Power Access Is Rewriting the Investment Map for Dutch Real Estate

9 September 2026

A development site in the Netherlands can have the right zoning, strong transport connections, an attractive location and willing occupiers and still face a fundamental obstacle: there may not be enough electricity available to support what is supposed to be built there. That problem is changing the way Dutch real estate needs to be assessed. Electricity infrastructure, once largely treated as a technical matter to be resolved during development, is increasingly becoming part of the investment decision itself.

Pressure on the national electricity network has intensified as the Netherlands simultaneously builds new housing, electrifies industry, installs heat pumps, expands renewable generation, introduces electric transport and develops increasingly power-intensive commercial buildings. In several regions, companies requesting new connections or additional capacity can face substantial delays. The consequences extend directly into property markets. Development can be legally possible without being immediately practical, while buildings designed for modern occupiers may require significantly more electricity than the properties they replace.

This introduces a new question into land acquisition: what is a site really worth if sufficient electricity cannot be obtained when the project needs it? There is no established national valuation formula answering that question. Dutch transaction evidence does not yet demonstrate a standard percentage premium for land with dependable electricity access. Nevertheless, the underlying conditions that could create such a premium are becoming increasingly visible.

The issue is already familiar to the data-centre industry. Electricity requirements are so large that access to suitable infrastructure can determine where facilities are developed. But concentrating exclusively on data centres understates how broadly the problem now reaches into real estate. Logistics provides one of the clearest examples.

The conventional warehouse was relatively straightforward from an electricity perspective. The next generation of distribution facilities can be very different. Automated storage, robotics, sorting systems, refrigeration, digital equipment and charging infrastructure can dramatically increase demand. As commercial transport becomes more electrified, the requirements could rise further. A distribution centre serving a fleet of electric delivery vehicles or trucks may need infrastructure that was never envisaged when the site was originally developed.

This matters particularly in logistics markets such as Tilburg and Venlo. Both locations benefit from their positions within European supply chains and strong road connections, but future competitiveness may depend increasingly on whether individual properties can accommodate more electricity-intensive operations. Two warehouses with comparable size, specification and motorway access may therefore offer very different possibilities to an occupier if one has sufficient power and the other does not.

Manufacturing creates an even larger challenge. The Netherlands is seeking to reduce the dependence of industrial processes on fossil fuels while companies are simultaneously investing in more automated production. Both trends can increase electricity consumption. Around Eindhoven, this has particular significance because the regional economy includes advanced manufacturing, technology companies, research operations and specialised suppliers. Laboratories and sophisticated production facilities require dependable infrastructure as well as suitable buildings.

For such businesses, electricity availability is not simply an environmental consideration. It can determine whether machinery, research equipment and production systems can operate at the required scale. Rotterdam presents the issue in another form. Its port and industrial complex faces an enormous energy transition involving manufacturing, transport, logistics and infrastructure. Electrification can create substantial new demand at the same time as surrounding areas continue to require capacity for conventional commercial and residential development. Real estate in these locations is therefore competing for infrastructure within a much larger economic transformation.

Amsterdam has its own combination of pressures. Housing construction, offices, technology businesses, transport electrification and digital infrastructure all contribute to electricity requirements. The development potential of individual sites increasingly needs to be considered alongside the capacity of the surrounding network.

Utrecht demonstrates how severe the constraint can become. Network limitations across Utrecht and neighbouring parts of the Netherlands have resulted in particularly restricted availability for new and enlarged connections. This is occurring in a region where housing demand remains strong and considerable development is still required. The contradiction is significant. A city can have exceptional demand for new property and still struggle to accommodate that demand because the infrastructure supporting additional buildings cannot expand at the same speed.

Housing is therefore part of the electricity problem as well. New residential districts increasingly rely on electric systems for heating, domestic consumption and mobility. Thousands of new homes also require supporting schools, shops, services and transport infrastructure, all adding to local demand. For developers, this means electricity capacity needs to be considered much earlier. Acquiring land, completing planning and arranging financing do not necessarily guarantee that a project can operate according to its intended timetable.

