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Linus Vogt

@linusvogt.bsky.social
401 followers 262 following 17 posts

Postdoc at NYU Courant Institute 🌱 Ocean heat, carbon, oxygen

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Reposted by Linus Vogt
Zeke Hausfather @zekehausfather.com · 28/09/2026
This year's record setting El Niño will impact many different parts of the world, with some experiencing severe drought and others flooding. In a new analysis at The Climate Brink, I explore what impacts happened during past events and which are most likely to occur this year
theclimatebrink.com
The impacts of this year’s record-shattering El Niño
El Niño will drive severe drought from Indonesia to the Southern Africa and northern South America, with wetter winters from the US Gulf Coast to Southern South America.
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Nick Lutsko @nick-lutsko.bsky.social · 07/04/2026
Wrote about the new approaches people are taking to building climate models: km-resolution, automated tuning, ML emulators… Climate has benefited from having 10s of models to test and compare, now we have new dimensions of model diversity to learn from notesonclimate.substack.com/p/the-many-p...
notesonclimate.substack.com
The Many Possible Futures of Climate Models
Kilometer-scale models, machine learning and model diversity
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Jessica Tierney @leafwax.bsky.social · 23/01/2026
Really excited to see this paper out!! Led by @vtcoop.bsky.social we show that if you use cold and warm paleoclimates together, you can reduce uncertainty in Earth's climate sensitivity by quantifying the pattern effect and more precisely constrain future climate change www.pnas.org/doi/10.1073/...
pnas.org
Paleoclimate pattern effects help constrain climate sensitivity and 21st-century warming | PNAS
Paleoclimates provide examples of past climate change that inform estimates of modern warming from greenhouse-gas emissions, known as Earth’s clima...
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Jens Terhaar @polarocean.bsky.social · 15/12/2025
🌊📉 Sea surface temperatures have… come back down. After the big global jump in 2023/24, SSTs are now back at below pre-jump levels in November (climatereanalyzer.org/clim/sst_dai...). Climate surprise or expected? What role does climate variability play? Let’s try to unpack 👇
Seasonal cycle of global mean daily sea surface temperatures from https://climatereanalyzer.org/clim/sst_daily/?dm_id=world2
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Jon Baker @jonbakerocean.bsky.social · 04/12/2025
📢 PhD opportunity! 🌊 “To collapse or not: the stability of the AMOC in a warming climate” Deadline: 8 Jan 2026 Work with Bristol, Liverpool & the Met Office on AMOC stability using observations, models & AI. Details: www.nercgw4plus.ac.uk/projects-202... Please share with anyone interested!
nercgw4plus.ac.uk
To collapse or not: the stability of the AMOC in a warming climate — NERC GW4+
Supervisor: Dr Rory Bingham Project keywords: climate, oceanography, AMOC, sea-level, AI
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Clara Burgard @climateclara.bsky.social · 29/10/2025
🌊🧊🇦🇶 I am happy and proud to present our #platformist team effort out in @nature.com! www.nature.com/articles/s41... We examine if, when, and why #Antarctic #ice shelves will no longer be viable, at the latest, due to changes in #atmosphere and #ocean conditions. A little 🧵 for the experts... 1/7
nature.com
Ocean warming threatens the viability of 60% of Antarctic ice shelves - Nature
The viability of Antarctic ice shelves under low rates and high rates of global warming is modelled to estimate when it will become unfeasible for the ice shelves to maintain their present-day shape.
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Swinda Falkena @swinda.bsky.social · 28/10/2025
📢 New paper out! 🌊 We discuss how well mechanisms of variability in the subpolar gyre are represented in climate models, finding that models that do this best are also the models in which abrupt shifts are found 😬. It's a technical story, so here's a simple overview 🧵 doi.org/10.5194/esd-...
doi.org
Causal mechanisms of subpolar gyre variability in CMIP6 models
Abstract. The subpolar gyre is at risk of crossing a tipping point under future climate change associated with the collapse of deep convection. As such, tipping can have significant climate impacts; i...
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JB Sallée @jbsallee.bsky.social · 16/10/2025
🚨PERMANENT POSITION OPENING🚨 A lecturer position is opening at LOCEAN on the topic: ‘Impact of climate change on marine ecosystems in the Southern Ocean’ (permanent position with the French Natural History Museum, for a researcher that will be based at LOCEAN, in the centre of Paris).
