We used #radium-224 to quantify vertical mixing and benthic silicate fluxes across the #Baltic Sea.
Read more here (fully open access): doi.org/10.1002/lno....
With (and others):
@barefootlab.bsky.social @biogeoste.bsky.social
We used #radium-224 to quantify vertical mixing and benthic silicate fluxes across the #Baltic Sea.
Read more here (fully open access): doi.org/10.1002/lno....
With (and others):
@barefootlab.bsky.social @biogeoste.bsky.social
Environmental Gradients, Not Geographic Boundaries, Structure Meiofaunal Communities in Siberian Seas 🌊🪱🪱
#Arctic #Biogeochemistry #Meiofauna #Sediment
📰 Full text: onlinelibrary.wiley.com/doi/10.1002/...
🤝@naturvetenskap.bsky.social @balticseacentre.bsky.social and others...
Environmental Gradients, Not Geographic Boundaries, Structure Meiofaunal Communities in Siberian Seas 🌊🪱🪱
#Arctic #Biogeochemistry #Meiofauna #Sediment
📰 Full text: onlinelibrary.wiley.com/doi/10.1002/...
🤝@naturvetenskap.bsky.social @balticseacentre.bsky.social and others...
🌎 Globally, emission from lagoons is higher than previously estimated 📈
Check is out in @jgrbiogeo.bsky.social
🔗: doi.org/10.1029/2024...
🤝 @biogeoste.bsky.social @barefootlab.bsky.social
🌎 Globally, emission from lagoons is higher than previously estimated 📈
Check is out in @jgrbiogeo.bsky.social
🔗: doi.org/10.1029/2024...
🤝 @biogeoste.bsky.social @barefootlab.bsky.social
Global lagoons emit more N2O than we thought!
agupubs.onlinelibrary.wiley.com/doi/full/10....
The 2nd PhD paper by @hlscheung.bsky.social with a great team @barefootlab.bsky.social, etc. is out now in @jgrbiogeo.bsky.social @agu.org
Global lagoons emit more N2O than we thought!
agupubs.onlinelibrary.wiley.com/doi/full/10....
The 2nd PhD paper by @hlscheung.bsky.social with a great team @barefootlab.bsky.social, etc. is out now in @jgrbiogeo.bsky.social @agu.org
🌎 Global N2O uptake may compensate one-third of aquatic CH4 emissions.
aslopubs.onlinelibrary.wiley.com/doi/full/10....
@aslo.org @barefootlab.bsky.social @biogeoste.bsky.social
#ASLO_Letters
🌎 Global N2O uptake may compensate one-third of aquatic CH4 emissions.
aslopubs.onlinelibrary.wiley.com/doi/full/10....
@aslo.org @barefootlab.bsky.social @biogeoste.bsky.social
#ASLO_Letters
Combined GHG fluxes reveal a net carbon sink across a glacier-ocean continuum — glacier exports CH₄ to coastal waters, but strong CO₂ uptake outweighs GHG emissions. 🌊❄️
Read more: agupubs.onlinelibrary.wiley.com/doi/full/10....
Combined GHG fluxes reveal a net carbon sink across a glacier-ocean continuum — glacier exports CH₄ to coastal waters, but strong CO₂ uptake outweighs GHG emissions. 🌊❄️
Read more: agupubs.onlinelibrary.wiley.com/doi/full/10....
Overall, global fjords are minor sources of #N2O to the atmosphere
❗ BUT fjords with #aquaculture and #anoxia host relatively high nitrous oxide #emissions
👉 doi.org/10.1029/2024...
🤝Great collaboration with @barefootlab.bsky.social @awahlin.bsky.social
Overall, global fjords are minor sources of #N2O to the atmosphere
❗ BUT fjords with #aquaculture and #anoxia host relatively high nitrous oxide #emissions
👉 doi.org/10.1029/2024...
🤝Great collaboration with @barefootlab.bsky.social @awahlin.bsky.social
Check it out: share.sky-follower-bridge.dev?q=44
#skyfollowerbridge
Check it out: share.sky-follower-bridge.dev?q=44
#skyfollowerbridge
Groundwater discharge explained much of the CO2 tidal dynamics in nearshore waters.
www.science.org/doi/full/10....
Groundwater discharge explained much of the CO2 tidal dynamics in nearshore waters.
www.science.org/doi/full/10....