Scientific Tracks

The IPGC 2027 brings together 15 scientific and professional tracks reflecting the breadth of modern geosciences. Together, they explore the interconnected dimensions of Resources, Risks and Resilience, from the Earth’s fundamental processes and subsurface resources to natural hazards, environmental change, digital technologies, policy and society.

T1: Fundamental Geosciences, Geodynamics and Earth System Dynamics

Research into the processes, materials and systems that shape the Earth, from geological time scales to present-day Earth system dynamics.

T2: Applied Geophysics and Subsurface Characterisation

Geophysical methods, technologies and applications for understanding, imaging and monitoring the subsurface.

T3: Hydrogeology, Water Resources, Water Security, and Climate Change

Groundwater systems, water resources, hydrogeological modelling and the role of geoscience in responding to changing climate and water availability.

T4: Energy Transition, Geo-Energy, and Subsurface Resources

Geothermal energy, subsurface energy systems, carbon capture and storage, natural hydrogen production, hydrogen storage, energy resources and the contribution of geoscience to the energy transition.

T5: Mineral Resources, Critical Raw Materials, and Responsible Mining

Mineral exploration, resource assessment, responsible mining, critical raw materials, resource security and innovative approaches to mineral supply.

T6: Environmental Geosciences, Contamination, Remediation, and Ecosystem Sustainability

Environmental assessment, soil and sediment, remediation, ecosystem processes and the contribution of Earth sciences to sustainable environmental management.

T7: Natural Hazards, Risk Assessment, Societal Resilience, and Climate Adaptation

Geological hazards, risk assessment, monitoring, prevention and strategies for strengthening resilience to natural and climate-related hazards.

T8: Earth Observation, Remote Sensing, and Geospatial Technologies

Remote sensing, geographic information systems, spatial data, digital mapping, Earth observation and emerging geospatial technologies.

T9: Engineering Geology, Geotechnics and Sustainable Infrastructure

The application of geoscience to construction, infrastructure, urban development, engineering projects and management of geological conditions.

T10: Marine, Coastal and Mediterranean Geosciences, and Climate Risks

Marine and coastal processes, offshore geoscience, atmospheric interactions and the role of Earth sciences in understanding changing environments.

T11: Geoheritage, Geoconservation, and Geotourism

Exploring geological heritage, geodiversity and geoconservation, and their role in protecting Earth’s natural heritage, supporting sustainable tourism and connecting geoscience with society.

T12: Geoscience Education and Public Communication

Approaches to geoscience education, professional training and public communication that strengthen Earth science literacy, inspire future generations and improve understanding of the role of geoscience in society.

T13: Geosciences, Policy, Ethics and Public Engagement

The role of geoscience in policy and decision-making, including professional practice, ethics, governance, science communication, public engagement and the contribution of geoscientists to addressing societal challenges.

T14: Artificial Intelligence, Machine Learning, Big Data and Digital Geosciences

Emerging digital technologies and data-driven approaches transforming geoscience, including artificial intelligence, machine learning, big data, digital twins, automated analysis and advanced geological modelling.

T15: Planetary Geology

Geological processes and materials beyond Earth, including the geology of planets, moons and asteroids, planetary exploration, remote sensing, comparative planetology and the search for resources and signs of past or present habitability.