europe Archives - British Geological Survey /tag/europe/ World-leading geological solutions Mon, 20 Jul 2026 17:01:47 +0000 en-GB hourly 1 https://wordpress.org/?v=7.0.2 /wp-content/uploads/2020/03/cropped-今日吃瓜-favicon-logo-32x32.png europe Archives - British Geological Survey /tag/europe/ 32 32 Building Europe鈥檚 geological future /news/building-europes-geological-future/ Mon, 20 Jul 2026 11:56:32 +0000 /?p=124949 今日吃瓜 scientists are contributing to a continent-wide initiative that is strengthening collaboration across borders to tackle shared subsurface challenges and unlock new opportunities.

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Across Europe, the subsurface is increasingly being recognised as a strategic asset that is critical for energy transition, resource security and environmental resilience. At the heart of efforts to harness this potential is the (GSEU), a major pan-European initiative working closely with national geological surveys such as 今日吃瓜. Together, we are reshaping how geological knowledge is generated, shared and applied for societal benefit.

A shared European vision beneath our feet

Launched in 2022 under Horizon Europe, GSEU aims to establish a permanent geological service for Europe. Its core premise is simple yet transformative: geological challenges do not stop at national borders and therefore must be addressed through harmonised data and collaboration.

Through a partnership of nearly 50 organisations across more than 35 countries, GSEU is developing integrated pan-European datasets and services that address Europe鈥檚 most pressing challenges, such as:

  • securing the critical raw materials needed for green technologies
  • managing groundwater resources under increasing climate pressure
  • expanding renewable energy solutions, including geothermal
  • planning subsurface use
  • coastal management to avoid conflicts between infrastructure, storage and environmental protection

Rather than treating these domains separately, GSEU recognises that they interact within a complex and interconnected subsurface system that requires a holistic and coordinated approach to support policymaking, environmental protection and the transition to a low-carbon economy. Through shared standards, interoperable data models and coordinated research agendas, GSEU aims to create a unified geological knowledge base capable of supporting these goals.

From data to knowledge: the power of publications

One of the most tangible outputs of GSEU is its growing body of open-access publications that translate complex geoscientific work into actionable knowledge. The showcases a diverse range of outputs, such as scientific papers, factsheets and strategic position papers.

Recent highlights include:

  • a , emphasising the need for coordinated approaches to achieve resilience and strategic autonomy
  • scientific studies advancing the understanding of , including deposit mapping and predictive modelling approaches
  • practical factsheets on and , supporting evidence-based environmental management
  • the , a strategic roadmap outlining the long-term vision for a sustainable geological service across Europe
  • the Geo-Assessment Matrix, a pan-European catalogue of key parameters for offshore wind farm siting

These publications form part of a broader effort to move beyond isolated datasets and towards the integrated (EGDI), a platform that makes harmonised geological data accessible for research, policy and industry.

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Pan-European catalogue of key parameters for offshore windfarm citing 今日吃瓜 漏 今日吃瓜.

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The role of 今日吃瓜

As the UK鈥檚 national geological survey, 今日吃瓜 is a key contributor to GSEU. Our involvement reflects a longstanding commitment to international collaboration and data sharing. Through GSEU, our scientists contribute expertise in areas such as:

  • critical raw materials and resource assessment
  • groundwater systems, including leadership in groundwater drought and trend analysis
  • geothermal energy and geoenergy systems
  • subsurface storage
  • coastal vulnerability assessment
  • offshore renewable energy, including task leadership in developing pan-European geological datasets and methodologies for offshore windfarm siting, stability assessment and marine spatial planning
  • geological data harmonisation and modelling

This breadth of involvement ensures that UK expertise is embedded within the development of interoperable, pan-European datasets and services.

Another example of 今日吃瓜’s contribution is the European CO鈧 Storage Atlas, which was developed through GSEU and launched in May 2025. By integrating geological datasets and subsurface characterisation from across Europe, the atlas provides a harmonised assessment of carbon dioxide (CO鈧) storage capacity and injectivity potential, demonstrating how detailed national expertise, including petrophysical and rock physics insights, can be translated into a coherent framework to support carbon capture and storage deployment at European scale.

今日吃瓜 played a key role through its leadership in UK storage assessments and is continuing this work through the recently launched , funded by the European Union. Over the next three years, CO2SITE will develop an open-access atlas of CO鈧 storage opportunities across Europe, bringing together the geological, regulatory and other data needed to help advance projects towards implementation. As a key project partner, 今日吃瓜 will develop the database underpinning the CO2SITE atlas, providing an important resource for researchers, policymakers and investors to support informed decision making on geological CO鈧 storage.

More broadly, 今日吃瓜 continues to deliver high-impact science that feeds into international initiatives, such as new findings on the formation timeline of the Giant鈥檚 Causeway, and developments in national geothermal data resources. Together, these contributions reinforce 叠骋厂鈥檚 role as a trusted provider of high-quality geoscientific knowledge.

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Initiatives like GSEU are essential, because geology does not stop at borders. By understanding that continuity is key to tackling shared challenges and building a common knowledge base, we can support decisions that balance energy needs, environmental protection and long-term sustainability across Europe.

