River network‐scale drying impacts the spatiotemporal dynamics of greenhouse gas fluxes
Teresa Silverthorn,
Naiara López‐Rojo,
Romain Sarremejane
et al.
Abstract:Rivers significantly contribute to global biogeochemical cycles; however, we have a limited understanding of how drying may influence these cycles. Drying fragments river networks, thereby influencing important ecosystem functions such as the processing of carbon and nitrogen, and associated fluxes of greenhouse gases (GHGs) both locally, and at the river network scale. Our objective was to assess, using a network‐scale approach, the lateral, longitudinal, and temporal dynamics of GHG fluxes in a river network… Show more
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