[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"$f1gc4nipw44xg9":3,"$fj7txrrgn5h0v":36,"$fywbpz4s79brc":62},{"data":4,"success":35},{"menu":5},{"menuItems":6},{"nodes":7},[8,14,19,24,29],{"id":9,"label":10,"url":11,"path":11,"target":12,"parentId":12,"cssClasses":13},"cG9zdDoyMTY1","Products","\u002Fproducts",null,[],{"id":15,"label":16,"url":17,"path":17,"target":12,"parentId":12,"cssClasses":18},"cG9zdDoyNDQw","Technology","\u002Ftechnology",[],{"id":20,"label":21,"url":22,"path":22,"target":12,"parentId":12,"cssClasses":23},"cG9zdDoyMTY3","News","\u002Fnews",[],{"id":25,"label":26,"url":27,"path":27,"target":12,"parentId":12,"cssClasses":28},"cG9zdDoyMTY2","About","\u002Fabout",[],{"id":30,"label":31,"url":32,"path":32,"target":12,"parentId":12,"cssClasses":33},"cG9zdDoyMTYz","Contact us","\u002Fcontact",[34],"link-contact",true,{"contact":37,"success":35},{"address":38,"email":39,"phone":40,"contactPersonsTitle":41,"contactPersonsRepeater":42},"Dynelectro A\u002FS\nSyvvejen 10\n4130 Viby Sjælland\nDenmark","info@dynelectro.dk","+45 23 45 47 55","",[43,53],{"name":44,"category":45,"jobtitle":46,"phone":47,"email":41,"description":48,"image":49},"Kristian Laursen","Project Enquiries","Commercial & Business Development Manager","+45 29 66 08 27","\"Every hydrogen project is unique. Let's discuss your process, integration opportunities and commercial objectives to identify the right SOEC solution.\"",{"url":50,"width":51,"height":52,"alt":41},"https:\u002F\u002Fhydrogen.on-forge.com\u002Fwp-content\u002Fuploads\u002F2026\u002F08\u002Fkristian.png",839,1170,{"name":54,"category":55,"jobtitle":56,"phone":40,"email":41,"description":57,"image":58},"Sune Lilbæk","Corporate & Investor Relations","Chief Executive Officer","\"Interested in Dynelectro's strategy, corporate partnerships or investment opportunities? I'd be pleased to discuss how we're scaling industrial SOEC technology.\"",{"url":59,"width":60,"height":61,"alt":41},"https:\u002F\u002Fhydrogen.on-forge.com\u002Fwp-content\u002Fuploads\u002F2026\u002F08\u002Fb295543318b64909a874eb34db4a3da8.png",200,300,{"post":63,"posts":92,"success":35},{"id":64,"slug":65,"date":66,"title":67,"content":69,"acf":71,"yoast_head_json":72,"_embedded":85},1812,"dynamic-electrolysis-grid-stabilisation","2026-01-20T08:22:49",{"rendered":68},"AI-Optimised electrolysers and batteries deliver new value for Denmark’s Power-to-X future",{"rendered":70},"\u003Ch3 data-start=\"347\" data-end=\"446\">\u003Cstrong data-start=\"347\" data-end=\"446\">Pioneering Power-to-X Project Validates Electrolysers and Batteries for Denmark’s Energy System\u003C\u002Fstrong>\u003C\u002Fh3>\n\u003Ch4 data-start=\"448\" data-end=\"700\">\u003Cem data-start=\"448\" data-end=\"700\">The ViPES2X project demonstrates how electrolysers and battery systems, operated through an AI-supported optimisation model, can optimise power pricing while actively supporting grid balancing and system flexibility under real Danish grid conditions.\u003C\u002Fem>\u003C\u002Fh4>\n\u003Cp data-start=\"702\" data-end=\"1020\">\u003Cstrong>Copenhagen, Denmark\u003C\u002Fstrong> – A Danish consortium supported by the \u003Cstrong>Energy Technology Development and Demonstration Programme (EUDP)\u003C\u002Fstrong> has successfully completed the \u003Cstrong>ViPES2X\u003C\u002Fstrong> project. The project delivers new evidence showing how electrolysers and battery systems can be tested, validated, and operated under real grid conditions.\u003C\u002Fp>\n\u003Cp data-start=\"1022\" data-end=\"1295\">Importantly, the results demonstrate that when these technologies are supported by advanced AI-based optimisation models, they can optimise power pricing, participate effectively in grid balancing markets, and provide critical flexibility to Denmark’s future energy system.\u003C\u002Fp>\n\u003Cp data-start=\"1297\" data-end=\"1554\">As a result, the project represents an important milestone for Denmark’s national Power-to-X (P2X) ambitions. It offers a clear technical and economic foundation for scaling hydrogen production and energy storage in a renewable-dominated electricity system.