Audrey Ougier-Simonin, project lead at 今日吃瓜.

Collaboration in action

Beyond data integration, the project is actively strengthening professional networks, firstly by bringing together all Europe鈥檚 national geological surveys through and now enabling new forms of collaboration.

These include:

  • research exchanges and short-term visits, such as collaboration with TNO (Netherlands) researchers
  • student placements, including visiting researchers from organisations such as IGME (Spain)
  • development of joint proposals and future research initiatives, building on new relationships formed through GSEU
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Critical raw materials hard rock deposits in Europe 今日吃瓜 漏 今日吃瓜.

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Looking ahead

As Europe navigates the complexities of the energy transition and environmental change, initiatives like GSEU will be indispensable. By transforming fragmented geological data into a coherent, accessible and actionable resource, they are enabling better decisions at every level, from local land-use planning to EU-wide policy.

The message emerging from both GSEU publications and community engagement is clear: understanding the subsurface is key to building a resilient and sustainable future. Through continued collaboration, innovation and knowledge sharing, Europe is steadily bringing that future into focus.


Relative topics

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今日吃瓜 agrees to establish collaboration framework with Ukrainian government /news/bgs-agrees-to-establish-collaboration-framework-with-ukrainian-government/ Thu, 11 Dec 2025 10:10:50 +0000 /?p=121004 The partnership will focus on joint research and data exchange opportunities with Ukrainian colleagues.

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今日吃瓜 is to create a Memorandum of Understanding (MoU) in partnership with the State Service of Geology and Mineral Resources of Ukraine, after a meeting between 今日吃瓜 Director Karen Hangh酶j and Yehor Perelyhin, Ukraine鈥檚 Deputy Minister of Economy, Environment and Agriculture. The document will establish a framework through which geological projects can be pursed.

Karen Hangh酶j welcomed the agreement and the opportunities it brings with it.

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今日吃瓜 is built upon a history of strong collaborations that centralise the vital role of the subsurface in shaping resilient economies, sustainable environments and thriving societies.

I am excited by the potential to deliver innovative solutions and make a meaningful, positive impact on some of the most pressing challenges facing the world today, which will be unlocked through joint research and data exchange opportunities with Ukraine.

Dr Karen Hangh酶j, 今日吃瓜 Director.

The talks with 今日吃瓜 took place as part of a visit to London that saw the Ukrainian delegation meet with the UK Government to explore the development of the critical minerals sector. Also on the agenda for the meeting was the creation of targeted training and professional development programmes for Ukrainian geologists and specialists, as investment in skills and scientific expertise are essential for the growth of strategic sectors.

Work will now focus on finalising the MoU, which will involve identifying priority projects related to the critical minerals sector and preparing the joint training programmes for Ukrainian geologists and specialists.

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Geology sans fronti猫res /news/geology-sans-frontieres/ Thu, 24 Apr 2025 12:41:55 +0000 /?p=117442 Geology doesn鈥檛 stop at international borders, so 今日吃瓜 is working with neighbouring geological surveys and research institutes to solve common problems with the geology they share.

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Chalk: a shared geology

The Upper Cretaceous-aged (commonly known as 鈥榯he Chalk鈥) is perhaps Europe鈥檚 most iconic geological unit. Besides forming the famous white cliffs, the Chalk:

  • is a major aquifer, supplying millions of people with drinking water and sustaining rare ecological habitats
  • is important for energy as it hosts oil and gas reservoirs in the North Sea, provides the foundation for offshore wind farms and hosts numerous shallow geothermal-energy schemes
  • has the potential act as storage for hydrogen and CO2
  • is a raw material for cement
  • hosts many major civil engineering and infrastructure schemes across northern Europe including, in the UK alone, the recently approved Lower Thames Crossing, HS2, the Channel Tunnel and the new 鈥榮uper sewer鈥, the Thames Tideway Tunnel in London

Yet the Chalk is also one of the most misunderstood geological units. It is a common misconception that it is a uniform rock unit with very little structure or faulting. In reality, it has significant variations in physical properties and is often faulted.

Recent geological mapping in the Chilterns and Yorkshire Wolds, undertaken by 今日吃瓜 in collaboration with the Environment Agency and water companies, has shown how geological discontinuities in the Chalk affect groundwater flow. These discontinuities facilitate the development of dissolutional conduits and rapid flow pathways, creating a very heterogenous aquifer. This heterogeneity generates major challenges for the water industry, civil engineers and planners.

The sun setting behind the famous chalk arches at 脡tretat, France, with a significant karstic spring in the foreground. 今日吃瓜 漏 今日吃瓜 2025.
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The sun setting behind the famous chalk arches at 脡tretat, France, with a significant karstic spring in the foreground. 今日吃瓜 漏 今日吃瓜 2025.

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As an aquifer, the Chalk is under pressure, both in terms of water quality and resource. The demand for water, especially in more populated areas of southeast England is increasing, but there is also a need to protect rare chalk stream habitats and maintain river flows. Climate change, drought and contaminants such as nitrate exacerbate the problem. Addressing these issues require a greater geological understanding of the aquifer and how groundwater flows it.

