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The influence of ocean acidification on nitrogen regeneration and nitrous oxide production in the northwest European shelf sea

The assimilation and regeneration of dissolved inorganic nitrogen, and the concentration of N2O, was investigated at stations located in the NW European shelf sea during June/July 2011. These observational measurements within the photic zone demonstrated the simultaneous regeneration and assimilation of NH4+, NO2- and NO3-. NH4+ was assimilated at 1.82-49.12 nmol N/L/h and regenerated at 3.46-14.60 nmol N/L/h; NO2- was assimilated at 0-2.08 nmol N/L/h and regenerated at 0.01-1.85 nmol N/L/h; NO3-was assimilated at 0.67-18.75 nmol N/L/h and regenerated at 0.05-28.97 nmol N/L/h. Observations implied that these processes were closely coupled at the regional scale and that nitrogen recycling played an important role in sustaining phytoplankton growth during the summer. The [N2O], measured in water column profiles, was 10.13 ± 1.11 nmol/L and did not strongly diverge from atmospheric equilibrium indicating that sampled marine regions were neither a strong source nor sink of N2O to the atmosphere. Multivariate analysis of data describing water column biogeochemistry and its links to N-cycling activity failed to explain the observed variance in rates of N-regeneration and N-assimilation, possibly due to the limited number of process rate observations. In the surface waters of five further stations, ocean acidification (OA) bioassay experiments were conducted to investigate the response of NH4+ oxidising and regenerating organisms to simulated OA conditions, including the implications for [N2O]. Multivariate analysis was undertaken which considered the complete bioassay data set of measured variables describing changes in N-regeneration rate, [N2O] and the biogeochemical composition of seawater. While anticipating biogeochemical differences between locations, we aimed to test the hypothesis that the underlying mechanism through which pelagic N-regeneration responded to simulated OA conditions was independent of location. Our objective was to develop a mechanistic understanding of how NH4+ regeneration, NH4+ oxidation and N2O production responded to OA. Results indicated that N-regeneration process responses to OA treatments were location specific; no mechanistic understanding of how N-regeneration processes respond to OA in the surface ocean of the NW European shelf sea could be developed.

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Clark, Darren, Brown, Ian, Rees, Andrew, Somerfield, Paul J, Miller, P I (2014). Dataset: The influence of ocean acidification on nitrogen regeneration and nitrous oxide production in the northwest European shelf sea. https://doi.org/10.1594/PANGAEA.837515

DOI retrieved: 2014

Additional Info

Field Value
Imported on November 30, 2024
Last update November 30, 2024
License CC-BY-3.0
Source https://doi.org/10.1594/PANGAEA.837515
Author Clark, Darren
Given Name Darren
Family Name Clark
More Authors
Brown, Ian
Rees, Andrew
Somerfield, Paul J
Miller, P I
Source Creation 2014
Publication Year 2014
Resource Type text/tab-separated-values - filename: Clark_2014
Subject Areas
Name: BiologicalClassification

Name: Chemistry

Name: Ecology

Name: Lithosphere

Related Identifiers
Title: The influence of ocean acidification on nitrogen regeneration and nitrous oxide production in the northwest European shelf sea
Identifier: https://doi.org/10.5194/bg-11-4985-2014
Type: DOI
Relation: References
Year: 2014
Source: Biogeosciences
Authors: Clark Darren , Brown Ian , Rees Andrew , Somerfield Paul J , Miller P I , Richier Sophie , Achterberg Eric Pieter , Archer Steve , Bretherton Laura , Brown Ian , Clark Darren , Dumousseaud Cynthia , Holland Ross J , Hopkins Frances E , MacGilchrist G A , Moore C Mark , Poulton Alex J , Rees Andrew , Shi T , Stinchcombe Mark Colin , Suggett David J , Zubkov Mikhail V , Young Jeremy , Tyrrell Toby , Lavigne Héloïse , Epitalon Jean-Marie , Gattuso Jean-Pierre .

Title: Ocean acidification impacts on Sea Surface biology and biogeochemistry in Northwest European Shelf Seas: a high-replicated shipboard approach.
Identifier: https://doi.org/10.5285/f44043b2-b9f0-71f2-e044-000b5de50f38
Type: DOI
Relation: References
Year: 2014
Source: British Oceanographic Data Centre, Natural Environment Research Council
Authors: Clark Darren , Brown Ian , Rees Andrew , Somerfield Paul J , Miller P I , Richier Sophie , Achterberg Eric Pieter , Archer Steve , Bretherton Laura , Brown Ian , Clark Darren , Dumousseaud Cynthia , Holland Ross J , Hopkins Frances E , MacGilchrist G A , Moore C Mark , Poulton Alex J , Rees Andrew , Shi T , Stinchcombe Mark Colin , Suggett David J , Zubkov Mikhail V , Young Jeremy , Tyrrell Toby , Lavigne Héloïse , Epitalon Jean-Marie , Gattuso Jean-Pierre .

Title: seacarb: seawater carbonate chemistry with R. R package version 3.0
Identifier: https://cran.r-project.org/package=seacarb
Type: DOI
Relation: References
Year: 2014
Authors: Clark Darren , Brown Ian , Rees Andrew , Somerfield Paul J , Miller P I , Richier Sophie , Achterberg Eric Pieter , Archer Steve , Bretherton Laura , Brown Ian , Clark Darren , Dumousseaud Cynthia , Holland Ross J , Hopkins Frances E , MacGilchrist G A , Moore C Mark , Poulton Alex J , Rees Andrew , Shi T , Stinchcombe Mark Colin , Suggett David J , Zubkov Mikhail V , Young Jeremy , Tyrrell Toby , Lavigne Héloïse , Epitalon Jean-Marie , Gattuso Jean-Pierre .