Breaking news

Finland’s Largest Sand Battery Shows How Renewable Energy Can Beat Intermittency

A commercial-scale sand battery in southern Finland is demonstrating how thermal energy storage could help address one of renewable energy’s biggest challenges: balancing intermittent electricity generation.

Located in the town of Pornainen, the facility stores clean electricity as heat in 2,000 metric tons of crushed soapstone, delivering up to 100 megawatt-hours of thermal energy. Standing 13 meters tall and 15 meters wide, it is the largest sand battery of its kind in the world. For the town’s roughly 5,000 residents, that provides nearly a month of heating in summer and about a week in winter.

Commissioned by district heating company Loviisan Lämpö and developed by Polar Night Energy, the system began operating last year as part of efforts to introduce more flexible heat production and reduce emissions. According to the company, greenhouse gas emissions from Pornainen’s district heating network have fallen by almost 70%, while wood-chip consumption has declined by about 60%. A conventional wood-chip plant remains available to provide backup and meet peak demand.

How The Technology Works

Sand batteries store surplus electricity generated during periods of strong wind or solar production by converting it into heat. The energy is retained in heavily insulated crushed soapstone for days or weeks before being released through heat exchangers to warm water circulating in the district heating network.

Polar Night Energy Chief Executive Tommi Eronen said the shift from conventional power plants to renewable energy would require significantly more storage capacity.

“We’re changing from a world where big power plants were doing the energy production to where solar and wind are producing the energy, then we need a massive amount of storage.”

He said sand-based storage could complement renewable energy without relying on rare earth materials used in many conventional battery technologies.

Scaling Electrothermal Storage

The Pornainen installation is around 10 times larger than an earlier sand battery launched in Finland in 2022, reflecting the company’s ambition to expand electrothermal storage.

Interest is also growing beyond Finland. Polar Night Energy said it has received enquiries from potential customers on every continent, particularly from communities seeking alternatives to fossil fuel-based heating.

Jan Rosenow, professor of energy and climate policy at the University of Oxford, said electrothermal storage could play a broader role because it relies on widely available materials and can store heat for much longer than conventional batteries.

“You don’t need rare earths, critical raw materials and the beauty is you can also charge up the battery when the electricity is cheap and discharge whenever you need the heat.”

Supporting District Heating

Unlike conventional batteries, sand batteries are designed to store heat rather than electricity, making them particularly suitable for district heating systems.

Loviisan Lämpö Chief Executive Mikko Paajanen said the battery allows the company to separate electricity purchases from heat production by buying power when prices are low and storing the energy for later use. One charge can provide heating for about one week during winter or up to one month during summer.

Paajanen said the company expects the sand battery to supply 55% to 60% of Pornainen’s district heating during the first months of the year, compared with about 30% in 2025.

Finland’s Climate Minister Sari Multala described the project as “very inspiring” and said the technology could support more advanced energy applications in the future.

Mirendil Signs $100 Million Google Cloud Deal To Advance Self-Improving AI

AI startup Mirendil has signed a multi-year agreement worth more than $100 million with Google Cloud to secure computing infrastructure for its self-improving AI research.

The partnership reflects growing competition among AI companies to lock in access to high-performance computing, while cloud providers race to attract promising startups developing next-generation AI models.

Backing The Next Stage Of AI Research

Mirendil plans to use Google’s Tensor Processing Units (TPUs), Nvidia GPUs and managed training infrastructure to develop AI systems capable of improving their own performance over time.

Known as recursive self-improvement, the concept focuses on building AI that can refine its knowledge and capabilities with minimal human intervention. The technology is attracting growing interest across the industry, with several startups and leading AI labs exploring similar approaches.

According to co-founder and Chief Executive Behnam Neyshabur, the long-term goal is to develop AI that can automate scientific research and accelerate discoveries in fields such as medicine, biology and materials science.

Compute Capacity Becomes A Strategic Asset

Training increasingly advanced AI models requires enormous computing resources, making long-term infrastructure agreements a critical competitive advantage.

Mirendil said Google’s combination of TPUs and GPUs allows workloads to be matched with the most suitable hardware, improving efficiency while reducing costs for customers.

For Google Cloud, the agreement strengthens its position in the race to provide infrastructure for frontier AI developers, while giving the company exposure to one of the industry’s emerging approaches to next-generation artificial intelligence.

The Future Forbes Realty Global Properties
Uol
Aretilaw firm
eCredo

Become a Speaker

Become a Speaker

Become a Partner

Subscribe for our weekly newsletter