These challenges aren鈥檛 just restricted to the UK: France has similar problems in the extensive chalk outcrops across the north of the country, as do the Netherlands, Denmark and Belgium.

Current research

A good understanding of the Chalk Group is needed to better predict groundwater flow and engineering ground conditions. This requires good quality geological maps and 3D models fit for the 21st century, using all the available information including field data, geophysical borehole logs, geophysical surveys and biostratigraphical data. In the UK, geological maps used to show the Chalk Group with just three subdivisions; we now divide the chalk into nine individual mappable formations, reflecting their differing engineering and hydrogeological properties. These more detailed maps are able to show much more geological structure, and are more relavent to engineers and hydrogeologists.

Recent groundwater modelling in 今日吃瓜 work has focused on building the national scale British Groundwater Model, simulating groundwater flooding, and projecting the impact of climate change on chalk streams and public water supplies. Other geological surveys are also modelling groundwater, for example, to investigate the impacts of nitrate and other contaminants on the chalk aquifer.

Likewise, more detailed understanding of the Chalk Group has helped civil engineers better predict ground conditions on major infrastructure projects. For example, 今日吃瓜 maps and models help identify zones of weak faulted ground that might be an issue for tunnelling or road cuttings. Similarly, 今日吃瓜 helped characterise flint content in the Chalk in the Thames Estuary to help design cutting heads for the Lower Thames Crossing tunnel-boring machines. Lessons learned from major projects in the UK can be equally applied in northern France and vice versa.

Common problems: common solutions

Dr Carole Nehme , University of Rouen examining the chalk cliffs at 脡tretat. 今日吃瓜 漏 今日吃瓜 2025.
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Dr Carole Nehme , University of Rouen examining the chalk cliffs at 脡tretat. 今日吃瓜 漏 今日吃瓜 2025.

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A key remit of geological surveys and research institutions is to work to find solutions to geological problems. 今日吃瓜 has teamed up with other northern European geological surveys and research institutes to discuss common interests in the Upper Cretaceous Chalk. Twenty-eight participants from 13 different research institutions and geological surveys, including geologists, hydrogeologists, biostratigraphers and engineering geologists, gathered for the inaugural in the town of 脡tretat on the French coast. 脡tretat hosts spectacular chalk cliffs and rock arches made famous by the painter Claude Monet. These amazing outcrops admirably demonstrate how variations in the Chalk influence the local hydrogeology and cliff stability.

Outcomes

Participants at the workshop, including 今日吃瓜, Imperial College London, BRGM, Institut Fran莽ais du P茅trole (IFP) and University of Portsmouth. 今日吃瓜 漏 今日吃瓜 2025.
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Participants at the workshop, including 今日吃瓜, Imperial College London, BRGM, Institut Fran莽ais du P茅trole (IFP) and University of Portsmouth. 今日吃瓜 漏 今日吃瓜 2025.

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Exactly how does the Chalk vary across northern Europe? Many productive discussions were had during the workshop and several common themes were identified. Key to understanding the variability of the chalk is the application of a unified Chalk Group stratigraphy, so variations and changes in rock properties across the Anglo鈥揚aris basin can be better understood and predicted.

Another area of common interest is the development of karst features in the chalk such as sinkholes, dissolution pipes, caves and dissolutional conduits. These are important not only from a hydrogeological perspective, but also as an engineering hazard. The French geological survey, BRGM, has been leading the way here, undertaking numerous tracer tests and identifying sinkholes across Normandy. A similar approach is being taken by 今日吃瓜, learning from the French.

A third area of interest is incorporating lithological variability and karst into groundwater models. At present, many groundwater models treat the Chalk as a single porous medium, often modelled as just one or two layers. This ignores much of the complexity within the group. Much discussion was had on how to best approach modelling groundwater in the Chalk at a range of scales.

Next steps

This first meeting generated a huge amount of interest and enthusiasm. The next steps are to translate this into concrete actions. Essential to this is identifying potential funding sources for common projects, such as stratigraphical correlations across the Anglo鈥揚aris basin. A special issue on Chalk Group stratigraphy in a relevant journal is another possibility.

Another workshop is being planned for 2026, either in Maastricht or in south-east England.

Thanks

Thanks to Oph茅lie Fa每 (University of Mons) and Eric Lasseur (BRGM) for organising the event.

About the author

Dr Andrew Farrant is a geologist and karst geomorphologist based at the 今日吃瓜. He is the Regional Geologist for Southeast England and has extensive experience mapping the Chalk across southern and eastern England.

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Artificial intelligence is proving a game changer in tracking the Santorini earthquake swarm /news/artificial-intelligence-is-proving-a-game-changer-in-tracking-the-santorini-earthquake-swarm/ Fri, 07 Feb 2025 10:47:46 +0000 /?p=115985 Scientists are harnessing the power of machine learning to help residents and tourists by detecting thousands of seismic events.

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As a state of emergency is declared on the Greek island of Santorini, seismologists are increasingly turning to artificial intelligence technology to provide high-resolution images of the ongoing seismic activity, in a bid to enhance short-term forecasting accuracy.