\u003C\u002Fp>\n\u003Ch4 data-start=\"1561\" data-end=\"1624\">Establishing a Transparent Testing Framework for Power-to-X\u003C\u002Fh4>\n\u003Cp data-start=\"1626\" data-end=\"1851\">A core outcome of ViPES2X is the establishment of a transparent and repeatable testing framework. This framework assesses the electrical behaviour, dynamic response, and operational flexibility of electrolysers and batteries.\u003C\u002Fp>\n\u003Cp data-start=\"1853\" data-end=\"2079\">Unlike traditional laboratory testing, the framework evaluates technologies under realistic grid conditions. For example, it captures performance during rapid power fluctuations, market-driven operation, and long-term cycling.\u003C\u002Fp>\n\u003Cp data-start=\"2081\" data-end=\"2474\">Moreover, by linking physical performance to techno-economic indicators such as efficiency, degradation, lifetime, and cost, the framework creates a shared and factual basis for decision-making. Consequently, developers, grid operators, and investors gain greater confidence in system behaviour. This, in turn, supports more accurate planning, permitting, and financing of future P2X projects.\u003C\u002Fp>\n\u003Ch4 data-start=\"2481\" data-end=\"2546\">AI-Supported Virtual Power Plant Enables Smarter Optimisation\u003C\u002Fh4>\n\u003Cp data-start=\"2548\" data-end=\"2773\">At the heart of the project was an AI-supported Virtual Power Plant (VPP). This system coordinated the operation of electrolysers, battery storage, and slower energy assets, including heat pumps and district heating networks.\u003C\u002Fp>\n\u003Cp data-start=\"2775\" data-end=\"3100\">The VPP continuously evaluated operational strategies by forecasting electricity prices, grid balancing opportunities, system losses, and component degradation. In addition, the AI model compared expected operating costs with potential revenue from energy savings and participation in balancing and ancillary service markets.\u003C\u002Fp>\n\u003Cp data-start=\"3102\" data-end=\"3252\">As a result, assets could be optimised in real time. Short-term economic gains were therefore balanced against long-term performance and asset health.\u003C\u002Fp>\n\u003Cp data-start=\"3254\" data-end=\"3303\">Key quantified outcomes from the project include:\u003C\u002Fp>\n\u003Cul data-start=\"3305\" data-end=\"3628\">\n\u003Cli data-start=\"3305\" data-end=\"3422\">\n\u003Cp data-start=\"3307\" data-end=\"3422\">Approximately 15% reduction in hydrogen production costs through predictive modelling of electrolyser degradation\u003C\u002Fp>\n\u003C\u002Fli>\n\u003Cli data-start=\"3423\" data-end=\"3514\">\n\u003Cp data-start=\"3425\" data-end=\"3514\">15–20% increase in battery lifetime enabled by forecasting long-term degradation trends\u003C\u002Fp>\n\u003C\u002Fli>\n\u003Cli data-start=\"3515\" data-end=\"3628\">\n\u003Cp data-start=\"3517\" data-end=\"3628\">Up to 45% reduction in battery degradation achieved through co-optimisation with slower, more flexible assets\u003C\u002Fp>\n\u003C\u002Fli>\n\u003C\u002Ful>\n\u003Cp data-start=\"3630\" data-end=\"3825\">Overall, these results confirm that electrolysers and batteries deliver significantly higher value when operated as part of an intelligently controlled portfolio rather than as standalone assets.\u003C\u002Fp>\n\u003Ch4 data-start=\"3832\" data-end=\"3889\">Demonstrated Grid Support and Operational Flexibility\u003C\u002Fh4>\n\u003Cp data-start=\"3891\" data-end=\"4052\">ViPES2X also demonstrated that modern electrolysers and battery systems can provide fast and stable grid support while maintaining efficient hydrogen production.\u003C\u002Fp>\n\u003Cp data-start=\"4054\" data-end=\"4229\">The technologies showed strong dynamic performance. Therefore, they were able to respond rapidly to grid signals and contribute to balancing and frequency regulation services.\u003C\u002Fp>\n\u003Cp data-start=\"4231\" data-end=\"4543\">Furthermore, the project documented clear performance envelopes covering efficiency, dynamic operation, degradation behaviour, and key cost drivers. These insights provide practical guidance for future Danish P2X projects, particularly those focused on maximising system value and ensuring long-term bankability.