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Welcome to the GET2026 Critical raw materials symposium

We welcome you to the first edition of our EAGE GET Critical Raw Materials Symposium to be held in Hannover, Germany. The symposium serves as a vital platform for addressing the increasing importance of minerals and raw materials supply for national interests and the transition toward a climate-neutral economy. The symposium will focus on the strategic role of resource security while emphasizing the urgent need for new mineral discoveries, innovative exploration technologies, efficient policy frameworks and resilient supply chains.

The program will highlight cutting-edge, multidisciplinary breakthroughs across the entire exploration and production value chain. Participants will explore the latest developments in mining geosciences, engineering and data science. Beyond technical innovation, the symposium will also tackle the complex challenges of environmental stewardship and social acceptance.

Join us to help foster the collaborative expertise needed to modernize extractive operations, ensure industrial competitiveness, and achieve the ambitious goals of the energy transition through responsible sourcing.

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The energy transition is not just a policy shift—it is a massive engineering and geoscience challenge.

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The EAGE GET Critical Raw Materials Symposium welcomes forward-thinking professionals operating at the intersection of geoscience, technology, environmental science and strategic policy. This event is tailored for exploration geologists, geophysicists, mining engineers and data scientists seeking cutting-edge technical breakthroughs to apply to modern mineral discovery. It also calls upon policy advisors and supply chain strategists focused on resource security and national interests.

Whether from academia, government, or the private sector, participants should be driven by a desire to modernize extractive operations and secure the essential materials required for a climate-neutral future. We especially welcome contributions from EU funded projects and innovative case studies.

Abstract Highlights Available for Free!

Critical Raw
Materials
Symposium

EAGE is excited to offer a curated selection of conference abstracts, available free of charge. These abstracts provide valuable insights into the cutting-edge content that will be presented at the event.

Stay up-to-date with the latest research and developments by following our LinkedIn channel for daily updates on newly published articles. Alternatively, you can check this page regularly to explore the latest featured abstracts and stay informed throughout the conference season.

Authors; Dr Niels Schovsbo¹, Dr Finn Mørk¹, Dr Henrik Ingerman¹

Affiliation; ¹GEUS

Summary; Rock properties, including geomechanical and petrophysical characteristics, are crucial for assessing CO2 storage safety and viability. In Denmark, the Lower Jurassic Fjerritslev Formation serves as the main seal for key target reservoirs, yet its properties are poorly understood, particularly in the North Sea and western onshore Denmark. Most exploration wells in this area were drilled between the 1950s and 1980s, with limited cores and inadequate log suites. We present an assessment of the Fjerritslev Formation's rock properties in three wells based on a recent screening of cuttings using HH-XRF. Using advanced multilinear regression models, we provide a harmonized dataset that includes volumes of clay, quartz, and carbonate, grain densities, and rock mineral brittleness. This approach offers calibrated measures of Vclay from wireline logs, overcoming traditional pitfalls in defining values and harmonizing between different log types. The results indicate that the Fjerritslev Formation is a thick mudstone with a clay content of 30–50% and total porosities of 10–25%. The rock has a mineralogical brittleness index of 0.4–0.5. Porous beds occur within the shales, highlighting its regional complexity and relevance for CO2 storage.

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Authors; Mr Vincent Jaffrezic¹, Mr Sylvain Thibeau¹

Affiliation; ¹TotalEnergies

Summary;This paper presents the Northern Lights field case where the appraisal well test of Eos (31/5-7) originally suggested a closed reservoir behaviour. This false indication resulted from the drop of the wellbore temperature during the build-up, which was changing the hydrostatic gradient between the pressure gauges and the reservoir as the wellbore fluid becomes denser and the tubing shrank moving the gauges upward. These variations are usually negligible compared to the reservoir signal. However, this was not the case in this thick and highly permeable formation where the reservoir pressure increased rapidly back to the original pressure. It was necessary to correct pressure data for both effects to get a test interpretation consistent with the geology of the storage formation. We will present how these corrections were made and provide recommendations to minimize the effect of temperature transients for future well tests in similar high thickness high permeability formation.