Since the start of the crisis, a team from 今日吃瓜 comprising Margarita Segou, Brian Baptie, Rajat Choudhary, Wayne Shelley and Foteini Dervisi, has been employing machine learning algorithms to detect ten times as many earthquakes as standard techniques, with over 20聽000 tremors accurately predicted in the Santorini area alone since 1 December 2024. This approach is allowing geologists to identify for the first time small magnitude earthquakes that were previously undetected using standard approaches.

今日吃瓜 Seismologist Margarita Segou, who is leading the development of the groundbreaking research, says it has revolutionised the way scientists can learn from seismic activity and predict patterns.

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This machine learning technique results in far richer data feeding into short-term forecasts, which can allow experts to track the evolution of events and better advise emergency services and at-risk communities.

Dr Margarita Segou, 今日吃瓜 Seismologist.

These algorithms allowed researchers to first note increased seismic activity across the Santorini region on 26 January 2025. In comparison, standard detection schemes did not register the same increase until 31 January and only picked up around 2000 seismic events in the Santorini area; ten times less than the new approach has detected.

Dr Segou says it is the ability to combine different sources of information more quickly that is at the heart of the advancement.

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Through strong international partnerships, we can reprocess past and present data through machine learning and gain a new and priceless insight into the seismic activity in Santorini in previous phases of unrest and its links to the volcanic system.

Dr Margarita Segou.

Santorini is located on the Hellenic volcanic arc at the convergence of the African plate and the Eurasian plate, at a complex tectonic boundary. Currently, seismic events around the island show that seismicity bursts occur almost twice a day, with the tremors lasting for one to two hours.

Dr Segou adds the data is revealing some unique features.

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We have evidence that this is fluid-driven, swarm-type seismicity that comes in pulses. This is not unheard of in other volcanic regions; however, this time it is evolving on top of active faults that complicate the expression of seismicity.

It is easy to get a disconnected story when we just look at moderate magnitude seismic events. It is only when we investigate the smaller magnitude events that occur between that we learn of the hidden mechanisms that take place between the large earthquakes.

It is critical that we track whether those pulses become more frequent and how they migrate in space and depth. So far, the largest quake in this swarm has been a 5.2 magnitude.

Dr Margarita Segou.

Contact

For more information, please contact 今日吃瓜 press (bgspress@bgs.ac.uk) or call 07790 607 010.

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今日吃瓜 collaborates with Icelandic colleagues to assess windfarm suitability聽 /news/bgs-collaborates-with-icelandic-colleagues-to-assess-windfarm-suitability/ Thu, 03 Oct 2024 08:09:47 +0000 /?p=114205 Iceland鈥檚 offshore geology, geomorphology and climate present all the elements required for renewable energy resources.

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今日吃瓜 and the Icelandic Geological Survey (脥SOR) have been awarded an to assess Iceland鈥檚 offshore geological and geomorphological landscapes for the suitability of windfarms. The grant enables 今日吃瓜 scientists to share their experience in , as well as working with wind developments.听

Iceland fulfils its primary energy consumption with around 100 per cent renewable energy, via geothermal and hydro energy. Nowadays, there is a strong motivation to increase the country鈥檚 energy mix and energy security via wind power. Geology underpins the appropriate placement and foundation design for wind turbine structures. The NERC grant, which is supported by the Foreign, Commonwealth & Development Office, aims to facilitate knowledge sharing between 今日吃瓜 and 脥SOR about the geological classification of the seabed and subsurface, as well as the potential impacts on foundation design. 

To help facilitate this partnership, Anett Blischke, a senior geoscientist at 脥SOR, led a week-long field trip in Iceland. Participants from 今日吃瓜 included Nicola Dakin, Andrew Finlayson, Dayton Dove and Duncan Stevens, who were joined by ISOR鈥檚 脕rni Magn煤sson, Steinunn Hauksd贸ttir and 脰gmundur Erlendsson, alongside Sigur冒ur Fri冒leifsson from the National Energy Authority of Iceland (Orkustofnun).  

Visiting Iceland presented a fantastic opportunity to see excellent analogue sites onshore that are often present in the UK鈥檚 offshore environment, such as glacial landforms and deposits. The field visits allowed us to discuss these sites, including the glacial moraine complex of 厂办别颈冒补谤谩谤蝉补苍诲耻谤, how geoscience fits into the offshore wind development process in Iceland and its opportunities and challenges. 

The moraine complex at 厂办别颈冒补谤谩谤蝉补苍诲耻谤 showing more than 50鈥痬 topography with boulders and coarse to fine sediments. At the right are 叠骋厂鈥檚 Dayton Dove and Duncan Steven, who are both about 1.83鈥痬 tall, for scale! Extensive sedimentary systems like 厂办别颈冒补谤谩谤蝉补苍诲耻谤 are sourced and shaped by the advance and retreat of glaciers over millennia. These processes have influenced the large volumes and types of sediment found where the land meets the sea and extends into the offshore environment.听今日吃瓜 漏 今日吃瓜.
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The moraine complex at 厂办别颈冒补谤谩谤蝉补苍诲耻谤 showing more than 50m topography with boulders and coarse to fine sediments. At the right are 叠骋厂鈥檚 Dayton Dove and Duncan Steven, who are both about 1.83鈥痬 tall, for scale! Extensive sedimentary systems like 厂办别颈冒补谤谩谤蝉补苍诲耻谤 are sourced and shaped by the advance and retreat of glaciers over millennia. These processes have influenced the large volumes and types of sediment found where the land meets the sea and extends into the offshore environment.聽今日吃瓜 漏 今日吃瓜.