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Linus Vogt @linusvogt.bsky.social · 08/10/2025
Thanks for your interest and I'm glad you liked this part. I'm certainly no expert on these instrument uncertainties, but for our purposes they ended up being negligible relative to the scales of interest (i.e., model bias and inter-model spread in sea ice extent).
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Thomas Frölicher @froeltho.bsky.social · 02/10/2025
By linking Antarctic sea ice, cloud cover, deep ocean temperatures, and global warming, our new study led by @linusvogt.bsky.social finds that ocean heat uptake and thermal sea level rise by 2100 could be 3–14% higher, and global surface warming 3–7% greater than previously thought👇
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Linus Vogt @linusvogt.bsky.social · 02/10/2025
That sounds really interesting, let me know when there is a preprint! Funnily enough, using HadISST in our study would also have led to an exaggerated "conservative" estimate of high warming, since then the models would underestimate Antarctic SIE even more. But fortunately we are not sailors.
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Linus Vogt @linusvogt.bsky.social · 02/10/2025
Thanks for the clarification!
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Linus Vogt @linusvogt.bsky.social · 02/10/2025
Special thanks to @polarocean.bsky.social who had the initial idea for this project, and to all coauthors: @jbsallee.bsky.social, Casimir de Lavergne, @froeltho.bsky.social, and Lester Kwiatkowski.
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Linus Vogt @linusvogt.bsky.social · 02/10/2025
📈 As CMIP6 models underestimate historical Antarctic sea ice extent on average, this leads to an upward correction of climate projections by 2100 under all considered scenarios: - OHU +3–14% - Cloud feedback +19–32% - Global surface warming +6–7%
Two box plots showing the distribution of future global heat uptake with and without an observational constraint. The constrained estimate is larger and less uncertain than the prior.
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Linus Vogt @linusvogt.bsky.social · 02/10/2025
Thus, the state of Antarctic sea ice today quantifies the potential for global climate change in the future. More sea ice now → more warming later This is evident as a strong correlation across CMIP6 models (and it also holds in CMIP5)
A scatter plot showing the relationship between historical Antarctic sea ice extent (x-axis) and future ocean heat uptake (y-axis) across an ensemble of 28 climate models. There is a positive correlation of r=0.87. Also indicated is the observed value of Antarctic sea ice extent, showing that models tend to underestimate it.
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Linus Vogt @linusvogt.bsky.social · 02/10/2025
The constraint is based on Antarctic sea ice extent 🧊 Models with more sea ice today also simulate colder Southern Ocean SSTs, a colder deep ocean, and more mid-latitude cloud cover. In the future, these models lose more sea ice and clouds, amplifying SW cloud feedback, surface warming, and OHU.
Part of a schematic from a paper showing a transition from an initial climate state to a future climate state under 21st century climate change. In climate models with a cold initial state, the transition is larger than in models with a mild initial state. The "coldness" of the initial state is quantified using Antarctic sea ice extent.
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Linus Vogt @linusvogt.bsky.social · 02/10/2025
🚨🌊 New highlight paper out today in Earth System Dynamics! We find an observational constraint implying more future global ocean heat uptake, cloud feedback, and warming than the CMIP6 mean. This contrasts with previous estimates based on past warming trends. 🔗 esd.copernicus.org/articles/16/...
esd.copernicus.org
Increased future ocean heat uptake constrained by Antarctic sea ice extent
Abstract. The ocean takes up over 90 % of the excess heat stored in the Earth system as a result of anthropogenic climate change, which has led to sea level rise and an intensification of marine extre...
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Bob Kopp @bobkopp.net · 05/09/2025
I had an engagement with blogger, failed California gubernatorial candidate, and self-identified reporter Michael Shellenberger this past week, which started out being about this new paper being heralded by climate skeptics as disproving global sea-level acceleration. (LONG 🧵)
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Clara Burgard @climateclara.bsky.social · 23/07/2025
🌊 Looking for a #postdoc to join us at @ipsl.bsky.social within the #ANR project #AIAI (AI to improve coupling between the Antarctic 🧊 and the 🌊/🌧️), a collaboration between @igegrenoble.bsky.social , @lsce-ipsl.bsky.social and #LOCEAN! Deadline: Aug 8th Apply here: emploi.cnrs.fr/Offres/CDD/U...
