A Tropical Cocktail of Organic Matter Sources: Variability in Supraglacial and Glacier Outflow Dissolved Organic Matter Composition and Age Across the Ecuadorian Andes

Author:

Holt Amy D.1ORCID,Kellerman Anne M.1ORCID,Battin Tom. I.2ORCID,McKenna Amy M.3ORCID,Hood Eran4ORCID,Andino Patricio5,Crespo‐Pérez Verónica5ORCID,Peter Hannes2ORCID,Schön Martina2ORCID,De Staercke Vincent2,Styllas Michail2ORCID,Tolosano Matteo2,Spencer Robert G. M.1ORCID

Affiliation:

1. National High Magnetic Field Laboratory Geochemistry Group Department of Earth, Ocean, and Atmospheric Science Florida State University Tallahassee FL USA

2. River Ecology Laboratory Ecole Polytechinque Fédérale de Lausanne Lausanne Switzerland

3. Department of Soil Crop Sciences Colorado State University Fort Collins CO USA

4. Program on the Environment and Alaska Coastal Rainforest Center University of Alaska Southeast Juneau AK USA

5. Laboratorio de Limnología Museo de Zoología QCAZ I Escuela de Ciencias Biológicas Pontificia Universidad Católica del Ecuador Quito Ecuador

Abstract

AbstractThe biogeochemistry of rapidly retreating Andean glaciers is poorly understood, and Ecuadorian glacier dissolved organic matter (DOM) composition is unknown. This study examined molecular composition and carbon isotopes of DOM from supraglacial and outflow streams (n = 5 and 14, respectively) across five ice capped volcanoes in Ecuador. Compositional metrics were paired with streamwater isotope analyses (δ18O) to assess if outflow DOM composition was associated with regional precipitation gradients and thus an atmospheric origin of glacier DOM. Ecuadorian glacier outflows exported ancient, biolabile dissolved organic carbon (DOC), and DOM contained a high relative abundance (RA) of aliphatic and peptide‐like compounds (≥27%RA). Outflows were consistently more depleted in Δ14C‐DOC (i.e., older) compared to supraglacial streams (mean −195.2 and −61.3‰ respectively), perhaps due to integration of spatially heterogenous and variably aged DOM pools across the supraglacial environment, or incorporation of aged subglacial OM as runoff was routed to the outflow. Across Ecuador, Δ14C‐DOC enrichment was associated with decreased aromaticity of DOM, due to increased contributions of organic matter (OM) from microbial processes or atmospheric deposition of recently fixed and subsequently degraded OM (e.g., biomass burning byproducts). There was a regional gradient between glacier outflow DOM composition and streamwater δ18O, suggesting covariation between regional precipitation gradients and the DOM exported from glacier outflows. Ultimately, this highlights that atmospheric deposition may exert a control on glacier outflow DOM composition, suggesting regional air circulation patterns and precipitation sources in part determine the origins and quality of OM exported from glacier environments.

Publisher

American Geophysical Union (AGU)

Subject

Paleontology,Atmospheric Science,Soil Science,Water Science and Technology,Ecology,Aquatic Science,Forestry

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