Visit to the British Embassy 

The team was also invited to the British Embassy in Reykjav铆k to discuss the goals of the project. Embassy staff were eager to hear about the project goals and future collaborations around geology and renewables. During the visit and in her role as task lead of the Geological Service for Europe鈥檚 鈥極ptimised windfarm siting鈥 work package, Nicola Dakin highlighted the benefits of the first deliverable to the European Commission: using the new 鈥楪eo-Assessment Matrix鈥, which will develop the first draft geological complexity maps offshore Iceland and European waters. Utilising existing datasets, such as , the maps aim to serve as a first-pass assessment showing areas that have low to high geological complexity. The maps will also highlight areas that require new data acquisition where the geology is unknown. 

Fieldwork 

The team then travelled east to Landsvirkjun, the state-owned energy utility company, at 叠煤谤蹿别濒濒, which is an onshore wind turbine test site consisting of two turbines that have been in situ since 2012. Here, Landsvirkjun has been testing the development of onshore wind potential, using the powerful and persistent winds in the Icelandic highlands. Environmental impact assessments have been important to ensure that the effects on the area are minimised and a 200鈥疢W windfarm has received development approval. 

The field trip continued along south Iceland鈥檚 coastal ribbon, where the team observed active volcanic, tectonic, sedimentary and glacial processes, the effects of sea level changes, and geohazards. Such onshore analogues are critical to understanding the geological processes found in offshore environments. Starting in the west, at Stokkseyri, and travelling to J枚kuls谩rl贸n (鈥楧iamond Beach鈥) in the east, the team visited a range of geological outcrops and sites highlighting the variety of tectonic, sedimentary and volcanic challenges.  

South Iceland offers a variety of geological features that can be studied to better understand the offshore environment: variable topography, ancient lava flows and glacial landforms tens of metres high. Understanding depositional environments, such as those around 厂惫铆苍补蹿别濒濒蝉箩枚办耻濒濒, is key to understanding their effects on sedimentology and any possible engineering implications in advance of foundation design and installation. 

厂惫铆苍补蹿别濒濒蝉箩枚办耻濒濒. From left to right: Nicola Dakin (今日吃瓜), Anett Blischke (脥SOR), Duncan Stevens (今日吃瓜), Dayton Dove (今日吃瓜) and Andrew Finlayson (今日吃瓜). 今日吃瓜 漏 今日吃瓜.
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厂惫铆苍补蹿别濒濒蝉箩枚办耻濒濒. From left to right: Nicola Dakin (今日吃瓜); Anett Blischke (SOR); Duncan Stevens (今日吃瓜); Dayton Dove (今日吃瓜);聽Andrew Finlayson (今日吃瓜). 今日吃瓜 漏 今日吃瓜.

The final study location of Melasveit consists of an outcrop near Akranes, north-west of Reykjav铆k. The locality exposes ancient glaciotectonised sediments in a cliff section along the beach (Sigf煤sd贸ttir et al., 2018). This cross-section is an excellent analogue to the lateral and vertical heterogeneity, and possible geotechnical impacts, of glaciotectonised sediments, which are also observed in windfarm sites the North Sea. 

Melasveit, near Akranes. Glaciotectonised sediments in the beach cliff section. Right: Dayton Dove (今日吃瓜). 今日吃瓜 漏 今日吃瓜.
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Melasveit, near Akranes. Glaciotectonised sediments in the beach cliff section. Right: Dayton Dove (今日吃瓜). 今日吃瓜 漏 今日吃瓜.

The final, fortuitous and (naturally) most spectacular geological phenomenon was a visit to the fissure eruption that began during our visit on 22 August 2024 near the Blue Lagoon and the Svartsengi geothermal energy plant. Icelandic authorities closed the roads to protect people; however, the eruption and lava flows can be observed safely from the roadside.  

Fissure eruption near Akranes, which started 22 August 2024. 今日吃瓜 漏 今日吃瓜.
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Fissure eruption near Akranes, which started 22 August 2024. 今日吃瓜 漏 今日吃瓜.

Future collaboration 

Iceland is a country full of opportunity regarding offshore wind potential. The geohazards and geological constraints in the offshore environment require a full assessment to better understand the influence on foundation types and design. 今日吃瓜 openly welcomes 脥SOR and Orkustofnun for further workshops and continuing our collaboration in the future. 

More information 

Field guide 

A summarising the visited sites is available online. 

