Natural Hydrogen

Numerical modelling solutions for the migration and trapping of Natural H2 in sedimentary basins

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Hydrogen

Modelling Hydrogen Migration and Trapping – PHASE 1

Box-Size Numerical Modelling of Hydrogen Migration and Trapping: Testing the Geological Setting and Analogies with the Petroleum Systems

Integrated Geochemistry Interpretation (IGI Ltd) - Tiago Abreu Cunha & Marianne Nuzzo

MARUM - Centre for Marine Environmental Sciences, University of Bremen, Germany - Javier García-Pintado & Marta Pérez-Gussinyé

Natural Hydrogen Study Group (NHSG) - Steve Lawrence, Owain…

Tiago Cunha

Senior Petroleum Geochemist / Basin Modeller

Hydrogen (H2) and hydrogen-related fuels are one of the pillars for a decarbonized economy.  Geological (natural/white) H2 will be cheaper, cleaner and require less infrastructure. 

H2 Price Usage

Geologic (Natural) H2 is formed by a variety of processes and found ubiquitously in the subsurface. Serpentinization is likely the most generation intensive process.

H2 Generation World Map

High-resolution, fully-coupled  poro-elasto-plastic models are key to understand migration and trapping of H2 processes (Marum, University of  Bremen)

H2 Mig Model

Reasearch & Innovation

Modelling of Natural H2 and associated gases in sedimentary basins using fully-coupled poroelastic-plastic models – collaboration with Marum (Bremen University). We are also seeking for partners for our JIP

Consultancy

State-of-the-art numerical modelling of migration-trapping and microbial consumption mechanisms, databasing and interpretation of gas, fluid and rock geochemistry data.

Software tools

Data management and visualisation tools for gas, fluid and rock properties and geochemistry to support H2 exploration and development.

p:IGI H2

Strategic collaborations

Collaborations with academia, industry and governmental organizations integrating knowledge, technology and data.

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Meet the team