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Power to gas: The steps from theory to practice
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.
How billions of helpers are producing methane from CO2, water and renewable energy
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.
Research success: Renewable fuels from the sun to green gas
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.
Power-to-gas: The key enabler for a CO2-neutral energy system
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
Renewable energy promotion: From wind to green gas
The Horizon 2020 project STORE&GO focuses on the remarkable potential of power-to-gas and synthetic methane as forms of renewable energy
Power-to-gas: A key enabler for a CO2-neutral energy system
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