\u003C\u002Fp>\n\u003Ch4 data-start=\"4550\" data-end=\"4594\">Supporting Denmark’s Power-to-X Strategy\u003C\u002Fh4>\n\u003Cp data-start=\"4596\" data-end=\"4761\">As Denmark accelerates its national Power-to-X strategy, robust validation of electrolyser and battery performance under real operating conditions becomes essential.\u003C\u002Fp>\n\u003Cp data-start=\"4763\" data-end=\"5020\">ViPES2X delivers concrete evidence that advanced electrolysis and storage technologies can be integrated with district heating and other energy assets. Consequently, they can support both competitive hydrogen production and a stable, resilient power system.\u003C\u002Fp>\n\u003Cp data-start=\"5022\" data-end=\"5326\">By demonstrating how AI-supported optimisation aligns power pricing, grid balancing, and long-term asset performance, the project strengthens confidence among investors, utilities, and policymakers. Ultimately, this reinforces the role of Power-to-X as a cornerstone of Denmark’s green energy transition.\u003C\u002Fp>\n\u003Ch4 data-start=\"5333\" data-end=\"5357\">Industry Perspective\u003C\u002Fh4>\n\u003Cp data-start=\"5359\" data-end=\"5423\">Søren Højgaard Jensen, CTO and Founder of Dynelectro, commented:\u003C\u002Fp>\n\u003Cp data-start=\"5425\" data-end=\"5769\">“High-performance electrolysis must be understood in real grid conditions, not just in the lab. This project shows that our technology responds dynamically and reliably under demanding scenarios. Next-generation electrolysers using our proprietary technology can play a central role in cost-effective, integrated power and hydrogen production.”\u003C\u002Fp>\n\u003Ch4 data-start=\"5776\" data-end=\"5805\">About the ViPES2X Project\u003C\u002Fh4>\n\u003Cp data-start=\"5807\" data-end=\"6084\">The ViPES2X project was funded by EUDP to strengthen Denmark’s leadership in Power-to-X technologies. The consortium included Hybrid Greentech, DTU Energy, DTU Wind Energy, Imperial College London, Green Hydrogen Systems, Lhyfe, Siemens Gamesa Renewable Energy, and Dynelectro.\u003C\u002Fp>\n\u003Cp data-start=\"6086\" data-end=\"6284\">By combining technology development, system integration, and advanced analytics, the partners established a clear pathway for the commercial deployment of electrolysers and battery storage at scale.\u003C\u002Fp>\n\u003Ch4 data-start=\"6291\" data-end=\"6311\">About Dynelectro\u003C\u002Fh4>\n\u003Cp data-start=\"6313\" data-end=\"6576\">Founded in 2018, Dynelectro develops advanced and sustainable energy solutions based on solid-oxide electrolysis technology. The company commercialises MW-scale Dynamic Electrolyser Units (DEUs) that deliver high efficiency, long lifetimes, and dynamic operation.\u003C\u002Fp>\n\u003Cp data-start=\"6578\" data-end=\"6687\">As a result, hydrogen production can follow the availability of cost-effective renewable energy more closely.\u003C\u002Fp>\n\u003Cp>\u003Cstrong>For more Information Contact \u003C\u002Fstrong>\u003C\u002Fp>\n\u003Cp>&nbsp;\u003C\u002Fp>\n\u003Cp>\u003Ca style=\"display: inline-block; padding: 6px 14px; margin: 0 4px; background: #9acefb; color: #000000; text-decoration: none; border-radius: 999px; font-weight: 600;\" href=\"#\" data-contact=\"advanced\">Request for More Information\u003C\u002Fa>\u003C\u002Fp>\n\u003Cp>&nbsp;\u003C\u002Fp>\n",{"summary":41},{"title":73,"robots":74,"og_type":77,"og_title":73,"og_description":78,"og_url":79,"og_site_name":80,"og_image":81,"article_published_time":83,"article_modified_time":84,"twitter_title":41,"twitter_description":41,"canonical":79},"Dynamic Electrolysis for Grid Stabilisation – Dynelectro VIPES2X",{"index":75,"follow":76},"index","follow","article","Dynelectro’s VIPES2X project proves dynamic electrolysis for grid stabilisation produces green