A better understanding of carbon dioxide (CO2) uptake is critical for understanding the role of the ocean in modulating the CO2 rise in the atmosphere. In this study, we assess the uptake of CO2 by the Pacific Ocean, how this uptake changes with the rise of atmospheric CO2 and climate change, and how much CO2 is accumulating in its interior, focusing on the period 1985–2018. For this purpose, we analyze the output of numerical models that simulate the ocean carbon sink, and compare them to the estimates derived from ocean CO2 observations. The Pacific Ocean’s uptake of excess CO2 resulting directly from human CO2 emissions is quantified to be approximately 0.7 peta-grams of carbon (PgC) per year. This CO2 uptake increased over time on average by 0.1 PgC per year per decade. CO2 accumulation rates within the interior of the Pacific are shown to be nearly balanced with the cumulative surface uptake rates. However, regional discrepancies in these quantities among model simulations and observation-based products are also found, in particular in the rate of change in the CO2 uptake in the equatorial region and the rate of CO2 accumulation in the interior of the South Pacific.
CO2 Uptake in the Pacific From 1985 to 2018: A Comparative Assessment of Observation- and Model-Based Estimates
- Masao Ishii, Brendan R. Carter, Katsuya Toyama, Keith B. Rodgers, Richard A. Feely, Thi-Tuyet-Trang Chau, Frédéric Chevallier, Flora Desmet, Luke Gregor, Yosuke Iida, Yoshiteru Kitamura, Jens Daniel Müller, Hiroyuki Tsujino
- Global Biogeochemical Cycles
- May 3, 2025
Citation: Ishii, M., Carter, B. R., Toyama, K., Rodgers, K. B., Feely, R. A., Chau, T.-T.-T., et al. (2025). CO2 uptake in the Pacific from 1985 to 2018: A comparative assessment of observation- and model-based estimates. Global Biogeochemical Cycles, 39, e2024GB008355. https://doi.org/10.1029/2024GB008355