emploi.cnrs.fr
Portail Emploi CNRS - Offre d'emploi - Postdoctoral researcher in polar climate modeling (M/F)
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Jan Zika @janzika.bsky.social · 23/07/2025
Paper just out in AI4Earth led by the incredible @eveapiedagnel.bsky.social. We show how to exploit the ocean’s tight T-S relationship at constant pressure to map trends in salinity from sparse data doi.org/10.1175/AIES.... GMM works well because the relationships are so linear, but why are they?
doi.org
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Carl T. Bergstrom @carlbergstrom.com · 16/07/2025
1. Kevin Gross and I just posted a new science-of-science preprint. This one explores the looming peer review crisis. As many of you know, it's becoming significantly more difficult for journal editors to find scholars willing to serve as peer reviewers for submitted manuscripts.
arxiv.org
Will anyone review this paper? Screening, sorting, and the feedback cycles that imperil peer review
Scholarly publishing relies on peer review to identify the best science. Yet finding willing and qualified reviewers to evaluate manuscripts has become an increasingly challenging task, possibly even ...
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Alisa Bokulich @alisabokulich.bsky.social · 01/07/2025
⏰ Free access to read & download thru August 20 the final published version of Wendy Parker & my paper "Understanding Data Uncertainty" at this link ⬇️ authors.elsevier.com/c/1lMUI8yuR6... #philsci #metasci 🧪 ⚒️
Studies in History and Philosophy of Science
journal homepage: www.elsevier.com/locate/shpsa
Understanding data uncertainty
Alisa Bokulich", Wendy S. Parker b,"
" Department of Philosophy, Boston University, United States
› Department of Philosophy, Virginia Tech, United States
ABSTRACT
Scientific data without uncertainty estimates are increasingly seen as incomplete. Recent discussions in the philosophy of data, however, have given little attention to the nature of uncertainty estimation. We begin to redress this gap by, first, discussing the concepts and practices of uncertainty estimation in metrology and showing how they can be adapted for scientific data more broadly; and second, advancing five philosophical theses about uncertainty estimates for data: they are substantive
adequacy-for-purpose view of uncertainty estimation, addresses a weakness in a recent philosophical account of data, and provides a new perspective on the "safety" versus "precision" debate in metrology.
1. Introduction
Uncertainty is an inescapable part of science. Yet while much has been written in recent years on uncertainty in computational modeling contexts (especially related to climate modeling; see, e.g., Parker, 2010;
Frigg, Thompson, & Werndl, 2015; Knutti et al., 2019), comparatively little philosophical attention has been given to uncertainty associated with scientific data collected via observation, measurement, and experiment. Important preliminary work on this topic examines the evaluation of systematic uncertainty in measurement (Staley, 2020), changing conceptions of uncertainty in metrology (de Courtenay & Grégis, 2017; Grégis, 2019b), and the representation of uncertainty when measurements are discordant (Grégis, 2019a). Overall, however, when it comes to uncertainty associated with scientific data obtained via observation, measurement, and experiment—what we will call "data uncertainty"-the territory remains largely unexplored from a philosophical point of view.
Conception…
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Paridhi Rustogi @paridhirustogi.bsky.social · 25/06/2025
Do bubbles matter for ocean carbon uptake? 🌊🫧 Yes, especially for local CO2 fluxes, where wave breaking can enhance variability by up to 40%. That’s an important consideration for #mCDR, where fluxes could otherwise be miscalculated. More in our paper here: [doi.org/10.1029/2024GB008382]
agupubs.onlinelibrary.wiley.com
Influence of Wave‐Induced Variability on Ocean Carbon Uptake
Wave effects introduce high-frequency variability and amplify the air-sea CO2 flux seasonality, with the largest impacts during storms Wave effects enhance carbon storage and amplify hemispheric ...
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Linus Vogt @linusvogt.bsky.social · 23/06/2025
Check out the full paper for a detailed analysis of all the inter-model links between stratification patterns, overturning, MLD, and OHUE. Huge thanks to my (now former 🥲) PhD advisors, @jbsallee.bsky.social and Casimir de Lavergne!
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Linus Vogt @linusvogt.bsky.social · 23/06/2025