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Authors; Mr Vedran Zikovic¹, Egbert van Riet⁶, Markus Rainer Lüftenegger⁷, Javier Mozas Maradiaga¹, Maartje Koning¹, Benjamin Udo Emmel², Nils Opedal², Ole-André Roli², Andrey Belikov³, María Pérez Fernández⁴, Francesco Crea⁵

Affiliations; ¹TNO, ²SINTEF, ³Eni, ⁴TotalEnergies, ⁵Wintershall Dea, ⁶Shell, ⁷OMV

Summary; This extended abstract showcases a novel approach to well integrity screening developed in the WISCoS project (Well Integrity Storage Complex Screening) by developing a standalone well integrity tool and creating a common approach to well integrity assessment for CCS SLA application.
The developed framework is incorporated into a user-friendly QGIS plugin, enabling visual representation of wells, rapid barrier qualification, and risk-based assessments. It integrates well schematics visualization and barrier assessment while adhering to SLA process requirements to assess the state of each well irrespective of its current use. This innovative approach benefits operators and regulators in the CCS application process by providing a standardized and efficient method for risk assessment. 

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Authors; Dr Behruz Shaker Shiran¹, Mr Bishoy Sadaak², Dr Jonas Solbakken³, Prof. Christina Toigo², Dr Nematollah Zamani¹

Affiliations; ¹Norwegian Research Centre, ²University of Applied Sciences Upper Austria, ³Equinor ASA

Summary; Salt precipitation is a critical challenge that can lead to injectivity impairment during CO2 storage in saline aquifers. This study investigates the impact of salt precipitation on the porosity-permeability correlation and its implications for injectivity. Through experimental analysis, we found that even minor salt precipitation can significantly reduce permeability, despite negligible changes in porosity. Berea sandstone, with its smaller pore radius, exhibited a more pronounced reduction in permeability compared to Bentheimer sandstone under the same conditions. Numerical simulations using TOUGH2 revealed that these differences in porosity-permeability correlation substantially affect the injection pressure over time, highlighting the necessity for accurate experimental evaluation of these correlations prior to numerical modeling.
Our findings emphasize the importance of considering the microscopic and petrophysical properties of reservoir rocks in CO2 storage projects. By tailoring injection protocols and selecting appropriate reservoir sites, the risks associated with salt precipitation can be minimized, ensuring the long-term success of CO2 storage operations. This study contributes to a more comprehensive understanding of the interplay between salt precipitation, porosity, and permeability, aiding in the development of more effective CO2 storage strategies to mitigate global warming.

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Authors; Mr Francisco Lucas Damascena Silva¹, Phd Karen Leopoldino¹, Phd Narelle Maia¹, Sr. Clecio Ribeiro¹, Msc Thiago Barbosa¹, Phd Luis Rodrigues¹, Phd Sebastião Lucena¹, Ms Fabíola Pacheco², Msc Walter Sousa², Phd Manoel²

Affiliations; ¹Federal University Of Ceara, ²Eneva S.A.

Summary; This study proposes the construction of a 1D geomechanical model based on well profiles from a well located in the Parnaíba Basin, Northeast of Brazil, and on mathematical correlations obtained in the relevant literature to calculate the fault reactivation pressure, using the criterion of Mohr-Coulomb and fracture pressure, using the thermoporoelastic effect. Additionally, a flow model coupled to a 3D geomechanical model was developed, aiming to simulate the model with geomechanical coupling using analytically calculated fracture pressure and fault reactivation pressure data. The 1D geomechanical model will allow describing the poroelastic behavior of the reservoir and the sealing rock, detailing the behavior of the main stresses in the formation and pore pressure, to calculate the maximum pressure that the reservoir can withstand to store the maximum possible amount of CO2, determining the fracture pressure of the cap rock. The flow model coupled to the geomechanical model will describe the gas behavior over the model simulation time. Using the extended 3D geomechanical model, an analysis of fault reactivation will be carried out throughout the entire reservoir and in the regions surrounding it. The 3D coupled model will allow studying the effects of CO2 storage until fracture pressure is reached.

