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Carbon-rich waters are becoming even more acidic as atmospheric CO2 levels rise

A new study reveals that ocean acidification is accelerating at a rate outpacing atmospheric CO2 levels, with the Northeastern Pacific Ocean experiencing rapid acidification. The research analyzed coral skeletons from the past century, showing that CO2 has been accumulating in North American waters faster than in the atmosphere.

SourceUniversity of Washington·JournalNature Communications·TypeExperimental study·DateNov 13, 2025

For the first time in 40 Years, Panama’s deep and cold ocean waters failed to emerge, possibly affecting fisheries and coral health

Scientists from the Smithsonian Tropical Research Institute recorded that Panama's Pacific upwelling did not occur in 2025, leading to diminished temperature drops and productivity spikes. The researchers attribute this event to a significant reduction in wind patterns, highlighting the vulnerability of tropical upwelling systems.

SourceSmithsonian Tropical Research Institute·JournalProceedings of the National Academy of Sciences·DateSep 1, 2025

Remote control eddies: Upwelled nutrients boost productivity around Hawaiian Islands

A new study reveals that ocean eddies off the leeward side of Hawaiian Islands supply nutrients to both sides of the island chain, stimulating blooms of phytoplankton and boosting biological productivity. This mechanism may also impact fisheries near Hawaii and other nutrient-poor regions.

SourceUniversity of Hawaii at Manoa·JournalJournal of Geophysical Research Oceans·TypeComputational simulation/modeling·DateOct 31, 2024

Ocean currents threaten to collapse Antarctic ice shelves

A new study reveals that meandering ocean currents and the ocean floor induce upwelling velocity, transporting warm water to shallower depths, contributing to rapid melting of Antarctic ice shelves. This process poses a significant threat to coastal communities worldwide due to rising global sea levels.

SourceHokkaido University·JournalNature Communications·TypeObservational study·DateApr 11, 2024

How weather phenomena affect ocean circulation

Research investigates impact of storm fronts, tropical storms, and cyclones on ocean circulation, finding changes in atmospheric synoptic variability (ASV) slow down ocean circulation and decrease primary productivity. ASV variations also affect mixing of ocean's layers and strength of oceanic circulation systems.

SourceHelmholtz Centre for Ocean Research Kiel (GEOMAR)·Journalnpj Climate and Atmospheric Science·TypeComputational simulation/modeling·DateOct 13, 2023

Why Asia-Pacific tropical seas flourish with marine life

A new study reveals that transient wind events trigger significant phytoplankton blooms near tropical reef islands, creating a large network of marine ecosystems. This process, driven by coastal winds, fuels the production of phytoplankton and supports critical feeding habitats for migratory marine species.

SourceFlinders University·JournalJournal of Oceanography·TypeComputational simulation/modeling·DateJan 19, 2023

Largest known manta ray population is thriving off the coast of Ecuador, new research shows

A distinct population of oceanic manta rays was identified off the coast of Ecuador, with an estimated total population of over 22,000 individuals, making it more than 10 times larger than any other known subpopulation. The population is large and potentially healthy due to favorable conditions in the region.

SourceOregon State University·JournalMarine Ecology Progress Series·TypeData/statistical analysis·DateNov 14, 2022

Study links cold water shock to catastrophic coral collapse in the Eastern Pacific

A recent study by the University of Plymouth and international partners reveals that rapid sea temperature drops of up to 10 degrees were a primary cause of a devastating coral die-off event in Costa Rica's Eastern Tropical Pacific. The research highlights the importance of considering upwellings when managing reef systems, and propose...

SourceUniversity of Plymouth·JournalPeerJ·TypeObservational study·DateSep 28, 2022

Sea secrets surface in the Great Australian Bight

Oceanographers have discovered substantial subsurface phytoplankton layers deep beneath the eastern part of the Great Australian Bight, supporting rich marine biodiversity. This finding explains how the region's productivity survives even when surface phytoplankton blooms disappear during certain upwelling seasons.

SourceFlinders University·JournalContinental Shelf Research·TypeData/statistical analysis·DateAug 17, 2022

Corals tell Arabian Sea story of global warming

Researchers found that global warming is causing changes to the Arabian Sea upwelling, which could impact commercial fishing, regional climate, and socioeconomics. The study used coral fossils to analyze seawater temperature and salinity changes over a 1,000-year period.

SourceHokkaido University·JournalGeophysical Research Letters·DateJun 4, 2021

From deep water to the surface: the nexus between climate, upwelling and marine ecosystems

Researchers studied the nexus between climate, upwelling, and marine ecosystems, finding that each Eastern Boundary Upwelling System (EBUS) has unique drivers and climate variability. The study highlights the importance of considering local and remote forcing factors in predicting long-term variations in upwelling.

Extinction of cold-water corals on the Namibian shelf due to low oxygen contents

A new study published in the journal Geology reveals that cold-water corals on the Namibian shelf have been extinct for over 4,500 years due to low oxygen contents. The researchers attribute this extinction to a shift in the Benguela upwelling system and its associated intensification of the oxygen minimum zone.

What makes a place a home?

New research reveals that lionfish populations on mesophotic reefs are affected by prey abundance and water temperature. Higher densities of lionfish were found at sites with lower bottom temperatures, suggesting cold-water upwelling currents fuel the food chain in these areas.

SourceBermuda Institute of Ocean Sciences·JournalFrontiers in Marine Science·DateMay 21, 2019

Revived oceanic CO2 uptake

The Southern Ocean's carbon sink has revived after 'saturating' since 2005 due to changes in weather patterns. The reinvigoration is attributed to variations in wind and temperature, enabling the ocean to absorb more CO2 from the atmosphere.

SourceETH Zurich·JournalScience·DateSep 10, 2015

AGU journal highlights -- Mar. 26, 2013

Researchers study terrestrial water storage data to predict fire activity in the Amazon region months in advance. They find that during high fire years, water storage is below average before the fire season, while in low fire years, it is above average before the dry season.

SourceAmerican Geophysical Union·JournalGeophysical Research Letters·DateMar 26, 2013