We further find that the previously assumed importance of the AMOC for OHU efficiency can be explained by an inter-hemispheric connection in stratification strength between these two regions. As CMIP6 models are too stratified in precisely these regions on average, they tend to underestimate OHUE.
A map showing the difference in historical upper-ocean stratification between the CMIP6 ensemble mean and observations (ECCO state estimate). The models have a more strongly stratified upper ocean in the Tropics, midlatitude Southern Ocean, and subpolar North Atlantic.
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Linus Vogt @linusvogt.bsky.social · 23/06/2025
We show that upper-ocean stratification inhibits OHU efficiency in the Southern Ocean and the subpolar North Atlantic. This is because stratification in these regions is linked to large overturning cells: the Southern Ocean upper cell and the AMOC.
A map showing the inter-model correlation coefficient between local upper ocean stratification and OHUE. In the mid-latitude Southern Ocean and the subpolar North Atlantic, stronger stratification is associated with lower OHUE across models.
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Linus Vogt @linusvogt.bsky.social · 23/06/2025
So which oceanic parameters are responsible for setting the value of the OHU efficiency? Many answers have been previously proposed, including AMOC strength, mixed layer depths, and stratification. In our paper, we use an ensemble of CMIP6 models to disentangle this issue.
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Linus Vogt @linusvogt.bsky.social · 23/06/2025
In observations, the OHU efficiency in recent decades was around 0.6 W/m² per °C of global warming (Cael 2022, doi.org/10.1029/2022...). However, current-generation climate models simulate a large range of values for this quantity, almost spanning a factor of 2:
A violin plot showing the distribution of ocean heat uptake efficiency (OHUE) across 28 CMIP6 models. The OHUE values span a range of approx. 0.5 -- 1 W/m²K
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Linus Vogt @linusvogt.bsky.social · 23/06/2025
The ocean buffers climate change by removing heat from the atmosphere and storing it at depth. This effect can be quantified by the "ocean heat uptake efficiency", the amount of heat uptake per degree of global warming. OHU efficiency = OHU / ΔT
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Linus Vogt @linusvogt.bsky.social · 23/06/2025
New paper alert! 🌊 What processes control the efficiency of ocean heat uptake under CO₂ forcing? We show that Southern Ocean stratification and overturning are key, check out our publication in Ocean Science here: doi.org/10.5194/os-2... More details below 🧵👇
doi.org
Stratification and overturning circulation are intertwined controls on ocean heat uptake efficiency in climate models
Abstract. The global ocean takes up over 90 % of the excess heat added to the climate system due to anthropogenic emissions, thereby buffering climate change at Earth's surface. A key metric for quant...
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Prof Michael Meredith 🌊🧪🥼❄️ @oceanandice.bsky.social · 18/06/2025
📢 New paper alert! 📢 New insight into how sea ice controls the ocean uptake of carbon dioxide around Antarctica, obtained from the unique year-round Rothera Time Series. Delighted to be part of this study, led by the very excellent Elise Droste. 🧪❄️🥼🌊 www.nature.com/articles/s43...
nature.com
Sea ice controls net ocean uptake of carbon dioxide by regulating wintertime stratification - Communications Earth & Environment
Interannual variability of ocean uptake of carbon dioxide is governed by winter sea ice cover, according to analysis of carbonate chemistry observations along the West Antarctic Peninsula.
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Gavin Schmidt @climateofgavin.bsky.social · 31/05/2025
Last day at the GISS building (Wed. May 28th). 🥲
Photo of the a large group of GISS employees/colleagues in front of Toms Restaurant with a prominent street sign saying "112th St" taken from the middle of Broadway. Credit: Tricia Baron.
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Linus Vogt @linusvogt.bsky.social · 08/05/2025
Great panel discussion, although sad that this was probably my first and last time visiting this venue (for the foreseeable future)
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Linus Vogt @linusvogt.bsky.social · 06/05/2025
Hi David, I'm not sure if I am added as a contributor yet, if not could you add me please?
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Xabier Davila @xabidavila.bsky.social · 27/04/2025
Interested in the freshwater distribution and variability in the Southern Ocean 🌊 ? Come by my #EGU25 presentation where I will show new insights from oxygen stable isotopes! 🗓️: Monday April 28 🕰️: 14:32 - 14:42 ⛓️‍💥: meetingorganizer.copernicus.org/EGU25/EGU25-...
