Tag: PP Dynelectro

  • Dynelectro and SolydEra to deliver 1 MW Solid Oxide Electrolyser

    Dynelectro and SolydEra to deliver 1 MW Solid Oxide Electrolyser

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    SolydEra and Dynelectro have announced the evolution of their partnership from a Memorandum of Understanding (MOU) to a formal collaboration agreement, marking a significant milestone in green energy innovation.

    The agreement, aimed at delivering a 1 MW Solid Oxide Electrolyser by September 2025, combines SolydEra’s advanced technology with Dynelectro’s industrial expertise to accelerate the production of green hydrogen and ammonia.

    These critical components are essential for building a sustainable, low-carbon economy.

    Sune Lilbæk, CEO of Dynelectro, commented: “This represents the culmination of four years of collaboration and shared innovation between our teams.

    “By combining our expertise in high-efficiency electrolysis with SolydEra’s robust stack technology, we are poised to deliver a scalable solution for affordable hydrogen, a critical feedstock in aviation, transportation and petrochemical industries.

    “This is a significant step forward in meeting the growing market demand for clean energy solutions across industries.

    Uniting expertise for scalable green solutions

    The partnership leverages SolydEra’s cutting-edge Solid Oxide Electrolysis technology and Dynelectro’s deep understanding of industrial applications.

    Together, the companies aim to create efficient and scalable solutions that redefine green hydrogen and ammonia production.

    This strategic collaboration is designed to meet the growing demand for sustainable energy sources while driving innovation in the renewable energy sector.

    Framework to propel Solid Oxide Electrolyser innovation

    Under the agreement, SolydEra will provide solid oxide stacks and serve as the technology provider, while Dynelectro will bring its industrial application expertise to the table.

    This synergy creates a comprehensive framework that harnesses the strengths and resources of both partners, enabling the delivery of transformative solutions for stakeholders and advancing the global transition to a greener future.

    Alexander Liberov, CEO of SolydEra, added: “We are thrilled to solidify our partnership with Dynelectro. This agreement not only underscores our commitment to innovation but also paves the way for groundbreaking advancements.

    “This co-creation is already seeing incredible results if we think that in less than one year, a 1-MW dynamic electrolyser unit delivering up to 30 kg/hr of hydrogen will be delivered to the Danish company European Energy that will be producing green hydrogen by splitting water using the electricity generated in their wind farm”.

    This collaboration solidifies the pivotal role of Solid Oxide Electrolysers in supporting a low-carbon economy and highlights the power of partnerships in achieving sustainability goals.

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  • ROAD2X project to extend lifespan of electrolysis plants

    ROAD2X project to extend lifespan of electrolysis plants

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    The ROAD2X research project, with an investment of DKK 18 million from the Innovation Fund, is working on a breakthrough to improve the operation of high-temperature electrolysis plants.

    The goal is to extend the lifespan of these electrolysis plants to over ten years, a significant improvement from the current two-year average.

    Power2X: A key to a sustainable future

    Power2X refers to the use of renewable electricity, such as from wind turbines and solar panels, to produce synthetic fuels.

    This technology is seen as crucial in the transition to greener energy systems, enabling the production of sustainable fuels like methanol.

    High-temperature electrolysis plays a key role in this process, converting electricity into fuel. However, these electrolysis plants currently have a limited operational life, primarily due to technical challenges like impurities and temperature fluctuations that damage the units over time.

    Addressing technical issues with AC:DC operation

    The ROAD2X project aims to solve these problems by developing a new operating method called AC:DC operation.

    This innovative technique, patented by Dynelectro’s founder, Søren Højgaard Jensen, is designed to combat the two main issues that shorten the lifespan of electrolysis plants—temperature fluctuations and contamination by impurities.

    By stabilising the conditions within the electrolysis units, AC:DC operation could extend their life well beyond the current average of two years.

    Søren Højgaard Jensen highlights the potential of this new method, stating: “The ROAD2X project is of great importance for making AC:DC operation and high-temperature electrolysis ready for commercialisation.

    “When the project is completed, it will open up new possibilities for electrolysing CO2 and producing, for example, green methanol.”

    Collaboration for innovation

    The ROAD2X project brings together five key partners: Dynelectro, Finnish-Estonian electrolysis company Elcogen, Ålborg University, the Technical University of Denmark, and European Energy.

    Each partner plays a crucial role, from advanced testing to analysing the business potential of high-temperature electrolysis for producing green methanol.