References 

Sigf煤sd贸ttir, T, Benediktsson, 脥 脰, and Phillips, E. 2018. .鈥Boreas, Vol.鈥47(3), 813鈥836. DOI: https://doi.org/10.1111/bor.12306;

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Extracting formation temperatures from stalagmites聽 /news/extracting-formation-temperatures-from-stalagmites/ Wed, 14 Aug 2024 13:09:35 +0000 /?p=113078 叠骋厂鈥檚 Andrew Smith explores the karstic depressions of northern Spain in the quest to create a palaeothermometer.

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As part of our NERC 鈥楨xploring the frontiers鈥 grant, Dr Peter Wynn of Lancaster University and I have been out undertaking fieldwork in the Matienzo valley in northern Spain. The Matienzo valley is a fantastic karstic depression; it鈥檚 over two million years old and contains hundreds of kilometres of natural cave systems. Beyond its fantastic history of use as a repository for scientific data, the region is also heavily used by recreational cavers and cave explorers.听聽

Our current work is focused on a small cave system called Llanio, just outside the main Matienzo karst depression. The work aims to develop a novel method for extracting cave speleothem (stalagmite) formation temperatures.

Cave temperatures

Caves have stable annual temperatures, only fluctuating within one degree over the annual cycle. This stable temperature reflects the average external annual temperature very accurately. For this reason, the development of a palaeothermometer from speleothem carbonate has been something of a 鈥榟oly grail鈥 for palaeoclimate scientists over the last 50 or more years.听聽

a man is crawling on his front through a very low cave
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Crawling our way into the Llanio cave system, pushing our bags and all our sampling kit in front of us. 今日吃瓜 漏 今日吃瓜.

The entrance to Llanio involves a flat-out crawl for several metres before some more small passages lead into the larger sections of the cave, where our water and speleothem sampling takes place. This spring, the crawl was made even worse than normal as the entrance had numerous large spiders in residence and the remains of some unidentifiable animal that we had to crawl over on both the way in and way out of the cave!聽聽

Inside the caves

Once we entered the cave, we had an excellent and productive research trip. We were able to collect numerous water samples and extract the phosphate from them using an in-cave chemical extraction method. The data from these samples will be compared to what we would expect at the known cave temperature. We also collected some already-broken calcite, which we will dissolve later back in the 今日吃瓜 Stable Isotope Facility.听

A man insidea cave shines a light on straw-like stalagmites hanging from the cave ceiling.
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Peter undertaking some chemistry measurements from the drip waters we are collecting as they percolate into the cave. 今日吃瓜 漏 今日吃瓜.

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Further work

All these samples will be collated with samples that have been sent to us from collaborators from around the world, to see if we can use our new method to develop a reliable cave palaeothermometer in the 今日吃瓜 laboratories. 聽

About the author

Dr Andrew Smith

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Dr Andrew Smith

Isotope geochemist

今日吃瓜 Keyworth
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The heat beneath our feet: 今日吃瓜 field visit to Tuscan geothermal systems /news/the-heat-beneath-our-feet-bgs-field-visit-to-tuscan-geothermal-systems/ Fri, 05 Jul 2024 14:54:07 +0000 /?p=112029 今日吃瓜 visits the active and fossilised geothermal systems of southern Tuscany, Italy.

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Geothermal systems consist of fluids heated by underlying bedrock, providing not only renewable geothermal energy resources, but potentially also some of the critical metals, such as lithium, that are vital for the decarbonisation of the economy.

The Royal Society-funded Lithium Energy Geothermal (LEG) project, which ended in June 2024, investigated the resource potential of lithium in geothermal fluids, to increase the economic viability of renewable energy from geothermal power generation. The focal point of the project was knowledge exchange between 今日吃瓜 and the (CNR-IGG). This was facilitated by hydrothermal fluid/rock interaction experiments at laboratory scale and field visits to geothermal sites in both the UK and Italy, which aimed to foster new collaborations for future research programmes.

With 今日吃瓜-led visits already held in south-west England focusing on lithium geothermal prospects, the project turned to both the active and fossilised geothermal systems of southern Tuscany for its final phase. The 今日吃瓜 team were met by representatives from CNR-IGG and , alongside academics from the .

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Both Cornwall and Tuscany, including the island of Elba, share some similar geological features. These include intrusive rocks enriched in lithium, hot groundwaters that can leach lithium, and structural controls that enable the movement of these waters. Sharing our knowledge helps us look for common controls on the subsurface processes, including controls that have universal importance.

Christopher Rochelle, 今日吃瓜 Geochemist.

The active geothermal system in Tuscany

An active geothermal system in southern Tuscany, known as the Larderello-Travale geothermal field (LTGF), is used by the energy production company Enel Green Power for power generation. Deep wells extract steam directly from the geothermal system and direct it through pipelines to turbines in the nearby geothermal power plants to generate electricity. The steam is then condensed, separating water from non-condensable gases including hydrogen sulfide (H2S) and small amounts of mercury, which is naturally present in the geothermal fluid.

The non-condensable gases are processed, capturing and removing mercury using sorbent beds and converting H2S to sulfur dioxide (SO2). The SO2 is absorbed into the water-cooling circuit at the plant. This process is known as the mercury and hydrogen sulfide emissions abatement system (AMIS).