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Authors; Mr Sofianos Panagiotis Fotias¹, Mr Ismail Ismail¹, Dr Efthimios Tartaras², Aristofanis Stefatos²

Affiliations; ¹School of Mining and Metallurgical Engineering, National Technical University of Athens, 15772,   ²Hellenic Hydrocarbons and Energy Resources Management (HEREMA)

Summary; CCS involves capturing CO2 from industrial processes and storing it permanently underground, typically in deep geological formations like saline aquifers or depleted oil fields. Effective deployment hinges on a well-executed Field Development Plan (FDP), crucial for maintaining storage integrity and managing risks such as pressure buildup and geological stability.

Current FDP design heavily relies on manual simulation runs to optimize parameters like well locations and injection/extraction rates, balancing technical, operational, and economic constraints. Traditional methods face challenges due to the complex, nonlinear nature of subsurface reservoirs and the need for extensive computational resources.

To address these challenges, advanced optimization techniques like Bayesian optimization (BO) are proposed. BO has been applied and proven effective in optimizing complex, costly functions, aims to streamline CCS operations by optimizing CO2 injection and brine withdrawal rates. This approach builds on previous research focusing on well location optimization, aiming to enhance CCS efficiency and feasibility at a field level, integrating technical precision with operational flexibility.

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Authors; Ms Varsha Devi¹

Affiliations; Halliburton

Summary; Active CO2 injection sites, spanning from large-scale Enhanced Oil Recovery (EOR) projects to smaller-scale pilots, provide invaluable insights into the practical challenges and successes of carbon dioxide (CO2) storage initiatives. This abstract synthesizes lessons learned from these diverse sites, focusing on technical, operational, and regulatory aspects crucial for successful CO2 injection and long-term storage. Key themes include site selection criteria emphasizing geological suitability, the importance of robust monitoring and verification protocols to ensure secure storage, and effective public engagement strategies to garner local support. Additionally, regulatory frameworks and legal considerations are explored, highlighting the necessity of clear guidelines for navigating permitting, liability, and compliance issues. By synthesizing experiences from active CO2 injection sites, this abstract informs future CCS (Carbon Capture and Storage) projects, fostering improved implementation strategies and advancing global efforts towards carbon neutrality and climate change mitigation.

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Authors; Dr, David Halliday¹, Mathieu Chapelle¹, Mike Branston¹, Ran Bachrach¹

Affiliations; ¹SLB

Summary; Each carbon capture, utilization, and storage site requires a measurement, monitoring, and verification plan, which provides assurance regarding the conformance and containment of the stored CO2 and ensures compliance with regulations.

Time-lapse seismic monitoring is a proven technology for characterizing the subsurface. However, costs associated with the acquisition, processing, and interpretation of conventional time-lapse seismic are high, and a step change in the cost of CO2 monitoring, versus conventional reservoir monitoring, is a common goal across the industry.

In this paper, we propose using the output of dynamic subsurface modelling, to design 4D surveys that target specific changes in a known subsurface model. This is done using a perturbation analysis, based on full-waveform inversion (FWI), that allows the model and perturbation to be synthetically probed with different acquisition geometries, to determine which geometry provides the most cost-effective solution to detect and localise the targeted change.

The 4D FWI workflow is tied to the monitoring plan, associated dynamic modelling and the evergreening of the subsurface model. This means that it is adaptive: the design will vary proportionally as the understanding of the injection site evolves.  

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Authors; Dr Salam Al-Rbeawi¹, Dr Fadhil Kadhim²

Affiliation; ¹Middle East Technical University, ²The University of Technology-Baghdad

Summary; This paper introduces an integrated approach for estimating the key parameters of CO2 storage projects in depleted hydraulically fractured shale reservoirs. Several analytical models are developed for the pressure behavior of CO2 multi-size scales flow mechanisms. Diffusion flow, slip flow, adsorption flow, and Darcy and non-Darcy flow are considered. The flow in the nano-size organic particles, micro-size kerogen particles, and macro-size matrix is analytically described. The flow inside natural fractures in the stimulated and unstimulated reservoir volume as well as the flow of CO2 in hydraulic fractures are modeled.
The study has reached several conclusions. The characteristics of the organic matter, kerogen, and micro-size scale matrix do not significantly impact the pressure distribution and flow regimes. Conversely, the pressure distribution and flow regimes are significantly impacted by the characteristics of hydraulic and natural fractures. The hydraulic fractures may offer a reasonable capacity for CO2 storage, meanwhile the capacity of stimulated and unstimulated reservoir volume is controlled by reservoir configuration and fracture spacing. The constrained pressure may strictly reduce the total capacity of CO2 storage in the reservoir. The total volume of the injected CO2 can be determined from the pressure point when the injection pulse has reached to reservoir boundary.