    With a total budget of DKK 24 million and a timeline of three years, the ROAD2X project could pave the way for more reliable and longer-lasting electrolysis plants, advancing the Power2X technology and supporting the transition to a sustainable energy future.

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  • Delivering green hydrogen solutions

    Delivering green hydrogen solutions

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    Dynelectro, a pioneering company in sustainable energy solutions, announces its first commercial-scale Dynamic Electrolyser Unit (DEU), after exceeding two years performance testing with low degradation.

    Co-founders Søren Højgaard Jensen (left) and Samantha Phillips (right). Photo credit: @andreasmikkel.dk

    Demonstration of the first dynamic electrolysis unit reaches initial investment decision at European Energy’s green methanol facility in Denmark:

    • FID reached to develop and deploy the commercial-scale fully modular 1-MW Dynamic Electrolyser Unit (DEU) at European Energy’s Danish renewable energy facility.
    • Technology maturation funding reaches €20m, with nearly 50% from innovation funds.
    • Performance testing exceeds two years and shows very low degradation rates of 3µΩcm2/hour.

    About Dynelectro

    Founded in 2018, Dynelectro is at the forefront of developing advanced, sustainable energy solutions. Utilising cutting-edge solid-oxide electrolysis technology, Dynelectro achieves unprecedented system performance and lifespan. Co-founders Søren Højgaard Jensen and Samantha Phillips bring more than 50 years of combined experience, respectively, within high-temperature electrolysis and resource deployment focused on innovation and technology.

    Their innovations enable operators to seamlessly adjust production based on the availability of cost-effective renewable energy. The company commercialises MW-scale Dynamic Electrolyser Units (DEUs), delivering clean hydrogen to unlock syngas and e-fuel production.

    Dynelectro green hydrogen technology

    Dynelectro’s technology focuses on next-generation solid-oxide electrolysis (SOE) and offers unparalleled system performance and longevity. SOE aids decarbonisation in hard-to-abate sectors by efficiently producing hydrogen and utilising industrial waste heat. It supports heavy industries and chemical production by providing on-site hydrogen, reducing emissions, generating synthetic fuels, and enabling the green energy transition in these sectors. SOE is poised to revolutionise the energy sector by enhancing energy efficiency, reducing costs, and facilitating broader renewable integration.

    Dynelectro’s journey, thus far, has culminated in over €20m, which has been solely directed to technology and innovation development. Comprised of €11m in equity funding with early-stage investors, including Export & Import Fund of Denmark (EIFO), Yara Growth Ventures, Vsquared Ventures, PSV Deeptech, The Footprint Firm and the European Innovation Council (EIC) Fund. Furthermore, €9m in grant funding has been achieved from the European Innovation Council, Shell Gamechanger, the Danish Energy Technology Development and Demonstration Program (EUDP) and other innovation programmes.

    According to the European Innovation Council technical evaluation: “The technology may significantly transform and strongly accelerate a major new market. It, therefore, justifies a breakthrough characterisation. It supports the adoption of hydrogen as a major clean energy carrier and strongly contributes to the EU’s Green Deal.” The European Investment Bank’s involvement in this round marks a step change in our maturity, transitioning our investor profile toward industrial investors.

    Performance testing

    After surpassing 16,000 hours of operation, the performance has shown a degradation of less than 3µΩ · cm² per hour, with downtime remaining below 2%. The load factor has consistently exceeded 92%, even with 6% of the time allocated for standby during performance measurements. It’s worth noting that the typical degradation rate for alkaline systems falls within the range of 2-5µΩ · cm² per hour, highlighting the efficiency and stability of the system in comparison, as seen in the following image.

    Benefit of SOE

    Current electrolysis technologies waste 25-50% of input electricity, limiting their commercial and sustainability potential. Solid oxide electrolysis (SOE) offers the highest conversion efficiency but has been hindered by its short lifespan, making it cost-prohibitive. Dynelectro’s innovative AC:DC technology addresses this issue, extending SOE lifespan from two years to ten years, thereby aligning it with other electrolyser technologies. This advancement reduces costs and enables quick production adjustments, aiding in grid balancing through ancillary services. Consequently, Dynelectro becomes a crucial partner for Power-to-X developers striving to lower green hydrogen costs.

    green hydrogen

    green hydrogen

    The completion of the first 1-MW unit installation at European Energy’s renewable energy facility in Denmark is scheduled for the first half of 2025, demonstrating the practical applications and benefits of this advanced energy solution.

    Learn more at dynelectro.dk

    Please note, this article will also appear in the 19th edition of our quarterly publication.

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