BaSIS · Barium in the Southern Ocean Indian Sector
Horizon Europe — Marie Skłodowska-Curie Actions
- Duration
- 2022-11-01 → 2024-10-31
- EU contribution
- €195,915
- Participants
- 1
- Scheme
- HORIZON-TMA-MSCA-PF-EF
Lines connect the coordinator with its partners.
Results in brief
Barium in the Southern Ocean Indian Sector
The Southern Ocean (SO) plays a pivotal role in global climate regulation and ocean biogeochemistry, acting as a major sink for atmospheric carbon dioxide (CO2). Its unique dynamics, driven by the Antarctic Circumpolar Current, influence global nutrient cycles and marine ecosystems. Despite its significance, the SO remains one of the least understood regions due to its remoteness and the complexity of its processes. The SO is particularly noteworthy for its extensive yet underutilized reservoir of macronutrients, constrained by limiting factors like light and micronutrient availability (e.g., iron and manganese). Understanding these dynamics is essential to predict how this key region will respond to climate change and its role in carbon sequestration. Central to the SO’s biogeochemical processes is the mesopelagic zone, where carbon and nutrients are recycled through the activity of phytoplankton and remineralization processes. The element barium (Ba) has emerged as a promising tracer for organic carbon remineralization. However, the global Ba cycle remains poorly understood, with key uncertainties surrounding sources such as hydrothermal vents, deep sediments, and biological activity. These limitations hinder our ability to use Ba effectively as a biogeochemical tracer. The BaSIS project addresses this critical knowledge gap by focusing on barium isotopic composition (δ¹³⁸Ba), a cutting-edge approach to disentangle Ba sources and processes in the SO. Ba isotopes offer unique insights into the contributions of biological and sedimentary processes, as well as particle dynamics. This study, the first of its kind in the SO, will significantly advance our understanding of the region’s role in the global Ba cycle and its broader implications for ocean biogeochemistry. Project Pathway to Impact BaSIS aims to deliver transformative insights into the Ba cycle through high-resolution isotopic measurements across the Indian sector of the SO. By leveraging samples collected during the SWINGS project—a multidisciplinary campaign focusing on trace element dynamics—BaSIS will: 1. Document the distribution of Ba and Ba isotopes across major water masses to uncover their influence on the global ocean Ba cycle. 2. Characterize sedimentary sources of Ba on the Kerguelen Plateau to quantify their contributions. 3. Investigate biological and particle-mediated Ba transformations, including export and remineralization processes. These objectives align with broader scientific priorities in oceanography, providing critical data to refine global biogeochemical models. The project’s outcomes will directly inform policies related to climate change mitigation and marine ecosystem management by enhancing predictions of carbon cycling in the ocean.
Data: CORDIS, © European Union
Project objective
Barium (Ba) has been proven to be a particular useful tool to estimate organic carbon remineralization in various areas of the worlds ocean. To date, however, the Ba cycle and its budgets in the ocean are not well constrained. Indeed, in the ocean, sources of Ba from hydrothermal alteration and deep-sea sediments, but also the internal Ba cycle are hard to constrain with Ba concentrations alone. The use of Ba isotopic composition (138Ba) measurements can provide meaningful insights on these sources and processes. Specifically, different inputs and different biological processes influencing the Ba distribution in the ocean have distinct 138Ba. However, surveys of 138Ba, in seawater and particles in the Southern Ocean (SO) has never been made. It is particularly important to understand the impact of the SO on the Ba cycle, as any preformed Ba or other sources of Ba in the SO would have a large impact on its use as a remineralization tracer in the global ocean. BaSIS is thus a unique opportunity to enhance knowledge on the Ba cycling in this key oceanic region by studying 138Ba in seawater and marine particles from the GEOTRACES cruise SWINGS in the SO. The fellow will spend the first two years at the Laboratoire de lEnvionnement Marin (LEMAR) under the supervision of Dr. Planquette. This fellowship will allow her to come back to Europe with the technical expertise she acquired outside of the EU in the past years. She will implement a new technic and will acquire a unique overview of the Ba cycle in the global Ocean. Research results will be of interest to worldwide researchers working on the study of the impact of the global carbon cycle, promoting European excellence and competitiveness in dedicated European and international carbon export projects.
Original text from CORDIS.
Participants
- CENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUE CNRS · ParisCoordinatorFrance
Links
- View on CORDIS
- DOI: 10.3030/101063324
- https://ec.europa.eu/research/participants/documents/downloadPublic?documentIds=080166e5138e66f7&appId=PPGMS
- https://ec.europa.eu/research/participants/documents/downloadPublic?documentIds=080166e514611e9e&appId=PPGMS
Data: CORDIS, © European Union
