Please select your home edition
Edition
Leaderboard FD July August September 2023

The ocean's 'biological pump' captures more carbon than expected

by Woods Hole Oceanographic Institution 9 Apr 2020 22:53 AEST
Marine chemist Ken Buesseler (right) deploys a sediment trap from the research vessel Roger Revelle during a 2018 expedition in the Gulf of Alaska. Buesseler's research focuses on how carbon moves through the ocean © Alyssa Santoro, Woods Hole Oceanographic Institution

Every spring in the Northern Hemisphere, the ocean surface erupts in a massive bloom of phytoplankton. Like plants, these single-celled floating organisms use photosynthesis to turn light into energy, consuming carbon dioxide and releasing oxygen in the process. When phytoplankton die or are eaten by zooplankton, the carbon-rich fragments sinks deeper into the ocean, where it is, in turn, eaten by other creatures or buried in sediments. This process is key to the "biological carbon pump," an important part of the global carbon cycle.

Scientists have long known that the ocean plays an essential role in capturing carbon from the atmosphere, but a new study from Woods Hole Oceanographic Institution (WHOI) shows that the efficiency of the ocean's "biological carbon pump" has been drastically underestimated, with implications for future climate assessments.

In a paper published April 6 in Proceedings of the National Academy of Sciences, WHOI geochemist Ken Buesseler and colleagues demonstrated that the depth of the sunlit area where photosynthesis occurs varies significantly throughout the ocean. This matters because the phytoplankton's ability to take up carbon depends on amount of sunlight that's able to penetrate the ocean's upper layer. By taking account of the depth of the euphotic, or sunlit zone, the authors found that about twice as much carbon sinks into the ocean per year than previously estimated.

The paper relies on previous studies of the carbon pump, including the authors' own. "If you look at the same data in a new way, you get a very different view of the ocean's role in processing carbon, hence its role in regulating climate," says Buesseler.

"Using the new metrics, we will be able to refine the models to not just tell us how the ocean looks today, but how it will look in the future," he adds. "Is the amount of carbon sinking in the ocean going up or down? That number affects the climate of the world we live in."

In the paper, Buesseler and his coauthors call on their fellow oceanographers to consider their data in context of the actual boundary of the euphotic zone.

"If we're going to call something a euphotic zone, we need to define that," he says. "So we're insisting on a more formal definition so that we can compare sites."

Rather than taking measurements at fixed depths, the authors used chlorophyll sensors —indicating the presence of phytoplankton— to rapidly assess the depth of the sunlit region. They also suggest using the signature from a naturally-occuring thorium isotope to estimate the rate at which carbon particles are sinking.

Buesseler is a principal investigator with WHOI's Ocean Twilight Zone project, which focuses on the little-understood but vastly important mid-ocean region. In a commentary published in Nature on March 31, Buesseler and colleagues call on the international marine research community to intensify their studies of the twilight zone during the upcoming United Nations Decade of the Ocean (2021-2030). Increased understanding of the twilight zone ecosystem and its role in regulating climate, the authors say, will lead to global policy to protect the area from exploitation.

Coauthors of the paper include: Phillip Boyd of University of Tasmania, Australia; Erin Black of Dalhousie University, Nova Scotia, and Lamont Doherty Earth Observatory, New York; and David Siegel, University of California, Santa Barbara.

This work was funded by: WHOI's Ocean Twilight Zone project; NASA as part of the EXport Processes in the global Ocean from RemoTe Sensing (EXPORTS) program; the Ocean Frontier Institute at Dalhousie University; and the Australian Research Council.

For more information, please visit www.whoi.edu.

This article has been provided by the courtesy of Woods Hole Oceanographic Institution.

Related Articles

Russell Coutts explains SailGP's investor value
Russell Coutts explains the growth of SailGP and why investors are chasing a slice of the action. SailGP co-founder and CEO Russell Coutts was interviewed last week, ahead of the weekend's Mubadala New York Sail Grand Prix, where he discussed the hard to understand investment, and growth of SailGP. Posted today at 3:27 am
Admiral's Cup vs. Rolex Fastnet Interclub Trophy
CYCA is proud to be competing in two prestigious interclub competitions The Cruising Yacht Club of Australia (CYCA) is proud to be competing in two prestigious interclub competitions — the revived Admiral's Cup and the Martin Illingworth Trophy — as part of the 2025 Rolex Fastnet Race. Posted today at 2:12 am
5.5 Metre World Championship Day 3
Aspire is new leader in Sopot Aspire (POL 17, Przemyslaw Gacek, Mateusz Kusznierewicz, Kilian Weise) has taken a 10-point lead at the 2025 5.5 Metre World Championship in Sopot, Poland, after two more races on Wednesday in a cold northerly between 12-23 knots. Posted on 11 Jun
WingFoil Racing World Cup Switzerland day 2
Rising stars and tight battles on Lake Silvaplana Day two of the Wingfoil Racing World Cup Series in Silvaplana delivered another spectacular day of competition, despite a short initial delay as racers waited for the wind to fill in. Posted on 11 Jun
Introducing EDGE - Your All-Around Advantage
North Sails 3Di Endurance Edge - from Regatta Starts to Sunset Sails North Sails 3Di Endurance Edge - from Regatta Starts to Sunset Sails. EDGE is as ready for regattas as it is for day sailing. Lighter and lower stretch than paneled or string sails. Integrated ENDURANCE Surface™ delivers a durable and easy-to-handle sail. Posted on 11 Jun
The Ocean Race Europe to contribute ocean data
All of the competing IMOCA race boats will carry specialised science equipment The Ocean Race Europe, an offshore sailing race that connects seven European cities from the Baltic to the Adriatic Seas will see all of the competing IMOCA race boats carrying specialised science equipment. Posted on 11 Jun
Loro Piana Giraglia 2025 Offshore Race Start
A total of 97 yachts are now racing along the 241-nautical-mile course At exactly 11:55 this morning, the starting procedures kicked off on the line off Saint-Tropez, sending the fleet toward the Giraglia rock. Posted on 11 Jun
Foiling Week 2025: A stellar edition set to launch
Five classes will compete: Moth, WASZP, Switch One Design, BirdyFish, and ETF26 Foiling Week returns to Europe for its 12th edition, taking place in the last week of June, after its first-ever event in Pensacola, Florida, earlier this March. Posted on 11 Jun
Women sailors reflect on Admiral's Cup inclusion
Pivotal milestones, but there is still so much more to achieve The Royal Ocean Racing Club (RORC) has long acknowledged the slow but steady path toward gender inclusion in offshore sailing. Posted on 11 Jun
A-Class Cat Europeans at Riccione, Italy Day 2
Racing finally underway after Monday's light winds The A-Class Catamaran European Championships finally got under way in Riccione on Tuesday, after their opening day was postponed because the winds in the race areas were below the 5 kt class limit. Posted on 11 Jun
Cyclops Marine 2023 November - FOOTERSelden 2020 - FOOTERHenri-Lloyd Dynamic Range