorino
language English
topic Periglacial processes
Climate change
Glaciers
Geomorphology
Vegetation
NW Italian Alps.
spellingShingle Periglacial processes
Climate change
Glaciers
Geomorphology
Vegetation
NW Italian Alps.
COLOMBO, NICOLA
BUFFA, Giorgio
FRATIANNI, SIMONA
Giaccone, Elisa
Paro, Luca
THE RECENT TRANSITION FROM GLACIAL TO PERIGLACIAL ENVIRONMENT IN A HIGH ALTITUDE ALPINE BASIN (SABBIONE BASIN, NORTH-WESTERN ITALIAN ALPS). PRELIMINARY OUTCOMES FROM A MULTIDISCIPLINARY APPROACH
topic_facet Periglacial processes
Climate change
Glaciers
Geomorphology
Vegetation
NW Italian Alps.
description High Alps are characterised by glacial and periglacial environments, which change sensitively in response to climatic changes. The global warming that has been witnessed over the last few decades has caused remarkable effects on high altitude mountain zones. In order to assess the ongoing transition from glacial to periglacial environments, due to climate change, and its effects on cryosphere, geosphere and biosphere, a multidisciplinary approach has been applied in the Sabbione Basin (Italy). In this study, attention has mainly been paid to two selected areas (pilot sites) representative of glacial-periglacial interactions in the investigated basin. Climatological and geomorphological studies have been conducted, together with analyses on the potential permafrost distribution. Furthermore, floristic surveys have been carried out to characterise the vegetation within the periglacial sites and Artemisia genipi has been selected as the monitoring species because of its abundance and its late flowering season. The climatic analyses have indicated that, over the last decades, air temperatures have increased and snow cover duration and thickness have decreased, thus causing a substantial regression of the glaciers. Periglacial processes and new permafrost-related landforms have been developing in recently deglaciated areas. The distribution, reproductive state and phenology of the monitoring species show a clear relationship with the permafrost-related landforms (i.e. rock glaciers). Moreover, the phenological delay observed in some of the Artemisia genipi individuals shows that micro-morphology and cold water sources have a considerable influence on their development. Finally, it has been found that lower altitude plant species have been colonising the basin, indicating an upward shift due to global warming conditions.
author2 Colombo, Nicola
Giaccone, Elisa
Paro, Luca
Buffa, Giorgio
Fratianni, Simona
format Article in Journal/Newspaper
author COLOMBO, NICOLA
BUFFA, Giorgio
FRATIANNI, SIMONA
Giaccone, Elisa
Paro, Luca
author_facet COLOMBO, NICOLA
BUFFA, Giorgio
FRATIANNI, SIMONA
Giaccone, Elisa
Paro, Luca
author_sort COLOMBO, NICOLA
title THE RECENT TRANSITION FROM GLACIAL TO PERIGLACIAL ENVIRONMENT IN A HIGH ALTITUDE ALPINE BASIN (SABBIONE BASIN, NORTH-WESTERN ITALIAN ALPS). PRELIMINARY OUTCOMES FROM A MULTIDISCIPLINARY APPROACH
title_short THE RECENT TRANSITION FROM GLACIAL TO PERIGLACIAL ENVIRONMENT IN A HIGH ALTITUDE ALPINE BASIN (SABBIONE BASIN, NORTH-WESTERN ITALIAN ALPS). PRELIMINARY OUTCOMES FROM A MULTIDISCIPLINARY APPROACH
title_full THE RECENT TRANSITION FROM GLACIAL TO PERIGLACIAL ENVIRONMENT IN A HIGH ALTITUDE ALPINE BASIN (SABBIONE BASIN, NORTH-WESTERN ITALIAN ALPS). PRELIMINARY OUTCOMES FROM A MULTIDISCIPLINARY APPROACH
title_fullStr THE RECENT TRANSITION FROM GLACIAL TO PERIGLACIAL ENVIRONMENT IN A HIGH ALTITUDE ALPINE BASIN (SABBIONE BASIN, NORTH-WESTERN ITALIAN ALPS). PRELIMINARY OUTCOMES FROM A MULTIDISCIPLINARY APPROACH
title_full_unstemmed THE RECENT TRANSITION FROM GLACIAL TO PERIGLACIAL ENVIRONMENT IN A HIGH ALTITUDE ALPINE BASIN (SABBIONE BASIN, NORTH-WESTERN ITALIAN ALPS). PRELIMINARY OUTCOMES FROM A MULTIDISCIPLINARY APPROACH
title_sort recent transition from glacial to periglacial environment in a high altitude alpine basin (sabbione basin, north-western italian alps). preliminary outcomes from a multidisciplinary approach
publishDate 2016
url http://hdl.handle.net/2318/1620206
https://doi.org/10.4461/GFDQ.2016.39.3
genre permafrost
genre_facet permafrost
op_relation info:eu-repo/semantics/altIdentifier/wos/WOS:000389169500003
volume:39 (1)
firstpage:21
lastpage:36
numberofpages:16
journal:GEOGRAFIA FISICA E DINAMICA QUATERNARIA
http://hdl.handle.net/2318/1620206
doi:10.4461/GFDQ.2016.39.3
info:eu-repo/semantics/altIdentifier/scopus/2-s2.0-84999176917
op_rights info:eu-repo/semantics/openAccess
op_doi https://doi.org/10.4461/GFDQ.2016.39.3
_version_ 1781704866874261504