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Topics

Critical Raw
Materials
Symposium

The following topics are highlighted (but not limited to) for your poster abstract submission:

Submit your poster abstract
before 13 September 2026

  • Geophysics and Multiphysics for Mineral Exploration

  • Mineral Geochemistry

  • Artificial Intelligence Workflows for Mineral Exploration

  • Improvements in Data Acquisition

  • Data Processing and Modelling

  • Mineral Prospectivity Mapping

  • Satellite Remote Sensing, Airborne and Drones

  • Automation, Optimization and Efficiency

  • Environmental and Societal Impacts

  • Integrated geoscience and geometallurgy

  • Community Engagement and Geoscience Communication

  • Monitoring and Safety in Mining Operations

  • Markets, Industrial Demand and Supply Chains

  • Business Model Innovations

  • Resilience, Security and Geopolitics

  • Regulatory Challenges and Opportunities

  • Mineral Extraction from Geothermal Brines

  • Oil & Gas Produced Water

  • Deep Sea Minerals

  • Planetary Mining and Geoscience

  • Emissions Management

  • Environmental Stewardship (Water, energy, tailings)

  • Closure and Post-mining

  • Circularity

  • Innovative Developments

  • Digital Transformation

  • EU Funded Projects

  • Challenges and Opportunities

  • Case Studies

2026 Committee 

  • Dominik Soyk
    Neptune Energy ( Co-chair)
  • Andor Lips
    Geological Survey of the Netherlands – TNO (Co-chair)
  • Anna Bianca Derya Neumann
    Neptune Energy
  • Romain Millot
    Lithium De France
  • Rolf Kuby
    Euromines
  • Sonia López Kovács
    REPSOL
  • Jonathan Espindola
    University Of São Paulo
  • Christian Salazar
    Universidad Mayor de Chile
  • Anna Lim
    Viridien
  • Rosa Mª Aguilar Sánchez-Dehesa 
    Repsol
  • Amy Gough
    Heriot-Watt University
  • Nick Arndt
    University Grenoble Alpes
  • Gaud Pouliquien
    Bell Geospace
  • Luca Mattioni
    IFPEN
  • Ivan Karpenko
    DLE field system LLC
  • Cyril Gwazah Afuwai
    Kaduna State University-Nigeria
  • Joeri Brackenhoff
    TU Delft
  • Andrii Sevriukov
    Beholder
  • Christian Müller
    BGR

     

Submit your abstracts

Share your expertise, key learnings, best practices and new developments in mining and critical raw materials!

Programme

GET Opening Ceremony

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2 November 2026 

Welcome from Conference Chair
Awards
Keynote
Panel Discussion

Moderator:

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Speakers:

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Panel Discussion

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2 November 2026 | 00:00 – 00:00 CEST
Where: [Fill in Location] area

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Dedicated Session

Secure and Sustainable Supply of Critical Raw Materials

3 November 2026 

Moderator:

Andor Lips and Joeri Brackenhoff

Speakers:

Keynote: Strategic Pathways for Securing Europe’s Lithium Supply Chain Oliver Heathman, Head of Metals Assets, Metals & Mining Research Wood Mackenzie
TBC Antje Wittenberg, Geoscientist, Federal Institute for Geosciences and Natural Resources (BGR)
Connecting the Dots – Integrated Supply Chain Thinking for CRM Pole Avenia
Assessing the Effects of the China–U.S. Trade Conflict on Rare Earth Element Supply Chains Melike Yildirim Ayyildiz, Researcher, Karlsruhe Institute of Technology
From Oilfield Brines to Battery Supply Chains: Conditional Incumbent Advantage for National Oil Companies in Lithium Bader Alotaibi

Dedicated Session

Repurposing Oil & Gas Infrastructure for Critical Raw Materials Recovery from Brines and Geothermal Fluids (Part 1)

3 November 2026 

This session explores emerging approaches for recovering critical raw materials from subsurface brines, geothermal fluids, and other saline industrial streams. Particular focus will be placed on the repurposing of idle oil & gas infrastructure — including wells, pipelines, offshore oil platforms, and surface facilities — to accelerate resource recovery projects while reducing capital intensity and environmental footprint. The session will examine how subsurface expertise, existing energy assets, geothermal systems, and innovative extraction and processing technologies can support scalable and sustainable critical mineral supply chains. In addition, dedicated attention will be given to integrated geothermal developments, including simultaneous recovery of geothermal energy and critical raw materials from the same fluid systems, highlighting opportunities for co-production, improved project economics, and low-carbon energy integration.