The Dutch authorities are responding by expanding infrastructure, changing how scarce capacity is distributed and seeking ways to use the existing network more efficiently. Housing and other socially important uses can receive priority under the revised system for allocating constrained capacity, while municipalities are being given a greater role in addressing electricity requirements earlier in development planning. But changing allocation rules cannot instantly create additional physical infrastructure.

New substations, cables and transmission capacity require major investment and lengthy construction programmes. Until that expansion catches up with demand, property markets must operate within the limitations of the existing system. That is where the investment implications become particularly interesting.

Consider two development sites with similar planning status, land area, transport access and potential rents. One has a credible route to obtaining the electricity required by the future occupier. The second faces substantial uncertainty over when sufficient capacity will become available. Their risk profiles are clearly different. The first site may move from construction into occupation and rental income according to schedule. The second could encounter delays, restrictions on use or a smaller pool of potential occupiers.

Those differences can eventually influence what a developer is prepared to pay. They can also affect financing. A lender assessing a logistics, industrial or technology development increasingly needs to understand whether the completed property can operate as intended. A technically finished building waiting for critical infrastructure presents a different risk from an asset capable of generating income immediately.

Existing buildings could gain an unexpected advantage from this shift. Some established industrial and logistics properties already have access to substantial electricity capacity because of their historic use. Where that infrastructure remains suitable and can legally and technically support redevelopment or a new occupier, it could add another dimension to the value of the site.

This has potentially important consequences for brownfield property. An ageing factory may appear obsolete when judged solely by its building quality. But the underlying site could possess valuable infrastructure, planning characteristics and established utility arrangements that are difficult to reproduce on undeveloped land. Investors may therefore need to look beyond the physical condition of a property when evaluating redevelopment opportunities.

Electricity also introduces a new dimension to obsolescence. Traditionally, an industrial or logistics property might become outdated because its ceiling height was insufficient, loading facilities were inadequate, energy performance was poor or the building could not accommodate modern automation. In future, inadequate electricity capacity could become another reason why otherwise functional buildings struggle to attract certain occupiers.

The reverse may also occur. A physically older property with strong infrastructure could remain commercially useful precisely because competing locations cannot easily obtain comparable capacity. This makes electricity increasingly relevant during due diligence.

Investors need to understand not only whether a property has a connection today but also the amount available, the contractual arrangements surrounding it, the future requirements of potential occupiers and the likelihood that additional capacity can be obtained. Importantly, an existing connection should not automatically be assumed to remain available under every redevelopment scenario. The position can depend on the site, network operator, intended use and specific arrangements governing the connection.

There is therefore no simple rule that a property with an existing supply automatically possesses a transferable development advantage. Nor is there sufficient evidence yet to declare that Dutch property markets have established a standard electricity premium. What can be said is that electricity availability increasingly affects development timing, occupier suitability and investment risk. Once a constraint influences those factors consistently, it has the potential to influence value as well.

That is the next stage investors should watch. The Netherlands already prices real estate according to accessibility, planning scarcity, environmental performance, location and the strength of local occupier markets. Electricity infrastructure could increasingly join that list.

The effect will not be identical everywhere. Amsterdam, Utrecht, Eindhoven, Rotterdam, Tilburg and Venlo have very different property markets and energy requirements. Nor will every building need large amounts of electricity. But for power-intensive uses, the traditional definition of a prime development site is changing.

A motorway junction cannot operate automated machinery. A railway station cannot charge a commercial vehicle fleet. Planning permission cannot run a laboratory, heat thousands of homes or power an advanced factory. Those activities ultimately depend on infrastructure capable of supplying them.

Dutch real estate therefore faces a new location test. Investors still need to know where a property is, what can be built and what rent it can achieve. Increasingly, they also need to know whether there will be enough electricity to make the investment work.

Source: CIJ.World Research & Analysis Team

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