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Thibault Guinaldo @tguinaldo.bsky.social · 16/04/2025
🌊 The N.Atlantic has been experiencing extreme T°C in 2023. This situation raises a number of questions: Have we missed something? Do climate models allow us to understand such an event, or have we entered a new climate regime? We attempted to answer these questions in this study: rdcu.be/eh0e8 1/14
rdcu.be
Internal variability effect doped by climate change drove the 2023 marine heat extreme in the North Atlantic
Communications Earth & Environment - The 2023 North Atlantic marine heatwave was driven by an extreme phase of internal atmospheric variability but would have been impossible without the doping...
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Jens Terhaar @polarocean.bsky.social · 28/03/2025
A new estimate of the composite model-based estimate of the annually averaged ocean carbon sink. 🌊 This composite model-based estimate of the ocean carbon sink from 1959 to 2022 is similar in magnitude to the best estimate of the Global Carbon Budget but 70 % less uncertain.
bg.copernicus.org
Composite model-based estimate of the ocean carbon sink from 1959 to 2022
Abstract. The ocean takes up around one-quarter of anthropogenically emitted carbon and is projected to remain the main carbon sink once global temperatures stabilize. Despite the importance of this n...
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Thomas Frölicher @froeltho.bsky.social · 12/03/2025
Key takeaways from our study on the record-breaking global sea surface temperature jump in 2023-24: • A rare 1-in-512-year event • Only possible due to human-caused global warming • Climate models capture it—no signs of unexpected climate change More details below 👇
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Jens Terhaar @polarocean.bsky.social · 12/03/2025
Why have the sea surface temperature suddenly risen in 2023/24? 🌊 Is it true that climate models cannot simulate such SST jumps? What is common to such jumps? How will SSTs evolve over the next months and years? Are we in uncharted territory? More from our recent study in Nature is here👇
nature.com
Record sea surface temperature jump in 2023–2024 unlikely but not unexpected - Nature
Observations and climate models suggest that the global sea surface temperature jump in 2023–2024 was not unexpected and would have been nearly impossible without anthropogenic warming.
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JB Sallée @jbsallee.bsky.social · 04/03/2025
🌊 🚨 Postdoc position alert 🚨 🌊 Optimizing Southern Ocean Carbon Sink Observations Using Autonomous Floats ( @bgc-argo.bsky.social ) Supervisors: JB Sallée ; Collaboration: H. Claustre ; P. Landschutzer ; E. McDonagh Location: IPSL (LOCEAN), Paris, Fr emploi.cnrs.fr/Offres/CDD/U...
docs.google.com
PostdocCNRM_Overturning
— 2-year Postoc opportunity — The Future Evolution of Global Ocean Overturning Cells at Different Global Warming Levels Deadline for application : 1 April 2025 Supervisors: Jean-Baptiste Sallée, Rola...
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JB Sallée @jbsallee.bsky.social · 04/03/2025
🌊 🚨 Postdoc position alert 🚨 🌊 The Future Evolution of Global Ocean Overturning Cells at Different Global Warming Levels (2 years) Deadline for application: 1 April 2025 Supervisors: Jean-Baptiste Sallée, Roland Séférian Location: CNRM, Toulouse, France More info: docs.google.com/document/d/1...
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Helene Hollitzer @helenehollitzer.bsky.social · 29/01/2025
Listen back to the GO2NE webinar 34, where I discussed our latest research into the drivers of recent global #ocean #deoxygenation 🌊 Thanks to the #GO2NE team for hosting me! 📽️ youtu.be/i3zc1bjcFDI?... 📄 www.nature.com/articles/s41...
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Jens Terhaar @polarocean.bsky.social · 15/01/2025
Has the Atlantic Meridional Overturning Circulation (AMOC) weakened over the last decades? In our new study, we combine state-of-the-art CMIP6 models and observation-based estimates of the air-sea heat flux in the North Atlantic to show that the AMOC has not declined since the 1960s! 🌊
nature.com
Atlantic overturning inferred from air-sea heat fluxes indicates no decline since the 1960s - Nature Communications
The AMOC is crucial for the global ocean overturning circulation and controls the climate around the North Atlantic. Here, the authors use 24 Earth System Models from the CMIP6 to demonstrate tha...
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David Ho @davidho.bsky.social · 20/12/2024
Please join me in congratulating @manonberger.bsky.social in her successful PhD defense at @geosciences.bsky.social. She showed that growing seaweed (macroalgae) is not an effective way to remove atmospheric CO₂. 🌊
A woman stands in front of a classroom. On the screen is a presentation called:

