1
Return

Upper-Ocean Variability of the Marine Carbonate System in the Northeast Pacific

delete2026-05-20
delete0
delete
OA
AI
A
Ana C. Franco *
D
Debby Ianson
R
Raffaele Bernardello
A
Adam H. Monahan
DOI:10.1029/2025GB008762delete
deleteOriginal
deleteShare
deleteSave
View PDF
Abstract

Abstract

En 中文
In the Northeast Pacific, the marine carbonate system's variability across timescales is not well constrained. Here, we quantify observed seasonal and non-seasonal variability in Dissolved Inorganic Carbon (DIC), partial pressure of carbon dioxide ( pCO 2 ${\text{pCO}}_{2}$ ) and aragonite saturation state Ω a $\left({{\Omega }}_{a}\right)$ and discuss potential drivers. We used three decades of observations from four Line P time series stations, the longest marine carbonate system time series in the Northeast Pacific (1990–2019). To gauge the spatial extent of the variability patterns, we used output from a global ocean model representing the observed period. In the Northeast Pacific, seasonal and non-seasonal pCO 2 ${\text{pCO}}_{2}$ variability at 10 m was minimal, mostly damped by the opposing influence of DIC and temperature changes at both seasonal and interannual timescales. For DIC and Ω a ${{\Omega }}_{a}$ , the seasonal cycle dominated total variability in the top 60–70 m, with mean-transect 10 m seasonal amplitudes of 35 ± $\pm $ 3 μmol kg − 1 ${\text{kg}}^{-1}$ and 0.31 ± $\pm $ 0.04, respectively. In the upper 60–70 m, the magnitude of non-seasonal variability was at least half that of the seasonal variability for most variables. From five climate indices examined, we focused on the basin-scale Pacific Decadal Oscillation index (PDO) to investigate potential drivers of non-seasonal variability, with 20%–40% of the non-seasonal variability in DIC and Ω a ${{\Omega }}_{a}$ associated to this index. In the Northeast Pacific, positive PDO periods were linked to a mean reduction in 10 m DIC of 5 μmol kg − 1 ${\text{kg}}^{-1}$ and an increase in 10 m Ω a ${{\Omega }}_{a}$ of 0.04 for each PDO unit increase, which could potentially reduce the occurrence and severity of ocean acidification events. The opposite could be expected during negative PDO periods.
Keywords:
seasonal variability
interannual variability
pacific decadal oscillation
dissolved inorganic carbon
ocean acidification
Gaussian process regression
AI Summary

AI Summary

Key information extracted from the uploaded paper, including a brief overview, abstract, background, key highlights, visual analysis, and future outlook.

Journal

Global Biogeochemical Cycles cover
Global Biogeochemical Cycles
IF:
5.5
Papers:
3.2K
Citations:
1.7W

Organization

Barcelona Supercomputing Center cover
Barcelona Supercomputing Center
Scholars:
235
Papers: 103
Citations: 2.7K
U
University of Victoria
Scholars:
9.8K
Papers: 1.0W
Citations: 1.5W
U
University of British Columbia
Scholars:
6.8W
Papers: 6.1W
Citations: 8.6W
Cited Papers

Cited Papers

Citing Papers

Citing Papers