Saltar al contenido principal

ETHNOS_APP

Inicio • Búsqueda • Revistas • Lista 0

A model to characterize soil moisture and organic matter profiles in the permafrost active layer in support of radar remote sensing in Alaskan Arctic tundra

Datos Bibliográficos

ID15548748
AutoresKazem Bakian-Dogaheh (0000-0001-8897-0105, University of Southern California, autor de correspondencia), Richard H Chen (0000-0001-8571-689X, Jet Propulsion Laboratory), Yonghong Yi (0000-0002-0039-0462, Jet Propulsion Laboratory), John S Kimball (0000-0002-5493-5878, University of Montana), Mahta Moghaddam (0000-0001-5304-2616, University of Southern California), Alireza Tabatabaeenejad (0000-0002-5098-8526, University of Southern California)
Año2022
Volumen17
Número2
Páginas025011-025011
Fecha de publicación2022-01-24
Peer ReviewedSí
Open AccessSí
TipoARTICLE
RevistaEnvironmental Research Letters (JOURNAL)
Identificadores de la revistaISSN: 1748-9326 • E-ISSN: 1748-9326
EditorialIOP Publishing (PUBLISHER • GB)
DOI10.1088/1748-9326/ac4e37
OpenAlexW4210687623
IdiomaEN
Citas recibidas2
Referencias citadas54

Organic matter (OM) content and a shallow water table are two key variables that govern the physical properties of the subsurface within the active layer of arctic soils underlain by permafrost, where the majority of biogeochemical activities take place. A detailed understanding of the soil moisture and OM profile behavior over short vertical distances through the active layer is needed to adequately model the subsurface physical processes. To observe and characterize the profiles of soil properties in the active layer, we conducted detailed soil sampling at five sites along Dalton Highway on Alaska’s North Slope. These data were used to derive a generalized logistics function to characterize the total OM and water saturation fraction behavior through the profile. Furthermore, a new pedotransfer function was developed to estimate the soil bulk density and porosity—information that is largely missing from existing soil datasets—within each layer, solely from the soil texture (organic and mineral properties). Given the currently sparse soil database of the Alaskan Arctic, these profile models can be highly beneficial for radar remote sensing models to study active layer dynamics

Active layer · Arctic · Biogeochemical cycle · Bulk density · Geotechnical engineering · Hydraulic conductivity · Layer (electronics · Pedotransfer function · Permafrost · Remote sensing · Soil horizon · Soil water · Tundra · Water content · Climate change and permafrost · Cryospheric studies and observations · Environmental Science · Materials Science · Soil Moisture and Remote Sensing · Ecology · Geology · Oceanography · Soil Science

  • Integrating multi-source remote sensing data for mapping boreal forest canopy height and species in interior Alaska in support of radar modeling

    Open Access•Yuhuan Zhao, Yu-Huan Zhao et al.•Environmental Research Letters•2024

  • Exploring the interplay between soil thermal and hydrological changes and their impact on carbon fluxes in permafrost ecosystems

    Open Access•Valeria Briones, Elchin Jafarov et al.•Environmental Research Letters•2024

  • Climate change and the permafrost carbon feedback

    Open Access•E A G Schuur, Angel Ribes Pons et al.•Nature•2015

  • Critical analysis of root

    Open Access•KAREL MOKANY, R JOHN RAISON et al.•Global Change Biology•2006

  • The Circumpolar Arctic vegetation map

    Open Access•Donald A Walker, Martha K Raynolds et al.•Journal of Vegetation Science•2005

  • The Vertical Distribution of Soil Organic Carbon and Its Relation to Climate and Vegetation

    Open Access•Esteban G Jobbágy, Robert B Jackson•Ecological Applications•2000

  • Estimated stocks of circumpolar permafrost carbon with quantified uncertainty ranges and identified data gaps

    Open Access•Gustaf Hugelius, Jens Strauss et al.•Biogeosciences•2014

  • Soil organic carbon pools in the northern circumpolar permafrost region

    Open Access•C Tarnocai, Josep G Canadell et al.•Global Biogeochemical Cycles•2009

  • Environment, vegetation and greenness (NDVI) along the North America and Eurasia Arctic transects

    Open Access•Donald A Walker, Howard E Epstein et al.•Environmental Research Letters•2012

  • Active layer thickness as a function of soil water content

    Open Access•Leah K Clayton, Kevin Schaefer et al.•Environmental Research Letters•2021

  • Missing pieces to modeling the Arctic-Boreal puzzle

    Open Access•Joshua B Fisher, Daniel J Hayes et al.•Environmental Research Letters•2017

  • Biomass offsets little or none of permafrost carbon release from soils, streams, and wildfire

    Open Access•Benjamin W Abbott, Jeremy B Jones et al.•Environmental Research Letters•2016

  • Belowground plant biomass allocation in tundra ecosystems and its relationship with temperature

    Open Access•Peng Wang, Monique Heijmans et al.•Environmental Research Letters•2016

  • Dynamics of aboveground phytomass of the circumpolar Arctic tundra during the past three decades

    Open Access•Howard E Epstein, Martha K Raynolds et al.•Environmental Research Letters•2012

  • Permafrost thaw and resulting soil moisture changes regulate projected high-latitude CO 2 and CH 4 emissions

    Open Access•David M Lawrence, Charles D Koven et al.•Environmental Research Letters•2015

  • Inference of the impact of wildfire on permafrost and active layer thickness in a discontinuous permafrost region using the remotely sensed active layer thickness (ReSalt) algorithm

    Open Access•Roger Michaelides, Kevin Schaefer et al.•Environmental Research Letters•2018

  • An overview of ABoVE airborne campaign data acquisitions and science opportunities

    Open Access•Charles E Miller, Paul Griffith et al.•Environmental Research Letters•2019

  • The circumpolar active layer monitoring (calm) program

    J Brown, Kenneth M Hinkel et al.•Polar Geography•2000

Obras citantes distintas2
Citas por año1
Intervalo de citas2024 - 2024 (1)
Velocidad de citaciónrecent
Altamente citadoNo
Tipos de citaNeutras: 2
Ethnos_APP • Proyecto Open Source • Licencia MIT • Frontend v2.0.0 • Privacidad y Cookies • Documentación de la API: api.ethnos.app/docs • Código de la API: GitHub • DOI: 10.5281/zenodo.17049435 • Código del Frontend: GitHub • DOI: 10.5281/zenodo.17050053 • cruz.rio.br • Expectantes Misericordiae