hydrogen.","https:\u002F\u002Fhydrogen.on-forge.com\u002F2026\u002F01\u002F20\u002Fdynamic-electrolysis-grid-stabilisation\u002F","Dynelectro",{"url":82},"https:\u002F\u002Fhydrogen.on-forge.com\u002Fwp-content\u002Fuploads\u002F2026\u002F01\u002FEt-billede-der-indeholder-maskine-ingeniorarbejde-indendors-bla_nedtrykt-Automatisk-genereret-beskrivelse.png","2026-01-20T07:22:49+00:00","2026-08-05T07:09:39+00:00",{"wp:featuredmedia":86},[87],{"source_url":82,"alt_text":41,"caption":88,"media_details":89},{"rendered":41},{"width":90,"height":91},656,658,[93,107,121,135,149,163,178,185,199,214,230,244],{"id":94,"slug":95,"date":96,"title":97,"_embedded":99},2596,"new-chairman-of-the-board","2026-08-24T18:37:49",{"rendered":98},"Thyge Boserup appointed as new Chairman of the Dynelectro 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succesfully",{"wp:featuredmedia":114},[115],{"source_url":116,"alt_text":41,"caption":117,"media_details":118},"https:\u002F\u002Fhydrogen.on-forge.com\u002Fwp-content\u002Fuploads\u002F2026\u002F07\u002FDynelectro-husavik-small.jpg",{"rendered":41},{"width":119,"height":120},960,540,{"id":122,"slug":123,"date":124,"title":125,"_embedded":127},2022,"dynelectro-dispatches-250-kw-dynamic-solid-oxide-electrolyser-unit-to-syntholenes-iceland-esaf-project","2026-06-18T16:03:02",{"rendered":126},"250 kW Solid Oxide Electrolysis for eSAF production delivered",{"wp:featuredmedia":128},[129],{"source_url":130,"alt_text":41,"caption":131,"media_details":132},"https:\u002F\u002Fhydrogen.on-forge.com\u002Fwp-content\u002Fuploads\u002F2026\u002F06\u002FPicture1.jpg",{"rendered":41},{"width":133,"height":134},1482,804,{"id":136,"slug":137,"date":138,"title":139,"_embedded":141},1849,"dynelectro-1-mw-solid-oxide-electrolyser-reached-fid-at-dutch-agri-hydrogen-site","2026-02-19T14:27:10",{"rendered":140},"Dynelectro 1 MW solid oxide electrolyser reached FID at Dutch agri-hydrogen site",{"wp:featuredmedia":142},[143],{"source_url":144,"alt_text":41,"caption":145,"media_details":146},"https:\u002F\u002Fhydrogen.on-forge.com\u002Fwp-content\u002Fuploads\u002F2026\u002F02\u002FChatGPT-Image-Feb-20-2026-11_29_46-AM.png",{"rendered":41},{"width":147,"height":148},1536,1024,{"id":150,"slug":151,"date":152,"title":153,"_embedded":155},1820,"syntholene-soec-pilot-dynelectro","2026-02-10T20:17:28",{"rendered":154},"Syntholene Energy: Dynelectro 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logo\u003C\u002Fp>\n",{"width":176,"height":177},429,489,{"id":64,"slug":65,"date":66,"title":179,"_embedded":180},{"rendered":68},{"wp:featuredmedia":181},[182],{"source_url":82,"alt_text":41,"caption":183,"media_details":184},{"rendered":41},{"width":90,"height":91},{"id":186,"slug":187,"date":188,"title":189,"_embedded":191},1809,"dynelectro-named-ey-entrepreneur-of-the-year-2025-finalist","2025-12-12T12:55:18",{"rendered":190},"Dynelectro finalist for EY Entrepreneur Of The Year 2025",{"wp:featuredmedia":192},[193],{"source_url":194,"alt_text":41,"caption":195,"media_details":196},"https:\u002F\u002Fhydrogen.on-forge.com\u002Fwp-content\u002Fuploads\u002F2026\u002F01\u002F1761731766359.jpg",{"rendered":41},{"width":197,"height":198},2048,1365,{"id":200,"slug":201,"date":202,"title":203,"_embedded":205},1792,"6x-cell-size-without-losing-yield","2025-11-19T16:13:59",{"rendered":204},"ReScale – 6X SOEC cell size without losing yield",{"wp:featuredmedia":206},[207],{"source_url":208,"alt_text":41,"caption":209,"media_details":211},"https:\u002F\u002Fhydrogen.on-forge.com\u002Fwp-content\u002Fuploads\u002F2022\u002F06\u002FDI_SHJ_ALS_flame_image20220322.webp",{"rendered":210},"\u003Cp>Photo: Ulrik Jantzen, Bürojantzen\u003C\u002Fp>\n",{"width":212,"height":213},1150,647,{"id":215,"slug":216,"date":217,"title":218,"_embedded":220},874,"frank-zimmermann-joins-dynelectro-board-of-directors","2025-09-29T11:51:52",{"rendered":219},"Frank Zimmermann Joins Dynelectro Board of Directors",{"wp:featuredmedia":221},[222],{"source_url":223,"alt_text":224,"caption":225,"media_details":227},"https:\u002F\u002Fhydrogen.on-forge.com\u002Fwp-content\u002Fuploads\u002F2025\u002F09\u002FZimmermann.jpg","Frank Zimmermann",{"rendered":226},"\u003Cp>Frank Zimmermann joins 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