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Green DC consumes your energy continuously and returns its heat

A constant load all year round, day and night, with no seasonality, and waste heat that goes back into your process or a local network. Here are the criteria that make a site eligible.

Tell us about your site

Your situation

Available output, in search of a use

You operate an energy recovery unit

RDF or biomass cogeneration: the output exists, runs continuously, and its profile matches that of a compute load.

You operate a farm paired with storage

Solar or onshore wind with BESS: storage smooths the intermittency and makes the profile usable.

Part of your output struggles to find a buyer

Its value remains uncertain, and pressure to justify the plant’s economics is rising.

AI compute has a rare consumption profile: constant, all year round, day and night, with no seasonality. And it returns heat instead of consuming it.

The criteria

Does your site qualify?

We have no technology preference. What matters is the ability to deliver continuous power, and the existence of an outlet for the heat.

Two decisive criteria

Electrical power available continuously

Dispatchable by nature, or firmed by storage. A first module stays modest in size; capacity then grows in increments.

An outlet for the waste heat

Hot water returned at a temperature suitable for district heating, an industrial drying process, a horticultural greenhouse or a public facility. Without a nearby consumer, this heat cannot be put to use.

Three favourable criteria

Available land

On or immediately adjacent to the site, with compatible zoning.

Connectivity that can be mobilised

Ideally two fibre routes on separate paths, existing or connectable.

Clear governance

A counterpart able to carry the project and commit the site.

What we offer

An industrial partner on your site

We build a modular facility on or next to your site. It buys your energy over the long term, contributes to your operating balance, and returns the heat the compute produces.

The facility grows in increments: the first module is limited in size, and deployment follows real demand.

Integration diagram

Your generation

Local energy, as primary supply

Green DC facility

Your heat outlet

Return water in a closed loop

Your operations stay unchanged. We sit alongside your plant, we do not transform it.

What it brings to the area

Measurable local benefits

Lasting value

For partly unused output, secured by a long-term commitment.

Skilled jobs

Operations and maintenance, which cannot be offshored.

Local revenue

From siting an industrial activity in the area.

A local supply chain engaged

Nearby industrial ecosystems, small and mid-sized firms, for construction and maintenance.

A contribution to digital sovereignty

On an issue where dependence on foreign infrastructure is a national concern.

What it does not change

The questions you are going to ask us

The footprint

Measured in hundreds of square metres, not hectares. A typical configuration combines a compute module area, a cooling area and a small operations building, within the existing industrial perimeter. This is not a logistics warehouse.

Water

Circulates in a closed loop. The project does not compete with local uses.

Noise

That of a technical facility, addressed from the design stage, compatible with an industrial setting.

Traffic

Marginal: operating a data centre generates no significant logistics flow.

The electricity grid

Stays connected, as redundancy. The architecture is grid-light, not off-grid: we disconnect nothing.

Your operations

Unchanged. We sit alongside your plant, we do not transform it.

How we work

Three steps

01

Qualify

We review available power, generation profile, heat outlet, land, connectivity and regulatory constraints. With no commitment on your part.

02

Study

If the site qualifies, we run the technical and economic feasibility study and share the results with you.

03

Contract

Energy supply, occupancy, heat recovery, project governance.

Let's talk about your site

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