Moderator:

Ivan Karpenko, Luca Mattioni and Sonia Isabella Lopez Kovacs

Speakers:

Integrated Recovery of Critical Raw Materials from Subsurface Fluids: Insights from Geothermal and O&G Systems Sonia Isabella López Kovács, Reserves Audit Leader, Repsol
A Just Transition in Practice: Repurposing Altmark’s Gas Infrastructure and Legacy Data for Lithium Project Development Silvio Lehmann, Manager Upstream New Energy, Neptune Energy GmbH & Co. KG
Geothermal Lithium in Alsace: Powering France’s Energy Transition Romain Millot, Directeur Scientifique, PhD, Lithium de France
The Permian Rotliegend Lithium Play System: An Analogue to the Andean Lithium Triangle Andrew Procter, Senior Geologist and Head of New Ventures, Atana Elements

Dedicated Session

Repurposing Oil & Gas Infrastructure for Critical Raw Materials Recovery from Brines and Geothermal Fluids (Part 2)

3 November 2026 

This session explores emerging approaches for recovering critical raw materials from subsurface brines, geothermal fluids, and other saline industrial streams. Particular focus will be placed on the repurposing of idle oil & gas infrastructure — including wells, pipelines, offshore oil platforms, and surface facilities — to accelerate resource recovery projects while reducing capital intensity and environmental footprint.
The session will examine how subsurface expertise, existing energy assets, geothermal systems, and innovative extraction and processing technologies can support scalable and sustainable critical mineral supply chains. In addition, dedicated attention will be given to integrated geothermal developments, including simultaneous recovery of geothermal energy and critical raw materials from the same fluid systems, highlighting opportunities for co-production, improved project economics, and low-carbon energy integration.

Moderator:

Ivan Karpenko, Luca Mattioni and Sonia Isabella Lopez Kovacs

Speakers:

The Lithium Brine Play: Key Parameters Defining a Potentially Profitable Enterprise Peter Mullin, VP Exploration, Sparrow Hills Partners
Critical Raw Materials from Geothermal Fluids: Assessment of Origin, Extraction, Demonstration Magnus Johansson, Senior Geologist, Geological Survey of Sweden
Gas to Lithium: Agentic AI for Historical Data Discovery in Lithium Reservoir Characterization Torsten Helbig, Lead Subsurface Data Engineering, Neptune Energy GmbH & Co. KG
Modelling Applications for an Early-Stage Lithium Extraction Project in a Historic Gas Province Thomas Mozer, Job Title: TBC, Neptune Energy GmbH & Co. KG

Panel Discussion

European and National Raw Materials Strategies - from design to implementation

4 November 2026 

EU Member States and industry are advancing critical raw materials strategies aligned with the CRMA and initiatives like RESourceEU. Progress includes stronger supply chains, investment, and coordination. This session reviews impacts and challenges, and explores how to balance EU-wide ambition with national priorities to strengthen resilience and strategic autonomy.

Moderator:

Andor Lips Geological Survey of the Netherlands | TNO

Speakers:

Pim van Geffen, Senior Scientist, Netherlands Materials Observatory
Rolf Kuby, Director General, Euromines
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Panel Discussion

Critical Raw Materials Projects in Europe: From Geoscience to Deployment

4 November 2026 

This session addresses the end‑to‑end technical pathway of critical raw minerals in Europe, from geological setting, exploration concepts, and resource estimation to development strategies and deployment. Emphasis is placed on subsurface characterization, geometallurgy, uncertainty management, and the integration of geoscience with engineering and regulatory frameworks to enable technically sound and sustainable projects.