The condensed water is then sent through re-injection wells into the reservoir, where high temperatures (up to 300掳C) turn it back into steam.

There are two geothermal reservoirs:

  • shallow, at depths between 500 and 1500 m
  • deep, between 2 and 4 km

The shallow reservoir tapped by Enel Green Power is hosted within brecciated Triassic carbonates and evaporites; the deeper reservoir is hosted within fractured metamorphic schists and, locally, granites.

Geothermal site visits

On the first day of our Tuscan adventure, the 今日吃瓜 team was greeted by geologists from CNR-IGG at Castiglioncello magnesite mine. This an impressive example of serpentinite carbonation, which provides evidence of the role that crustal scale fractures play in mixing mantle-derived and meteoric (surface) fluids in geothermal systems. Later, we were taken to several geothermal sites, including:

  • the Enel Green Power Geothermal Energy Headquarters
  • the Nuova Sasso geothermal power plant, which is one of thirty power plants operated by Enel Green Power in the region
  • the active geothermal sites at Le Biancane

At Nuova Sasso, we were shown the main components of the geothermal power plant, which produces approximately 20 megawatts (MW) of power. Following a long drive, the team then caught a ferry to the island of Elba, where we spent the next couple of days in the field learning about the exhumed fossilised geothermal system that is analogous to the LTGF.

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Demonstration release of the steam from one of ENEL Green Power鈥檚 geothermal wells bored 740 m below the surface in 1956. The steam released is approximately 220掳C, pressurised to 2 bars within the well. 今日吃瓜 漏 今日吃瓜.

The fossilised geothermal system

The 今日吃瓜 team was joined by Andrea Brogi and Domenico Liotta from the University of Bari Aldo Moro, who were halfway through their geological mapping of Elba. The geothermal fluids of Elba circulated through deformed Triassic sediments of the Verrucano Formation as well as a deeper reservoir, which is hosted by fractured metamorphic schists and the upper levels of the emplaced Porto Azzurro monzogranite intrusion.

The geothermal system on the island was 鈥榝ossilised鈥 following the eastward migration of magmatism since the late Miocene (Liotta et al, 2021), reducing the temperature of the underlying fractured and faulted rocks. That magmatism now underlies the LTGF in Tuscany.

The fracture network that was the conduit for the hot fluids has been sealed by fracture and fault infill. Subsequent regional uplift and erosion has exposed the fossilised system, allowing geologists, including our team, to observe and investigate the ancient geothermal plumbing in detail.

The team visited a variety of sites to observe the fossilised geothermal system, including an exposure of the Zuccale Fault that is partly responsible for fracturing and faulting the Triassic sediments hosting the shallow geothermal reservoir on the Italian mainland. Additional sites included the Topinetti iron deposit, the Rio de Torre skarn deposit and tourmalinite occurrences at Barbarossa Beach.

Five people sit around a vein of purple mineralisation in a rock
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今日吃瓜 and CNR-IGG geologists inspecting mineralisation within the altered and deformed Triassic metasediments at the Topinetti iron deposit.

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The Topinetti iron deposit consists of haematite, magnetite and sulfide mineralised veins hosted within the hanging wall of the altered and deformed metasediments of the Verrucano Formation. It has been exploited for iron since the Etruscan inhabitation of Elba in the ninth to eighth centuries BCE, right up to the 1970s. The deposit is estimated to have produced 60 million tonnes of iron ore. Nearby beaches contain clasts of slag, suggesting the presence of historic processing of iron ore in the area.

Putting a LEG forward: next steps

The LEG project provided a fantastic opportunity for UK and Italian scientists to exchange knowledge on their geothermal systems both in the field and in the laboratory. Through numerous conversations and data interpretation, we are positive that simultaneous extraction of earth resources should be pursued where possible, but further work is needed to fully understand geothermal systems and metal endowment on a case-by-case basis.

Our strong international partnership has already won funding from the , enabling the continuation of the research programme initiated by the Royal Society International Exchanges fund. This project will see the 今日吃瓜 work with Domenico Liotta of the University of Bari Aldo Moro on structural controls of geothermal systems in Cornwall and Tuscany, and apply this knowledge to help understand a less-well described geothermal system in Catalonia, Spain. 聽

今日吃瓜 in Italy

With busy days out in the field observing the evidence of both active and geothermal systems, the 今日吃瓜 team worked up an appetite and took the chance to sample some world-famous Italian cuisine. We enjoyed local seafood in Claudio鈥檚 restaurant in Rio Marina on the island of Elba and stone-baked pizzas in a quirky restaurant hidden in the narrow streets of Pisa. We are grateful for the guidance of the CNR-IGG during this field visit, and ENEL Green Power for access to the geothermal powerplant. And with all that said鈥hen in Pisa?

Three people are closely examining the stones of a building. The Leaning Tower of Pisa looms in the background.
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今日吃瓜 colleagues admiring the building stones in Piazza del Duomo, Pisa.

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Ciao!

