Extreme variations of pCO2 and pH in a macrophyte meadow of the Baltic Sea in summer: evidence of the effect of photosynthesis and local upwelling.

Saderne, Vincent, Fietzek, Peer and Herman, P. M. J. (2013) Extreme variations of pCO2 and pH in a macrophyte meadow of the Baltic Sea in summer: evidence of the effect of photosynthesis and local upwelling. Open Access PLoS ONE, 8 (4). e62689. DOI 10.1371/journal.pone.0062689.

[thumbnail of journal.pone.0062689.pdf]
Preview
Text
journal.pone.0062689.pdf - Published Version
Available under License Creative Commons: Attribution 3.0.

Download (1MB) | Preview

Supplementary data:

Abstract

The impact of ocean acidification on benthic habitats is a major preoccupation of the scientific community. However, the natural variability of pCO2 and pH in those habitats remains understudied, especially in temperate areas. In this study we investigated temporal variations of the carbonate system in nearshore macrophyte meadows of the western Baltic Sea. These are key benthic ecosystems, providing spawning and nursery areas as well as food to numerous commercially important species. In situ pCO2, pH (total scale), salinity and PAR irradiance were measured with a continuous recording sensor package dropped in a shallow macrophyte meadow (Eckernförde bay, western Baltic Sea) during three different weeks in July (pCO2 and PAR only), August and September 2011.The mean (± SD) pCO2 in July was 383±117 µatm. The mean (± SD) pCO2 and pHtot in August were 239±20 µatm and 8.22±0.1, respectively. The mean (± SD) pCO2 and pHtot in September were 1082±711 µatm and 7.83±0.40, respectively. Daily variations of pCO2 due to photosynthesis and respiration (difference between daily maximum and minimum) were of the same order of magnitude: 281±88 µatm, 219±89 μatm and 1488±574 µatm in July, August and September respectively. The observed variations of pCO2 were explained through a statistical model considering wind direction and speed together with PAR irradiance. At a time scale of days to weeks, local upwelling of elevated pCO2 water masses with offshore winds drives the variation. Within days, primary production is responsible. The results demonstrate the high variability of the carbonate system in nearshore macrophyte meadows depending on meteorology and biological activities. We highlight the need to incorporate these variations in future pCO2 scenarios and experimental designs for nearshore habitats.

Document Type: Article
Additional Information: WOS:000318008400213
Keywords: Baltic Sea; Polarfuchs; CO2 CONCENTRATING MECHANISMS; OCEAN ACIDIFICATION; CORAL-REEF; SEAGRASS PHOTOSYNTHESIS; SEAWATER ACIDIFICATION; ANTHROPOGENIC CO2; MARINE MACROALGAE; INORGANIC CARBON; FRENCH-POLYNESIA; TOTAL ALKALINITY
Research affiliation: OceanRep > GEOMAR > FB3 Marine Ecology > FB3-EOE-B Experimental Ecology - Benthic Ecology
OceanRep > GEOMAR > FB2 Marine Biogeochemistry > FB2-CH Chemical Oceanography
Refereed: Yes
Open Access Journal?: Yes
Publisher: Public Library of Science
Projects: CalMarO
Date Deposited: 27 Mar 2013 14:13
Last Modified: 23 Sep 2019 19:58
URI: https://oceanrep.geomar.de/id/eprint/20802

Actions (login required)

View Item View Item