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Artificial Reefs Deployed Off West Coast To Help Restore Deep Sea Coral

21st September 2026
Deep Restoration: An artificial reef installed in 950 metres of water off the Porcupine Bank as part of the REDECOR deep-sea coral restoration project. Photo: Ifremer/REDECOR 2026
Deep Restoration: An artificial reef installed in 950 metres of water off the Porcupine Bank as part of the REDECOR deep-sea coral restoration project. Credit: Ifremer/REDECOR 2026

Twenty-three artificial reefs have been placed on the seabed off the south-west Porcupine Bank, off the west coast of Ireland and in the Bay of Biscay, France,as part of a project to restore deep sea coral.

Researchers from University of Galway are part of the international team testing restoration of coral habitats damaged by bottom trawling by installing 3D-printed artificial reefs.

Coral Starter: A live Madrepora oculata coral fragment, or “nubbin”, attached before deployment on an artificial reef. Photo: REDECOR 2026Coral Starter: A live Madrepora oculata coral fragment, or “nubbin”, attached before deployment on an artificial reef. Photo: REDECOR 2026

It is part of a three-year mission known as the REDECOR (REstauration DEs CORaux d'eau froide), involving collaboration between researchers from University of Galway, Ifremer and the Sorbonne University in France.

The expedition to deploy the artificial reefs took place on board L’Atalante, a vessel of the French Oceanographic Fleet, during August.

Reef Building: University of Galway researchers attach living coral to one of the artificial reef structures before its deep-sea deployment. Photo: REDECOR 2026Reef Building: University of Galway researchers attach living coral to one of the artificial reef structures before its deep-sea deployment. Photo: REDECOR 2026

Reefs were placed at depths between 900 and 1100m off the Porcupine Bank, and in the Guilvinec Canyon, Bay of Biscay, where other reefs installed during the 2025 expedition were also monitored. Monitoring of both Irish and French restoration sites is planned next year on board an Irish research vessel.

Dr Anthony Grehan, a deep-sea ecologist at University of Galway and co-leader of the mission to the Porcupine Bank, explained that “these deep-sea coral reefs provide vital habitat for a diversity of marine life, but many have been damaged over many years.”

“Because these corals grow by only a few millimetres each year, natural recovery of lost reefs can take decades to centuries. With this project, we are testing whether we can actively accelerate that recovery by creating new starter structures for corals to grow on which also mimic reef structure to help re-establish functioning reef habitats. The early results are very encouraging, and if we can show that these approaches work, it could open up new possibilities to scale up the restoration of damaged coral reefs elsewhere in the Atlantic and beyond.”

Cold-Water Coral: Lophelia pertusa collected in the Bay of Biscay is prepared for installation on an artificial reef during the REDECOR expedition. Photo: IfremerCold-Water Coral: Lophelia pertusa collected in the Bay of Biscay is prepared for installation on an artificial reef during the REDECOR expedition. Photo: Ifremer

While cold-water coral reefs are regarded as being less well-known than their tropical cousins, they provide important habitats for marine life and support biodiversity in the deep-sea including fish. The corals however are quite fragile and easily damaged by deep-sea trawling. While recent fisheries and conservation regulations prohibit trawling in many areas where corals are found, the issue now is how to return damaged areas to full health.

Marie-Claire Fabri, a research engineer in deep-sea benthic ecology at Ifremer and co-leader of the Bay of Biscay region expedition, explained that “preserving these areas alone is not enough; the active restoration of cold-water corals is urgently needed”.

“ The ban on bottom trawling has helped stop the direct pressure on these habitats, but to go further - given the slow growth of these corals in the Atlantic - just a few millimeters per year—we cannot simply wait for them to recover on their own.”

The artificial reefs are eco-designed cylinders made from low-carbon concrete incorporating volcanic material. Each 3D-printed structure is approximately 80cm high and 100cm in diameter, weighing around 600kg. They provide structurally complex physical microhabitats including tunnels, ledges and overhangs, that offer shelter and provide surfaces for corals and other marine life to colonise.

The reefs are placed individually on the seabed, rather than together to form a single connected structure covering an area of about half a hectare.

