Yara has inaugurated an industrial carbon capture facility at its ammonia and fertiliser plant in Sluiskil, the Netherlands, which can capture and liquefy up to 800,000 tonnes per annum (tpa) of CO₂.
The project links CO₂ capture at the Dutch plant with transport by sea and permanent geological storage in Norway. It is being delivered with the Northern Lights project, which will transport the liquefied CO₂ by ship to its storage facilities at Øygarden on the Norwegian coast.
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The captured CO₂ will be temporarily stored at Sluiskil before being transported to Norway. Northern Lights will inject it approximately 2,600m below the seabed for permanent storage.
The project is notable for connecting facilities in two countries into a single carbon capture and storage (CCS) chain covering capture, conditioning, shipping and offshore storage. Yara said the system is expected to capture and store around 12 million tonnes of CO₂ over 15 years, subject to the necessary framework conditions.
At Sluiskil, the captured emissions originate from ammonia production. Carbon capture at this stage targets process emissions that are difficult to eliminate through changes to the plant’s energy supply alone.
The project also illustrates the infrastructure requirements for deploying CCS at industrial sites. Rather than requiring storage close to individual emitters, the Northern Lights system provides access to offshore geological storage through a shared transport network.
Northern Lights managing director Tim Heijn said the project demonstrates that cross-border CO₂ transport and storage can operate as a practical solution for European industry.
For Yara, the captured volumes will reduce the carbon intensity of ammonia and fertiliser production while providing a route towards lower-carbon products. The company also identifies potential applications for low-carbon ammonia in industrial processes, energy and maritime fuels.
The Sluiskil project adds to the emerging European CO₂ transport and storage infrastructure, where cross-border networks are expected to connect industrial emitters with permanent storage sites.
