Full-Time
Updated on 9/3/2026
Develops, builds, operates hybrid wind-solar-hydrogen plants
No salary listed
Berlin, Germany
Hybrid
Hybrid work is available, with flexibility to work from the office or home. Up to four weeks per year may be worked from another EU country.
Bachelor's
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Enertrag SE develops, builds, and operates integrated renewable projects, combining wind, solar, green hydrogen, and storage. It owns assets across the full value chain as an Independent Power Producer, from development to operation and asset management. Its Verbundkraftwerk links generation with electrolyzers, battery storage, and grid infrastructure to deliver on-demand renewable energy, heat, and green hydrogen. The goal is to decarbonize energy-intensive sectors by expanding renewable capacity and hydrogen infrastructure, using long-term ownership and scalable sector coupling.
Company Size
501-1,000
Company Stage
Debt Financing
Total Funding
$132M
Headquarters
Germany
Founded
1998
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Paid Vacation
Remote Work Options
Flexible Work Hours
Childcare Support
Professional Development Budget
Training Programs
Wellness Program
Gym Membership
Company Equity
Performance Bonus
Company Social Events
Wind and biogenic residues: How Mecklenburg-Western Pomerania can develop a methanol industry. According to the guide, virtually all methanol produced worldwide - around 99 per cent - has so far come from fossil raw materials such as natural gas or coal. Green methanol, on the other hand, can be produced from green hydrogen and carbon dioxide. The hydrogen is produced by electrolysis using electricity from wind or solar power plants, whilst the required CO[2] can come from biogenic sources or industrial waste gases. A second method involves biogenic residues and waste, which are first converted into a gas mixture and then processed into methanol. Initial methanol projects in Mecklenburg-Western Pomerania demonstrate potential According to the guidelines, Mecklenburg-Western Pomerania offers favourable conditions for this: abundant renewable energy, usable CO[2] sources, industrial and port sites, and an active research community. Initial projects are already demonstrating what this could look like. The 'Green Dettmannsdorf' project aims to combine wind and solar energy, battery storage and local heating with the use of biogenic residues. Biogenic CO[2] from the revitalised 'Baltic Distillery' is to be converted into methanol. Concrete planning began in November 2025. In Anklam, Enertrag is planning a plant in collaboration with the sugar factory operator Cosun Beet Company that will utilise biogenic CO[2] from sugar beet processing. At the port of Mukran, the world's first methanol-powered supply vessel for an offshore wind farm has been in operation since April 2025. Beyond individual plants, larger research consortia are also emerging across the state. In the biogeniV alliance, more than 40 partners from eastern Mecklenburg-Western Pomerania are working to convert biogenic residues and CO[2] into green methanol using wind and solar energy. The federal government is funding the project with 15 million euros; the first demonstration plants are due to be built by 2028. In Rostock, the Fraunhofer Institute for Large-Scale Structures in Production Engineering (IGP), the Leibniz Institute for Catalysis (LIKAT) and the INP are pooling their expertise at the "Forschungsfabrik Wasserstoff MV". Whilst LIKAT and INP are conducting research into the production of green hydrogen and alternative fuels and storage media, the Fraunhofer IGP is testing, on its own large-scale engine test rig, how these fuels can be used in the maritime industry. "Mecklenburg-Western Pomerania has many key elements that are important for a methanol economy. These include renewable energies, usable CO[2] sources, ports, industrial customers and research institutions. It is now crucial to plan these areas jointly and create reliable framework conditions for specific projects, so that new regional value can be generated," says Yvette Gonzalez, HyCore cluster manager at the INP. Where the challenges lie However, existing potential alone is not sufficient for economically viable methanol production. Green methanol currently costs significantly more than the fossil-based product, and long-term supply and off-take contracts are often lacking. Added to this are complex approval procedures, as well as electricity, hydrogen and CO[2] infrastructures that are not yet sufficiently interconnected. There is also a lack of market-ready modular plants for small and medium-sized sites. The guide therefore recommends establishing regional methanol production sites centred around energy generation, industrial consumers and ports, as well as CO[2] point sources. These include biogas plants and sugar beet processing facilities. Hydrogen supply should be factored into the planning from the outset. Furthermore, approval procedures need to be better coordinated. Further recommendations relate to demonstration projects, research partnerships, long-term off-take agreements and transparent communication with the public. Guide brings together expert knowledge The 'Mecklenburg-Western Pomerania Methanol Guide' sets out, over 43 pages, the regional context, ongoing projects and potential areas of application. It also identifies technical, economic and regulatory hurdles and provides recommendations on how the political, business and academic sectors can work together to establish a sustainable methanol industry. The guide was developed by experts from industry and academia who came together in the Methanol Working Group. These include, amongst others, the INP in Greifswald, the WindEnergy Network, as well as LIKAT and Fraunhofer IGP in Rostock, and the Institute for Renewable Energy Systems at Stralsund University of Applied Sciences. The work was initiated by the INP and the WindEnergy Network as part of the HyCore Hydrogen Innovation Cluster M-V, as well as the Wind Energy Cluster M-V and Future Energy M-V projects. The technical exchange within the working group is set to continue. A fourth methanol workshop is planned for the fourth quarter of 2026. "The guide brings together the perspectives of various stakeholders from industry and academia. With the fourth methanol workshop, we aim to continue the technical exchange and further explore the areas for action identified," says Peter Wieland, project manager at the WindEnergy Network. Through the Methanol Working Group, WindEnergy Network and INP are creating an important platform for pooling knowledge and expertise from industry, academia and practice, thereby paving the way from individual projects towards a sustainable methanol economy in Mecklenburg-Western Pomerania. Funding information The HyCore Hydrogen Innovation Cluster M-V is funded by the Ministry for Economic Affairs, Infrastructure, Tourism and Labour of Mecklenburg-Western Pomerania as part of the Joint Task 'Improvement of the Regional Economic Structure'.
