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The European research project STORE&GO at the finish line and about to publish a roadmap for the future integration of power-to-gas technology, writes Dr Frank Graf from the DVGW Research Centre at the Engler-Bunte-Institute of Karlsruhe Institute of Technology.
Around 700 billion microorganisms are producing methane from CO2, water and renewable energy in the STORE&GO research facility, as Dr Frank Graf from DVGW Research Centre at Engler-Bunte-Institute of Karlsruhe Institute of Technology (KIT) describes.
The Horizon 2020 project, STORE&GO opens their second PtG demonstration site concerning renewable fuels. The results of this project in Brussels are revealed to us here by Dr Frank Graf.
In this in-depth analysis from Dr Frank Graf at the DVGW Research Center at Engler-Bunte-Institute of Karlsruhe Institute of Technology (KIT), we find out that the project STORE&GO demonstrates how green methane provides a keystone for the cross-sector energy transition. We also learn that Power-to-Gas (PtG) is defined as electricity from renewable sources used to split water into hydrogen and oxygen via electrolysis
The Horizon 2020 project STORE&GO focuses on the remarkable potential of power-to-gas and synthetic methane as forms of renewable energy
Dr Frank Graf from DVGW Research Centre at Engler-Bunte-Institute of Karlsruhe Institute of Technology (KIT) details precisely why power-to-gas is a key enabler for a CO2-neutral energy system