Examining the variability of rock glacier meltwater in space and time in high-elevation environments of Utah, United States

Rock glaciers are common geomorphic features in alpine landscapes and comprise a potentially significant but poorly quantified water resource. This project focused on three complementary questions germane to rock glacier hydrology: 1) Does the composition of rock glacier meltwater vary from year to...

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Bibliographic Details
Main Authors: Munroe, Jeffrey S, Handwerger, Alexander L
Format: Article in Journal/Newspaper
Language:unknown
Published: eScholarship, University of California 2023
Subjects:
Ice
Online Access:https://escholarship.org/uc/item/1947j6gs
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spelling ftcdlib:oai:escholarship.org:ark:/13030/qt1947j6gs 2023-11-12T04:18:30+01:00 Examining the variability of rock glacier meltwater in space and time in high-elevation environments of Utah, United States Munroe, Jeffrey S Handwerger, Alexander L 2023-01-01 https://escholarship.org/uc/item/1947j6gs unknown eScholarship, University of California qt1947j6gs https://escholarship.org/uc/item/1947j6gs CC-BY Hydrology Physical Geography and Environmental Geoscience Earth Sciences Geology Climate Action rock glacier permafrost mountain environments stable isotopes Geophysics article 2023 ftcdlib 2023-10-16T18:04:39Z Rock glaciers are common geomorphic features in alpine landscapes and comprise a potentially significant but poorly quantified water resource. This project focused on three complementary questions germane to rock glacier hydrology: 1) Does the composition of rock glacier meltwater vary from year to year? 2) How dependent is the composition of rock glacier meltwater on lithology? And 3) How does the presence of rock glaciers in a catchment change stream water chemistry? To address these questions, we deployed automated samplers to collect water from late June through mid-October 2022 in two rock-glacierized mountain ranges in Utah, United States characterized by different lithologies. In the Uinta Mountains of northern Utah, where bedrock is predominantly quartzite, water was collected at springs discharging from two rock glaciers previously shown to release water in late summer sourced from internal ice. In the La Sal Mountains of southeastern Utah, where trachyte bedrock is widespread, water was collected at a rock glacier spring, along the main stream in a watershed containing multiple rock glaciers, and from a stream in a watershed where rock glaciers are absent. Precipitation was also collected, and data loggers for water temperature and electric conductivity were deployed. Water samples were analyzed for stable isotopes with cavity ring-down spectroscopy and hydrochemistry with ICP-MS. Our data show that water discharging from rock glaciers in the Uinta Mountains exhibits a shift from a snowmelt source to an internal ice source over the course of the melt season that is consistent from year to year. We also found that the chemistry of rock glacier water in the two study areas is notably different in ways that can be linked back to their contrasting bedrock types. Finally, in the La Sal Mountains, the properties of water along the main stream in a rock-glacierized basin resemble the properties of water discharging from rock glaciers, and strongly contrast with the water in a catchment lacking rock glaciers. ... Article in Journal/Newspaper Ice permafrost University of California: eScholarship
institution Open Polar
collection University of California: eScholarship
op_collection_id ftcdlib
language unknown
topic Hydrology
Physical Geography and Environmental Geoscience
Earth Sciences
Geology
Climate Action
rock glacier
permafrost
mountain environments
stable isotopes
Geophysics
spellingShingle Hydrology
Physical Geography and Environmental Geoscience
Earth Sciences
Geology
Climate Action
rock glacier
permafrost
mountain environments
stable isotopes
Geophysics
Munroe, Jeffrey S
Handwerger, Alexander L
Examining the variability of rock glacier meltwater in space and time in high-elevation environments of Utah, United States
topic_facet Hydrology
Physical Geography and Environmental Geoscience
Earth Sciences
Geology
Climate Action
rock glacier
permafrost
mountain environments
stable isotopes
Geophysics
description Rock glaciers are common geomorphic features in alpine landscapes and comprise a potentially significant but poorly quantified water resource. This project focused on three complementary questions germane to rock glacier hydrology: 1) Does the composition of rock glacier meltwater vary from year to year? 2) How dependent is the composition of rock glacier meltwater on lithology? And 3) How does the presence of rock glaciers in a catchment change stream water chemistry? To address these questions, we deployed automated samplers to collect water from late June through mid-October 2022 in two rock-glacierized mountain ranges in Utah, United States characterized by different lithologies. In the Uinta Mountains of northern Utah, where bedrock is predominantly quartzite, water was collected at springs discharging from two rock glaciers previously shown to release water in late summer sourced from internal ice. In the La Sal Mountains of southeastern Utah, where trachyte bedrock is widespread, water was collected at a rock glacier spring, along the main stream in a watershed containing multiple rock glaciers, and from a stream in a watershed where rock glaciers are absent. Precipitation was also collected, and data loggers for water temperature and electric conductivity were deployed. Water samples were analyzed for stable isotopes with cavity ring-down spectroscopy and hydrochemistry with ICP-MS. Our data show that water discharging from rock glaciers in the Uinta Mountains exhibits a shift from a snowmelt source to an internal ice source over the course of the melt season that is consistent from year to year. We also found that the chemistry of rock glacier water in the two study areas is notably different in ways that can be linked back to their contrasting bedrock types. Finally, in the La Sal Mountains, the properties of water along the main stream in a rock-glacierized basin resemble the properties of water discharging from rock glaciers, and strongly contrast with the water in a catchment lacking rock glaciers. ...
format Article in Journal/Newspaper
author Munroe, Jeffrey S
Handwerger, Alexander L
author_facet Munroe, Jeffrey S
Handwerger, Alexander L
author_sort Munroe, Jeffrey S
title Examining the variability of rock glacier meltwater in space and time in high-elevation environments of Utah, United States
title_short Examining the variability of rock glacier meltwater in space and time in high-elevation environments of Utah, United States
title_full Examining the variability of rock glacier meltwater in space and time in high-elevation environments of Utah, United States
title_fullStr Examining the variability of rock glacier meltwater in space and time in high-elevation environments of Utah, United States
title_full_unstemmed Examining the variability of rock glacier meltwater in space and time in high-elevation environments of Utah, United States
title_sort examining the variability of rock glacier meltwater in space and time in high-elevation environments of utah, united states
publisher eScholarship, University of California
publishDate 2023
url https://escholarship.org/uc/item/1947j6gs
genre Ice
permafrost
genre_facet Ice
permafrost
op_relation qt1947j6gs
https://escholarship.org/uc/item/1947j6gs
op_rights CC-BY
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