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Soil carbon in the world’s tidal marshes

  • Tania L. Maxwell
  • , Mark D. Spalding
  • , Daniel A. Friess
  • , Nicholas J. Murray
  • , Kerrylee Rogers
  • , Andre S. Rovai
  • , Lindsey S. Smart
  • , Lukas Weilguny
  • , Maria Fernanda Adame
  • , Janine B. Adams
  • , William E.N. Austin
  • , Margareth S. Copertino
  • , Grace M. Cott
  • , Micheli Duarte De Paula Costa
  • , James R. Holmquist
  • , Cai J. T. Ladd
  • , Catherine E. Lovelock
  • , Marvin Ludwig
  • , Monica M. Moritsch
  • , Alejandro Navarro
  • Jacqueline L. Raw, Ana-Carolina Ruiz-Fernández, Oscar Serrano, Craig Smeaton, Marijn Van De Broek, Lisamarie Windham-Myers, Emily Landis, Thomas A. Worthington

Publikation: ArticleBegutachtung

51 Zitate (Scopus)
54 Downloads (Pure)

Abstract

Tidal marshes are threatened coastal ecosystems known for their capacity to store large amounts of carbon in their water-logged soils. Accurate quantification and mapping of global tidal marshes soil organic carbon (SOC) stocks is of considerable value to conservation efforts. Here, we used training data from 3710 unique locations, landscape-level environmental drivers and a global tidal marsh extent map to produce a global, spatially explicit map of SOC storage in tidal marshes at 30 m resolution. Here we show the total global SOC stock to 1 m to be 1.44 Pg C, with a third of this value stored in the United States of America. On average, SOC in tidal marshes’ 0–30 and 30–100 cm soil layers are estimated at 83.1 Mg C ha−1 (average predicted error 44.8 Mg C ha−1) and 185.3 Mg C ha−1 (average predicted error 105.7 Mg C ha−1), respectively.
OriginalspracheEnglish
Aufsatznummer10265
FachzeitschriftNature Communications
Jahrgang15
Ausgabenummer1
DOIs
PublikationsstatusPublished - 26 Nov. 2024

UN SDGs

Dieser Output leistet einen Beitrag zu folgendem(n) Ziel(en) für nachhaltige Entwicklung

  1. Clean water and sanitation
    Clean water and sanitation
  2. Life below water
    Life below water

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