 coastal ocean carbon cycle, and the potential role of macroalgae in removing atmospheric carbon dioxide

PhD Defense of Manon Berger in front of the jury.

Sabrina SPENCH, Présidente du jury, Professor at École Normale Supéneure

Laure RESPLANDY, Rappartrice, Associate professor at Princeton University

Judith Hauck, Rapportrice, Research scientist at Alfred Wagner Insbtute

Paul HALLORAN, Drominateur, Professor at Exter University

Laurent BOPP, Directeur de thèse,  Directeur de recherche au CNRS, LMD

Lester Kwiatkowski, Co encadrant
Chargé de recherche au CNRS, LOCEAN

David T. HO, Invité, Professor at University of Hawail at Manoa
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Thomas Frölicher @froeltho.bsky.social · 13/12/2024
Marine heatwaves (MHWs) don’t just harm ecosystems—they also alter the ocean’s carbon cycle! Our new analysis of 30 global datasets shows ocean CO₂ uptake drops by 8% during MHWs, with regional anomalies reaching up to 30%. 🌊
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Robert Rohde @rarohde.bsky.social · 22/11/2024
A new paper led by Sebastian Sippel just appeared in Nature arguing that ocean temperature measurements in the early 20th century have a cold bias. It's a fun story illustrating the process of scientific discovery, so let me talk about it a bit. 🧵 www.nature.com/articles/s41...
nature.com
Early-twentieth-century cold bias in ocean surface temperature observations - Nature
Independent statistical reconstructions of the global mean surface temperature from either ocean or land data show that existing estimates of early-twentieth-century ocean surface temperatures are too...
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JB Sallée @jbsallee.bsky.social · 21/11/2024
🚨Exciting Postdoctoral Opportunities in Oceanography 🌊 at CNRM Climate Center, Toulouse 🚨 We are seeking two highly motivated postdoctoral researchers to join us for 2 two-year positions!
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Thomas Frölicher @froeltho.bsky.social · 20/11/2024
Marine heatwaves have profoundly impacted ecosystems, calling for improved understanding of their dynamics and predictability. Our review highlights advances in studying their 3D structure, drivers, links to other extremes, future projections, and prediction skills. www.nature.com/articles/s43... 🌊🔥
nature.com
A global overview of marine heatwaves in a changing climate - Communications Earth & Environment
Improved understanding of marine heatwave predictability and impacts requires analysis of these extremes at full ocean depth, using models and observations capturing their key drivers at the relevant ...
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Clara Burgard @climateclara.bsky.social · 18/11/2024
🚨 Sea-ice modellers and polar region enthusiasts! ❄🧊🌊 There will be a session on "Advances in Sea-Ice Modelling" at #EGU25 again! Let's discuss the latest breakthroughs in sea-ice modelling and new methodologies. Deadline is Jan 15th! shorturl.at/fhfeS #SeaIce #Modelling #Climate #Arctic #Antarctica
Advertisement for an EGU25 session on "Advances in sea-ice modelling: developments and new techniques"
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Malin Ödalen @malinodalen.bsky.social · 13/11/2024
📄🧪🌊 New paper alert! 🔔 “Past foraminiferal acclimatization capacity is limited during future warming” led by Rui Ying Co-authors: Fanny M. Monteiro, Jamie Wilson, myself and Daniela N. Schmidt. Neither of them are here yet, so I need you all to cheer with me! www.nature.com/articles/s41...
nature.com
Past foraminiferal acclimatization capacity is limited during future warming - Nature
Data from the fossil record, together with computational modelling, are used to assess the response of foraminifera (marine zooplankton) to temperature changes through time and to predict how well the...
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