Skip to main content
Article
Role of carbonate burial in Blue Carbon budgets
USF St. Petersburg campus Faculty Publications
  • V Saderne
  • N R Geraldi
  • P I Macreadie
  • D T Maher
  • J J Middleburg
  • O Serrano
  • H Almahasheer
  • A Arias-Ortiz
  • M Cusack
  • B D Eyre
  • J W Fourqurean
  • H Kennedy
  • D Krause-Jensen
  • T Kuwae
  • P S Layery
  • C E Lovelock
  • N Marba
  • P Masque
  • M A Mateo
  • I Mazarrasa
  • K J McGlathery
  • M PJ Oreska
  • C J Sanders
  • I R Santos
  • Joseph M. Smoak, University of South Florida St. Petersburg
  • T Tanaya
  • K Watanabe
  • C M Duarte
SelectedWorks Author Profiles:

Joseph M. Smoak

Document Type
Article
Publication Date
2019
Abstract

Calcium carbonates (CaCO3) often accumulate in mangrove and seagrass sediments. As CaCO3 production emits CO2, there is concern that this may partially offset the role of Blue Carbon ecosystems as CO2 sinks through the burial of organic carbon (C-org). A global collection of data on inorganic carbon burial rates (C-inorg, 12% of CaCO3 mass) revealed global rates of 0.8 TgC(inorg) yr(-1) and 15-62 TgC(inorg) yr(-1) in mangrove and seagrass ecosystems, respectively. In seagrass, CaCO3 burial may correspond to an offset of 30% of the net CO2 sequestration. However, a mass balance assessment highlights that the C-inorg burial is mainly supported by inputs from adjacent ecosystems rather than by local calcification, and that Blue Carbon ecosystems are sites of net CaCO3 dissolution. Hence, CaCO3 burial in Blue Carbon ecosystems contribute to seabed elevation and therefore buffers sea-level rise, without undermining their role as CO2 sinks.

Publisher
Nature Publishing Group
Creative Commons License
Creative Commons Attribution-Noncommercial-No Derivative Works 4.0
Citation Information
Saderne, V., Geraldi, N. R., Macreadie, P., Maher, D. T., Middelburg, J. J., Serrano, O., … Duarte, C. M. (2019). Role of carbonate burial in Blue Carbon budgets. Nature Communications, 10, 1106. https://doi.org/10.1038/s41467-019-08842-6