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Cluster of Excellence ›The Ocean Floor – Earth’s Uncharted Interface‹

The ocean floor, which makes up 71 percent of the Earth’s solid surface, lies an average of 3,700 meters beneath the ocean surface. The difficulties related to accessibility necessitate ship expeditions and the use of highly specialized underwater equipment for its exploration. As yet, only a small fraction of the ocean floor has been scientifically investigated, but it is already known that this supposedly passive environment is an important interface with a wide range of functions that impact the entire Earth system. Geological, physical, biological and chemical processes interact at and within the ocean floor, thus influencing the climate system, the global carbon cycle, and biological productivity in the world ocean. We still know too little about ocean-floor processes to compile detailed global mass budgets.

The Cluster of Excellence ›The Ocean Floor – Earth’s Uncharted Interface‹ aims to quantify exchange processes at this significant boundary layer and their roles in the Earth system. The associated tasks demand the use of novel technologies for ocean-floor observation and sampling, highly sensitive analytical methods, and an expanded application of numerical models. Because of their scientific and technological complexity, the goals listed below can only be achieved through interdisciplinary research.

Current news

Showing 25-32 of 156 items.
The image shows the ocean floor at the Polaris hydrothermal field, which is characterized by hydrothermal deposits. Several small chimney structures can also be seen, some of which are covered with microbial mats (in pale yellow). Photo: PS101 AWI OFOS system

Feb 18, 2025

Hot springs in the Arctic

There is a greater variety of hydrothermal systems in the deep sea than previously assumed. This is the result of a recent study on the northernmost ...

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So-called marine snow was a subject of research during the expedition. In order to study these organic and inorganic particles floating in the water column, the researchers need “marine snow catchers”, like the one seen here on board the research vessel. Photo: Florian Pohl, University of Bayreuth

Feb 6, 2025

Research in cloudy layers of water

In mid-January, 19 scientists boarded the research vessel MARIA S. MERIAN in Las Palmas, Spain, to study the vertical and lateral transport of organic ...

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The dives of the ROV MARUM-SQUID can be followed live. Photo: MARUM – Centre for Marine Environmental Sciences, University of Bremen

Jan 18, 2025

Live dive with MARUM-SQUID

An international team of scientists and technicians is currently off the coast of New Zealand to study cold-water corals. 

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The research vessel SONNE and the remotely operated diving robot MARUM-SQUID in action during expedition SO306 in the West Indies. Photo: Tim Kalvelage

Jan 16, 2025

Cold-water corals off New Zealand

36 marine researchers are currently traveling with the German research vessel SONNE off New Zealand to study a previously poorly understood but ...

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The NASA Mars rover Perseverance has taken a selfie with some of the ten sample tubes that it has placed in a sample depot. The depot is a crucial milestone in the NASA-ESA Mars Sample Return campaign, which aims to bring Mars samples to Earth for closer study. the depot will serve as a backup in the event that Perseverance can’t deliver its samples to a future robotic lander. Photo: NASA/JPL-Caltech/MSSS

Jan 8, 2025

Life on Mars: the need for sample return

Is there life on Mars? This question will be addressed in a few years using state-of-the-art analysis techniques – when the samples are returned from the ...

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The global Ocean Floor

Ocean Floor

  • Key interface of the global carbon and nutrient cycles
  • Host to unique and vulnerable ecosystems
  • Driver and archive of environmental and climate changes