Moderator:

Sonia Lopez and Rosa Aguilar

Speakers:

Antje Wittenberg, Geoscientist, Federal Institute for Geosciences and Natural Resources (BGR)
Axel Wenke / Dominik Soyk, Lead Research & Development New Energy, Neptune Energy
Andor Lips, Strategic Advisor / Mineral Resources, Diplomat, TNO
Henrike Sievers, Chair of the EuroGeoSurveys Mineral Resources Expert Group, Federal Institute for Geosciences and Natural Resources (BGR)

Panel Discussion

Minerals Processing

4 November 2026 

This session addresses the end‑to‑end technical pathway of critical raw minerals in Europe, from geological setting, exploration concepts, and resource estimation to development strategies and deployment. Emphasis is placed on subsurface characterization, geometallurgy, uncertainty management, and the integration of geoscience with engineering and regulatory frameworks to enable technically sound and sustainable projects.

Moderator:

TBC

Speakers:

Understanding Leaching Behaviour of Rare Earth Elements from Complex Mineral Concentrate: Recovery, Selectivity, and Factorial Effects Asma Safia Disha, University of Calabria, Italy
Integrated Roasting–Leaching Processing of Entire Nickel Ore: Unlocking Metal Accessibility in Silicate- and Sulfide-Hosted Matrices Hafiza Mamoona Khalid, PhD Fellow, University of Guelph
Peroxodisulfate-Enhanced Leaching of Deep-Sea Manganese Crusts and Sulfides Bastian Hansel, Postdoctoral Researcher, TU Bergakademie Freiberg
Mechanistic Insights into Controlled pH-Swing Leaching of Serpentine for Critical Metal Recovery from Silicate Matrices Hafiza Mamoona Khalid, PhD Fellow, University of Guelph

Panel Discussion

Seabed Minerals: Geoscience, Technology, Governance and Economic Reality

4 November 2026 

Seabed minerals are attracting growing attention in the wider debate on critical raw materials and supply-chain resilience. They are often presented as a potential new source of metals relevant to electrification and low-carbon technologies, but their role in the energy transition remains uncertain and contested. Resource potential, technical readiness, environmental impacts, regulatory frameworks, social licence, and commercial viability are all still under active debate.
This session offers an interdisciplinary assessment of seabed minerals as an emerging resource domain. It will bring together four perspectives: geoscience and exploration, extraction technology, governance and criticality, and economics.
Rather than assuming either inevitability or impossibility, the session will examine what evidence currently supports — and does not support — regarding seabed minerals. It aims to clarify where the main uncertainties lie, what data and analysis are still missing, and how geoscience, engineering, policy, and economics can contribute to more informed decisions.

Moderator:

Anna Lim, Nick Arndt, Christian Mueller

Speakers:

Thomas Kuhn, Marine Geologist and Project Manager, Federal Institute for Geosciences and Natural Resources (BGR)
RECYCL’He: A Helium Recovery and Recycling Solution to Address Europe’s Supply Sovereignty Crisis Thomas Guermont, Geosciences Project Manager, 45-8 Energy
Norwegian Seabed Minerals: Uncertainty, Potential and Choices Ebbe Hartz, Senior Advanced Geologist, AkerBP
Environmental Governance and Water Sustainability in Artisanal and Small-Scale Gold Mining: Case of Zimbabwe Chipo Mugova
Steve Curnutte, Executive Chairman, Impossible Metals, Inc.
UNIDO’s “Global Alliance for Responsible and Green Minerals” Leon Riedel, Project Specialist, UNIDO
Farida Mustafina, Assistant Professor, NTNU
Gudrun Franken, Head of Mining and Sustainability, and Chair of the OECD Multi-stakeholder Steering Group, Federal Institute for Geosciences and Natural Resources (BGR)
Vertical CSEM for Deep-Sea Sulphide Resource Appraisal Konstantin Golokteev CEO Marimet
Deyan Draganov, Associate Professor of Applied Geophysics and Petrophysics, TU Delft

Dedicated session

Mineral Exploration Techniques

2 November 2026 | 00:00 – 00:00 CEST
Where: [Fill in Location] area

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Moderator:

TBC

Speakers:

Onshore Airborne Geophysics in Norway for Critical Raw Material Exploration: A High-Resolution Magnetic Compilation Example Aziz Nasuti
MINOTAUR-GAN: A cGAN-SPADE Framework for Real-Time 3D Geological Modelling in Critical Raw Material Exploration Naveed Akram
Characterizing Point Scatterers from Scattering Amplitudes Joeri Brackenhoff
Integrated Geophysical Modelling of Seafloor Massive Sulphide Deposits: From Deep-Sea Surveys to 3D Subsurface Models Hendrik Müller

Dedicated Session

Rethinking the Exploration Data Economy for Critical Minerals: From Proprietary Surveys to Shared Geo-Intelligence

2 November 2026 | 00:00 – 00:00 CEST
Where: [Fill in Location] area


Critical raw materials are central to national interests, yet minerals exploration still relies heavily on proprietary, project-by-project surveys — duplicating effort, limiting regional context, and slowing target identification. Unlike oil and gas, where multiclient and pre-competitive data products have long enabled faster portfolio decisions, a comparable “data economy” for minerals remains underdeveloped.
This session explores how shared geo-intelligence can be built and commercialized while respecting competitive boundaries. Presentations will cover practical collaboration models (geological surveys, public–private partnerships, consortia, multiclient approaches) and the technical foundations — metadata, QA/QC, interoperability — needed to make shared datasets decision-grade. Case studies will highlight where regional data sharing improved prospectivity screening and accelerated go/no-go decisions. The goal: move beyond abstract calls for data sharing toward implementable frameworks that convert data investment into faster, more responsible critical minerals discoveries.

Moderators:

Anna Lim and Joeri Brackenhoff

Speakers:

TBC Hilde Braut, Deputy Director for New Industries, SODIR
TBC Junior Potgieter, Global Strategy Head – Minerals and Mining, Viridien
TBC Christian Thomsen, IT Project Manager, GEUS / EuroGeoSurveys
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deDICATED session

Education and Capacity Building for the Mining Industry - Skills for the Future

2 November 2026 | 00:00 – 00:00 CEST
Where: [Fill in Location] area

Critical minerals sit at the centre of the energy transition, but the sector faces an acute skills challenge: future professionals must combine classical geoscience with data science, mineral systems thinking, processing, sustainability, circular economy, policy, finance, and responsible sourcing. This dedicated session will explore how universities, research centres, professional bodies, and industry can build the interdisciplinary capacity needed to discover, characterise, extract, process, recover, and govern critical raw materials responsibly.

The session will focus on the skills of the future rather than on individual commodities alone. It will ask what training is needed across the full value chain, from mineral exploration and deposit characterisation through geometallurgy, environmental and social performance, digital methods, recycling, and supply-chain resilience. Speakers will share examples from leading European critical minerals training initiatives, including challenge-led centres, doctoral training, online and professional education, and whole-system approaches to raw materials. The final panel will identify practical opportunities for EAGE and GET to support capacity building, early-career development, and cross-sector education in critical minerals.

Moderator:

Amy Gough

Speakers:

TBC Dan Smith, Professor, University of Leicester
Modern Participation Processes in Mining Through School Science Projects Tobias Rudolph, Professor, Technische Hochschule Georg Agricola
TBC Prof Murray Hitzman, Director, iCRAG
TBC Feven Desta, Professor, TU Delft

deDICATED session

Unlocking Europe’s Subsurface: Integrating Geothermal Energy and Critical Minerals Supply

2 November 2026 | 00:00 – 00:00 CEST
Where: [Fill in Location] area

Europe’s transition to climate neutrality and strategic autonomy requires secure access to both low-carbon energy and critical raw materials. This dedicated session explores an integrated subsurface approach in which geothermal systems are leveraged as dual-resource platforms, enabling the co-production of renewable energy and critical minerals such as lithium from deep brines.

Moderators:

Sonia Lopez and Rosa Aguilar

Speakers:

TBC Rafael Villablanca / Valentin Goldberg, Geochemist, BWG Geochemische Beratung GmbH (Hannover)
TBC Adele Rouleau, Senior Environmental Consultant, Geosyntec Consultants Ltd (Geosyntec)
TBC Eva Winkelhahn
TBC Sonia López Kovács, Reserves Audit Leader, Repsol

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