The climatic influence on soil properties is important on ophiolites: large quantities of toxic metals can be released, mobilized or immobilized in relation with different climates. A different leaching intensity also influences the available Ca/Mg ratio, an important factor in serpentine ecology. In the Aosta Valley, north-western Italian Alps, different climates are found at short distances, due to specific orography. Mediterranean air masses increase rainfall throughout the year in the south-eastern sector: in Champorcher (1427 m a.s.l.), the average rainfall is 1185mm/y; 83 mm normally fall in July (the driest summer month). Rain-shadow effects influence the drier central sector: in Torgnon (1500 m a.s.l.), normally, precipitation is 6...
Mountain regions are vulnerable to climate change but information about the climate sensitivity of s...
Ultramafic soils are colonized by peculiar plant communities and species, adapted to high metal cont...
Climate change and a related increase in temperature, particularly in alpine areas, force both flora...
Background and aims Soils derived from serpentinite (serpentine soils) often have low macronutrient ...
High Mg, Fe, heavy metals, pH values close to neutrality and high base status characterize “serpenti...
Soils on ultramafic materials are usually rich in Mg, Fe and heavy metals (particularly Ni, Cr, Mn, ...
nteractions between climate and soil remain ambiguous, particularly when silicate weathering and cla...
none3noBackground and Aim: Biotic and abiotic factors contribute in shaping the distribution through...
Purpose Climate change is driving strong variations in mountain habitats, such as glacier retreat, w...
A comparison was made between two soil climosequences on north- and south-facing slopes in northern ...
Climate changes have huge impacts on alpine ecosystems. One of the most visible effects is glacial r...
We investigated the effect of organic matter and weathering on the lability and solid phase speciati...
Glacial retreat since the end of the Little Ice Age (LIA, 190-160 years ago) caused the exposure of ...
Ultramafic soils are characterized by severe edaphic conditions induced by a low content of essentia...
In this study, we have analysed the mineralogy and the crystal chemistry of serpentine soils from ul...
Mountain regions are vulnerable to climate change but information about the climate sensitivity of s...
Ultramafic soils are colonized by peculiar plant communities and species, adapted to high metal cont...
Climate change and a related increase in temperature, particularly in alpine areas, force both flora...
Background and aims Soils derived from serpentinite (serpentine soils) often have low macronutrient ...
High Mg, Fe, heavy metals, pH values close to neutrality and high base status characterize “serpenti...
Soils on ultramafic materials are usually rich in Mg, Fe and heavy metals (particularly Ni, Cr, Mn, ...
nteractions between climate and soil remain ambiguous, particularly when silicate weathering and cla...
none3noBackground and Aim: Biotic and abiotic factors contribute in shaping the distribution through...
Purpose Climate change is driving strong variations in mountain habitats, such as glacier retreat, w...
A comparison was made between two soil climosequences on north- and south-facing slopes in northern ...
Climate changes have huge impacts on alpine ecosystems. One of the most visible effects is glacial r...
We investigated the effect of organic matter and weathering on the lability and solid phase speciati...
Glacial retreat since the end of the Little Ice Age (LIA, 190-160 years ago) caused the exposure of ...
Ultramafic soils are characterized by severe edaphic conditions induced by a low content of essentia...
In this study, we have analysed the mineralogy and the crystal chemistry of serpentine soils from ul...
Mountain regions are vulnerable to climate change but information about the climate sensitivity of s...
Ultramafic soils are colonized by peculiar plant communities and species, adapted to high metal cont...
Climate change and a related increase in temperature, particularly in alpine areas, force both flora...