Dr Sophie Arnaud-Haond, Ifremer, Professor Franck Lartaud, Sorbonne University, Marie-Claire Fabri, Ifremer, and Professor Anthony Grehan, University of Galway. Credit – IfremerReef Thinkers: Dr Sophie Arnaud-Haond, Ifremer, Professor Franck Lartaud, Sorbonne University, Marie-Claire Fabri, Ifremer, and Professor Anthony Grehan, University of Galway. Credit – Ifremer

Researchers will monitor the sites over the coming years through photography, video and 3D mapping to assess how the coral and other marine life develop on and around the reefs.

Different approaches are being tested as part of the research. Some reefs were equipped with oyster shells, ceramic plates and tiles to encourage coral larvae to settle naturally, while others were fitted with fragments (‘nubbins’) of living coral.

The living coral fragments were collected from the ocean in depths of around 950 metres. Once brought to the surface, they were kept in seawater tanks under conditions designed to replicate their natural environment. Small branches were then taken from the colonies and attached to oyster shells before being anchored on the artificial reefs.

The team is focusing its research on the two principal reef-forming species of cold-water coral, Lophelia pertusa and Madrepora oculata.

The aim is to see whether the coral can survive and establish new colonies or enhance the attractiveness of the artificial reefs for colonisation by coral larvae.

Encouragingly, researchers found that the coral fragments, known as nubbins, which were placed on the artificial reefs during the REDECOR 2025 mission are still alive. The reefs have also been colonised by a range of marine species, including sea urchins, fish, crabs and crinoids.

Reef Life: A pristine cold-water coral reef off the Porcupine Bank, where researchers are testing artificial structures to help restore damaged coral habitat. Photo: Ifremer/REDECOR 2026Reef Life: A pristine cold-water coral reef off the Porcupine Bank, where researchers are testing artificial structures to help restore damaged coral habitat. Photo: Ifremer/REDECOR 2026

The research will also monitor seawater conditions, sediment and chemical contaminants. This will help improve understanding of the conditions needed for healthy coral growth and assess the potential impact of climate change and ocean acidification on restoration efforts.

Both restoration sites are now protected from further damage by bottom trawling. The SW Porcupine Bank restoration site is protected under the European Common Fisheries Policy, where trawling is prohibited at depths greater than 800 metres. The Guilvinec Canyon in the Bay of Biscay is a Natura 2000 site where trawling is also prohibited.

REDECOR forms part of the European REDRESS (Restoration of deep-sea habitats to rebuild European Seas) project, which is bringing together 27 partners from 15 countries to investigate the restoration of damaged deep-sea habitats across Europe.

The research is funded by the EU through the REDRESS project, the French Oceanographic Fleet, Ifremer and the Sorbonne University.

REDRESS partners from the UK, Iceland and Italy have also installed the same artificial reef modules in their restoration sites in the Atlantic and the Mediterranean.

This should provide a pan-European perspective on the feasibility of using these reefs to actively promote restoration of areas where coral habitat has been damaged.

The researchers expect that results from REDECOR and REDRESS will help inform implementation of the new European Nature Restoration Law which provides targets to restore damaged areas of sponge, coral, and coralligenous algae.

Afloat.ie Team

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Marine Wildlife Around Ireland One of the greatest memories of any day spent boating around the Irish coast is an encounter with marine wildlife.  It's a thrill for young and old to witness seabirds, seals, dolphins and whales right there in their own habitat. As boaters fortunate enough to have experienced it will testify even spotting a distant dorsal fin can be the highlight of any day afloat.  Was that a porpoise? Was it a whale? No matter how brief the glimpse it's a privilege to share the seas with Irish marine wildlife.

Thanks to the location of our beautiful little island, perched in the North Atlantic Ocean there appears to be no shortage of marine life to observe.

From whales to dolphins, seals, sharks and other ocean animals this page documents the most interesting accounts of marine wildlife around our shores. We're keen to receive your observations, your photos, links and youtube clips.

Boaters have a unique perspective and all those who go afloat, from inshore kayaking to offshore yacht racing that what they encounter can be of real value to specialist organisations such as the Irish Whale and Dolphin Group (IWDG) who compile a list of sightings and strandings. The IWDG knowledge base has increased over the past 21 years thanks in part at least to the observations of sailors, anglers, kayakers and boaters.

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