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The riparian reactive interface: a climate-sensitive gatekeeper of global nutrient cycles

  • Marc Stutter
  • , Nikki J. Baggaley
  • , Jess Davies
  • , Zisis Gagkas
  • , Victoria Janes-Bassett
  • , Hjalmar Laudon
  • , Allan Lilly
  • , Anna Lupon
  • , Andreas Musolff
  • , Sara Trojahn
  • , Philip M. Haygarth

Publication: Contribution to journalJournal articlepeer-review

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Abstract

Riparian zones are critical interfaces to freshwater systems, acting as gateways for the conveyance and modification of macronutrient fluxes from land to rivers and oceans. In this paper, we propose that certain riparian conditions and processes (conceptually 'Riparian Reactive Interfaces') may be susceptible to environmental change with consequences of accelerating local nutrient cycling cascading to global impacts on the cycles of carbon (C), nitrogen (N), and phosphorus (P). However, we argue that this concept is insufficiently understood and that research has not yet established robust baseline data to predict and measure change at the key riparian ecosystem interface. We suggest one contributing factor as lack of interdisciplinary study of abiotic and biotic processes linking C, N, and P dynamics and another being emphasis on riparian ecology and restoration that limits frameworks for handling and scaling topography-soil-water-climate physical and biogeochemical observations from plot to large catchment scales. Scientific effort is required now to evaluate riparian current and future controls on global nutrient cycles through multi-nutrient (and controlling element) studies, grounded in landscape frameworks for dynamic riparian behaviour variation, facilitating scaling to catchment predictions.
Original languageEnglish
Article number1213175
Number of pages4
JournalFrontiers in Environmental Science
Volume11
DOIs
Publication statusPublished - 2023

Bibliographical note

Publisher Copyright:
Copyright © 2023 Stutter, Baggaley, Davies, Gagkas, Janes-Bassett, Laudon, Lilly, Lupon, Musolff, Trojahn and Haygarth.

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 14 - Life Below Water
    SDG 14 Life Below Water

Keywords

  • environmental change
  • global nutrient cycles
  • landscape
  • macronutrient
  • riparian
  • soil
  • spatio-temporal

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