Jun Yu
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junyuocean.bsky.social
Jun Yu
@junyuocean.bsky.social
I’m an ocean biogeochemistry and ecosystem modeler, and I’m interested in how climate change affects marine carbon cycles, biodiversity, ecosystem functions and fisheries.
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Excited to share that our paper “Climate Benefit and Ecological Cost Trade-offs for Ocean Iron Fertilization” has been published in Nature🌊🌍 Many thanks to my for contributing authors for their insightful discussion, help and support!
Deploying ocean iron fertilization — a strategy for carbon dioxide capture — in higher latitudes rather than near the equator could reduce environmental impacts while still achieving removal of carbon dioxide from the atmosphere, according to a study in Nature. go.nature.com/4hJtalk 🌎🌊🧪
Excited to share that our paper “Climate Benefit and Ecological Cost Trade-offs for Ocean Iron Fertilization” has been published in Nature🌊🌍 Many thanks to my for contributing authors for their insightful discussion, help and support!
Deploying ocean iron fertilization — a strategy for carbon dioxide capture — in higher latitudes rather than near the equator could reduce environmental impacts while still achieving removal of carbon dioxide from the atmosphere, according to a study in Nature. go.nature.com/4hJtalk 🌎🌊🧪
July 30, 2026 at 5:51 PM
Thanks David!
July 30, 2026 at 5:46 PM
Reposted by Jun Yu
🎉 FINAL DAYS 🎉 AGU is accepting applications for Editor-in-Chief of JAMES with term beginning 1/1/27.

👉 APPLY by 6/14/26
👉 spklr.io/63322E3MLk
June 10, 2026 at 4:00 PM
Reposted by Jun Yu
Dear colleagues, I would like to use my first Bluesky post to share our highlighted paper in PNAS about the discovery of a strong temperature response, with a Q10 over 7, for isoprene emissions from sedges and their role in affecting air quality during heat waves.
www.pnas.org/doi/abs/10.1...
Heat waves may trigger unexpected surge in aerosol and ozone precursor emissions from sedges in urban landscapes | PNAS
Biogenic isoprene emissions from herbaceous plants are generally lower than those from trees. However, our study finds widespread isoprene emission...
www.pnas.org
November 14, 2024 at 6:20 PM