Commercial Fusion Energy with Short-Pulse High-Intensity Lasers and Nanostructured Fuel Targets
Marvel Fusion aims to commercialize fusion energy by 2033 through innovative laser technology and partnerships, achieving a 100 MW pilot power plant to support Europe's climate goals.
Projectdetails
Introduction
To achieve climate targets while maintaining industrial value creation and prosperity in Europe, EU companies must be able to switch to clean and competitive energy. Marvel Fusion (“MF”), founded in Munich in 2019, pursues a new and fast track to commercialize fusion energy.
Unique Approach
The unique approach builds on the laser-fusion concept of the National Ignition Facility (“NIF”), where energy gain was demonstrated for the first time in 2022. With diode-pumped laser systems, nanostructured targets, and the use of mixed fuels, MF bypasses the main problems of traditional fusion concepts to achieve a commercially viable power plant concept.
Experimental Validation
MF has performed more than 2,000 experiments over the past three years to validate its approach.
Future Plans
With the completion of the demonstration facility in Colorado by 2027, equipped with two proprietary laser systems developed in collaboration with SPRIN-D, MF will reach a full proof-of-technology. The infrastructure and laser of the facility are already fully funded.
Afterwards, MF will build a pilot power plant by 2033 with a 100 MW output, with Siemens Energy as the development partner.
Team and Collaborations
To achieve their ambitious goals, MF has assembled a world-class team of scientists and entrepreneurs, along with a network of academic and industrial partners, including collaborations with:
- Colorado State University (“CSU”)
- Stanford University
- Ludwig Maximilian University (“LMU”)
Furthermore, European companies like Thales and Siemens Energy assist MF in the development and industrialization of MF’s technology.
Financiële details & Tijdlijn
Financiële details
Subsidiebedrag | € 2.489.221 |
Totale projectbegroting | € 2.489.221 |
Tijdlijn
Startdatum | 1-10-2024 |
Einddatum | 31-3-2027 |
Subsidiejaar | 2024 |
Partners & Locaties
Projectpartners
- MARVEL FUSION GMBHpenvoerder
Land(en)
Vergelijkbare projecten binnen EIC Accelerator
Project | Regeling | Bedrag | Jaar | Actie |
---|---|---|---|---|
Current-free Stellarator for Fusion Power PlantsProxima Fusion aims to develop a cost-effective current-free stellarator for fusion energy generation by optimizing reactor design through an integrated modeling framework. | EIC Accelerator | € 2.471.437 | 2024 | Details |
Novel Semiconductor Lasers for the Industrial Quantum LeapVexlum aims to revolutionize industrial quantum technologies by developing a high-power, low-noise laser through vertically integrated manufacturing, enhancing reliability and scalability for market adoption. | EIC Accelerator | € 2.425.437 | 2024 | Details |
Reducing natural gas needs and carbon emissions in industrial usage and transforming industry towards hydrogen with HERC, a novel plasma-assisted combustion (PAC) technologyEfenco's HERC technology enhances industrial combustion efficiency by 18% and reduces GHG emissions by 20%, targeting over 50,000 EU systems for a €105.6M revenue opportunity by 2027. | EIC Accelerator | € 2.496.592 | 2023 | Details |
Current-free Stellarator for Fusion Power Plants
Proxima Fusion aims to develop a cost-effective current-free stellarator for fusion energy generation by optimizing reactor design through an integrated modeling framework.
Novel Semiconductor Lasers for the Industrial Quantum Leap
Vexlum aims to revolutionize industrial quantum technologies by developing a high-power, low-noise laser through vertically integrated manufacturing, enhancing reliability and scalability for market adoption.
Reducing natural gas needs and carbon emissions in industrial usage and transforming industry towards hydrogen with HERC, a novel plasma-assisted combustion (PAC) technology
Efenco's HERC technology enhances industrial combustion efficiency by 18% and reduces GHG emissions by 20%, targeting over 50,000 EU systems for a €105.6M revenue opportunity by 2027.
Vergelijkbare projecten uit andere regelingen
Project | Regeling | Bedrag | Jaar | Actie |
---|---|---|---|---|
Tau-E Breakthrough (TauEB): Infinite clean energy through fusion power to the grid & beyondThe Tau-E Breakthrough project aims to achieve stable, long-term plasma confinement for nuclear fusion using innovative plasma plugs, advancing fusion technology towards commercial viability and sustainable energy. | EIC Pathfinder | € 2.944.905 | 2024 | Details |
Next-Generation Light Source: Driving plasmas to power tomorrow’s nanolithographyMOORELIGHT aims to enhance EUV light source efficiency for semiconductor production by optimizing solid-state laser interactions with tailored tin targets and advancing plasma modeling. | ERC Consolid... | € 2.000.000 | 2024 | Details |
V4FV4F aims to demonstrate a novel technology for enhanced control in aneutronic fusion, potentially revolutionizing clean energy production and positron accelerator efficiency. | EIC Pathfinder | € 2.659.996 | 2023 | Details |
Iron Fuel Technology™: From PoC to prototypeHet project ontwikkelt een prototype van Iron Fuel Technology™ om de energie-intensieve industrie te verduurzamen en CO2-uitstoot te verminderen. | Mkb-innovati... | € 282.520 | 2022 | Details |
Microcomb Photonic EngineM-ENGINE aims to revolutionize data center bandwidth with a scalable photonic chip solution using optical frequency combs, reducing energy consumption and enhancing transmission capacity. | EIC Transition | € 2.499.445 | 2023 | Details |
Tau-E Breakthrough (TauEB): Infinite clean energy through fusion power to the grid & beyond
The Tau-E Breakthrough project aims to achieve stable, long-term plasma confinement for nuclear fusion using innovative plasma plugs, advancing fusion technology towards commercial viability and sustainable energy.
Next-Generation Light Source: Driving plasmas to power tomorrow’s nanolithography
MOORELIGHT aims to enhance EUV light source efficiency for semiconductor production by optimizing solid-state laser interactions with tailored tin targets and advancing plasma modeling.
V4F
V4F aims to demonstrate a novel technology for enhanced control in aneutronic fusion, potentially revolutionizing clean energy production and positron accelerator efficiency.
Iron Fuel Technology™: From PoC to prototype
Het project ontwikkelt een prototype van Iron Fuel Technology™ om de energie-intensieve industrie te verduurzamen en CO2-uitstoot te verminderen.
Microcomb Photonic Engine
M-ENGINE aims to revolutionize data center bandwidth with a scalable photonic chip solution using optical frequency combs, reducing energy consumption and enhancing transmission capacity.