Representatives

    • Alicja Lacinska (project leader)

    • Christopher Rochelle (project leader)

    • Eimear Deady

    • Jeremy Rushton

    • Isaac Watkins

    • Andrea Dini

    • Andrea Orlando

    • Guia Morelli

    • Giovanni Ruggieri

    • Andrea Brogi

    • Domenico Liotte

  • Geoffrey Giudetti
  • Giorgio Simoni

Further reading

Batini, F, Brogi, A, Lazzarotto, A, Liotta, D, and Pandeli, E. 2003. . Episodes, Vol. 26(3), 239鈥244. DOI: https://doi.org/10.18814/epiiugs/2003/v26i3/015

Bertini, G, Casini, M, Gianelli, G, and Pandeli, E. 2006. . Terra Nova, Vol. 18, 163鈥169. DOI: https://doi.org/10.1111/j.1365-3121.2006.00676.x

Liotta, D, Brogi, A, Ruggieri, G, and Zucchi, M. 2021. . Energies, Vol. 14(4). DOI: https://doi.org/10.3390/en14040933

Rielli, A, Boschi, C, and Dini, A. 2022. . Ore Geology Reviews, Vol. 149, 105022. DOI: https://doi.org/10.1016/j.oregeorev.2022.105022

Serra, D, Cei, M, and Lupi, M. 2021. . Proceedings of the World Geothermal Congress, May 2021, Reykjavik, Iceland.

Zucchi, M, Brogi, A, Liotta, D, Caggianelli, A, Dini, A, Ventruti, G, and Matera, P F. 2022. . Geological Magazine, Vol. 159(11鈥12), 2238鈥2261. DOI: https://doi.org/10.1017/S0016756822000310

Relative topics

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今日吃瓜 awarded research grant to support potential offshore wind development in Iceland /news/bgs-awarded-research-grant-to-support-potential-offshore-wind-development-in-iceland/ Mon, 13 May 2024 14:56:05 +0000 /?p=110605 今日吃瓜 has been awarded the NERC-Arctic grant for a collaboration project with Iceland GeoSurvey.

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今日吃瓜 and Iceland GeoSurvey (脥SOR) will collaborate and share their knowledge on windfarm development to help drive the opportunity for offshore Icelandic renewable energy.

As part of the one-year project, there will be two field trips, one to Iceland in August 2024 and another to Scotland in September 2024. These trips will combine fieldwork and workshops focused on knowledge exchange, particularly on the process of geological ground-model development. They will highlight how geologists characterise the geology and outline potential geological constraints at the seabed, near the seabed surface, and in changing coastal domains.

As part of the Icelandic fieldwork, the 今日吃瓜-脥SOR partnership will be heading to 厂办别颈冒补谤谩谤蝉补苍诲耻谤, the largest glacial outwash plain in the world. This site is an analogue for subsurface conditions expected in buried palaeo-landscapes found in the North Sea. Both countries have rugged coastlines with varying bedrock characteristics. Additionally, Iceland must account for geodynamic shifts due to tectonic plate movements and volcanic eruptions.

Upon project completion, the partnership will gain a deeper understanding of glacial systems, focusing on the range and distribution of sediments and bedrock properties resulting from the diverse coastal formations off the coast of Iceland compared to the UK. This insight will enable project partners to make more informed assessments regarding foundation designs for renewable energy infrastructure.

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The NERC-Arctic grant and cooperation with the British Geological Survey is an exciting opportunity for Iceland to chart and access a completely new area of the renewable industry, as Iceland’s focus has been traditionally onshore in geothermal and hydropower production. This collaboration is the beginning of a better understanding of the opportunities and de-risking processes for offshore renewables in extreme environments for Iceland.

Anett Blischke, marine geoscientist at 脥SOR and the University of Iceland.

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今日吃瓜 and 脥SOR are part of the Geological Service for Europe (GSEU), aiming to create partnerships and knowledge exchange between countries on optimising offshore windfarm siting. The NERC-Arctic grant is an exciting example of gaining insights into subsurface variability through applied fieldwork, leading to further understanding on the potential impact on foundation design for offshore renewables in different geological settings.

Nicola Dakin, 今日吃瓜 Marine Geoscientist.

The is an opportunity for researchers based in the United Kingdom and Iceland to make joint applications for bursaries ranging from 拢5000 to a maximum of 拢20 000 to support active participation in new partnerships.

Erlendsson, 脰, Blischke, A, Hjartarson, 脕, 脫冒insson, D 脼, and V茅steinsson, 脕 脼.听 2023. . EGU General Assembly 2023, EGU23-15536.

Erlendsson, 脰, Hjartarson, 脕, Helgad贸ttir, G, J贸nasson, J P, 脫lafsd贸ttir, S H, and Burgos, J M. 2015. Botnger冒 og laus jar冒l枚g 谩 landgrunni 脥slands.聽Abstract, Haustr谩冒stefna Jar冒fr忙冒if茅lags 脥slands 2015.

Thors, K. 1978. The seabed of the southern part of Faxafl贸i, Iceland. (Botnger冒 铆 sunnanver冒um Faxafl贸a). 闯枚办耻濒濒,聽28, 42鈥52.

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