Carbonate chemistry and carbon sequestration driven by inorganic carbon outwelling from mangroves and saltmarshes

Author:

Reithmaier Gloria M. S.ORCID,Cabral AlexORCID,Akhand Anirban,Bogard Matthew J.ORCID,Borges Alberto V.ORCID,Bouillon Steven,Burdige David J.ORCID,Call Mitchel,Chen Nengwang,Chen XiaogangORCID,Cotovicz Luiz C.,Eagle Meagan J.,Kristensen ErikORCID,Kroeger Kevin D.,Lu Zeyang,Maher Damien T.ORCID,Pérez-Lloréns J. LucasORCID,Ray Raghab,Taillardat Pierre,Tamborski Joseph J.,Upstill-Goddard Rob C.,Wang FamingORCID,Wang Zhaohui Aleck,Xiao Kai,Yau Yvonne Y. Y.,Santos Isaac R.ORCID

Abstract

AbstractMangroves and saltmarshes are biogeochemical hotspots storing carbon in sediments and in the ocean following lateral carbon export (outwelling). Coastal seawater pH is modified by both uptake of anthropogenic carbon dioxide and natural biogeochemical processes, e.g., wetland inputs. Here, we investigate how mangroves and saltmarshes influence coastal carbonate chemistry and quantify the contribution of alkalinity and dissolved inorganic carbon (DIC) outwelling to blue carbon budgets. Observations from 45 mangroves and 16 saltmarshes worldwide revealed that >70% of intertidal wetlands export more DIC than alkalinity, potentially decreasing the pH of coastal waters. Porewater-derived DIC outwelling (81 ± 47 mmol m−2d−1in mangroves and 57 ± 104 mmol m−2d−1in saltmarshes) was the major term in blue carbon budgets. However, substantial amounts of fixed carbon remain unaccounted for. Concurrently, alkalinity outwelling was similar or higher than sediment carbon burial and is therefore a significant but often overlooked carbon sequestration mechanism.

Funder

Vetenskapsrådet

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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