Copenhagen Energy Storage Container Site Communications

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6 Frequently Asked Questions about “Copenhagen Energy Storage Container Site Communications”

Can CO2 be stored underground in Denmark?

A: Yes. According to GEUS, Denmark is blessed with a very favorable underground storage conditions when it comes to storing CO2. CO2 storage can be established both on land and at sea, considering that the underground reservoirs are the same.

Can a hydrogen-based energy storage system be used in Denmark?

Bulk physical storage of renewable energy produced gases can act as a longer-term storage solution (hours, days, weeks, months) to help maintain flexibility in a fossil-free energy grid (The Danish Partnership for Hydrogen and Fuel Cells). Without the hydrogen scenario, the potential for hydrogen-based energy storage in Denmark will be limited.

How will Norne store CO2?

Norne will safely store CO2 using facilities exclusively based on land into geological reservoirs deep below the surface. Onshore storage has been practiced safely for decades and will utilize Denmark's natural subsurface characteristics that are excellent for safely and permanently storing CO2.

How many EES facilities are there in Denmark?

There are currently three EES facilities operating in Denmark, all of which are electro-chemical (batteries). A fourth EES facility – the HyBalance project – is currently under construction and will convert electricity produced by wind turbines to hydrogen through PEM electrolysis (proton exchange membrane).

How does CO2 storage work?

CO2 storage can be established both on land and at sea, considering that the underground reservoirs are the same. A suitable reservoir has a sealing layer of claystone (a form of mudrock) on top. After the CO2 is captured, it is converted into a liquid and delivered under pressure into an underground warehouse.

How much CO2 will Denmark be able to reduce?

CO2 reductions of around 3 million tonnes per year are possible, if the Danish Parliament has the political will to make it happen. This corresponds to approximately 15% of the total Danish target for reduction of 70% by the year 2030, and could be one of the largest single contributions to the green transition in Denmark.

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