ENERTRAG brings first phase of Bütow II repowering online in Mecklenburg-Vorpommern. ENERTRAG has commissioned the first construction phase of its Bütow II wind project in Mecklenburg-Vorpommern, with six Nordex N163 turbines now feeding the grid. The phase forms part of a wider repowering scheme that replaces turbines installed in 1999 with larger, more productive machines. Across the full Bütow project, ENERTRAG is replacing 32 turbines from 1999 with 14 Nordex N163 units. The number of turbines falls by more than half, while installed capacity rises roughly fivefold and annual energy output increases to almost ten times the previous level. The latest commissioning covers the first of three planned phases, with two further stages to follow in the coming years. The developer has agreed a participation model with the municipalities of Bütow and Eldetal that shares project revenues with local authorities and residents. An additional electricity bonus is available to residents through Stadtwerke Malchow, the regional energy partner, with registration handled online. Ines Jesse, state secretary in Mecklenburg-Vorpommern's economics ministry, said the project showed the potential of repowering to deliver more renewable energy from fewer turbines, with greater spacing and direct involvement of local communities. Robert Vogt, ENERTRAG's regional director for the state, said replacing 32 older turbines with 14 modern ones reflected a long-term commitment to the region built on participation rather than promises. Mecklenburg-Vorpommern, on Germany's Baltic coast, remains a focus for onshore wind expansion, and repowering older sites is becoming central to lifting output without claiming significant new land. Copyrights BalticWind.EU.
ENERTRAG commits €1.1 billion to French renewable energy and storage projects. By CEP Staff - 2 June 2026 in News German company ENERTRAG has announced plans to invest €1.1 billion in renewable energy and battery storage infrastructure in France. Not already a subscriber? As a subscriber, you have reached this page because you are not logged in.
Engaging local communities in large-scale H2/PtX project planning. To ensure meaningful local community engagement, the Deutsche Gesellschaft für Internationale Zusammenarbeit (GIZ), ENERTRAG SE and Colombia's Colibri Energy are launching a public-private partnership under the International Hydrogen Ramp-up Programme (H2Uppp) to develop and test strategies for the inclusion of e.g. indigenous communities during the planning processes of large-scale hydrogen and power-to-X projects. The aim is to reduce social and permitting risks during the planning, construction and operation phases by integrating robust participation mechanisms from the outset. The partnership combines complementary strengths: ENERTRAG contributes experience from developing utility-scale H2/PtX projects in rural contexts; Colibri brings on-the-ground dialogue and inclusion know-how from Colombia's La Guajira; GIZ acts as a neutral broker and draws on governance insights from global initiatives, including adjacent sectors such as mining. Two Latin American project types will serve as pilots In Uruguay, the advanced e-methanol project Tambor will be used to systematically capture local perceptions in cooperation with neutral actors such as universities, translating findings into communication and participation measures. GIZ will support collaboration with local universities and help design engagement activities. In Colombia, the ammonia project "Waawaata" in La Guajira - one of Colombia's most promising regions for export-oriented hydrogen, with exceptional wind and solar resources - will focus on co-developing participation mechanisms with indigenous communities. The project partners will conduct a structured needs assessment of indigenous groups and, in parallel, commission supporting analyses on infrastructure, transport corridors and renewable power supply for site selection. GIZ and Colibri will facilitate knowledge exchange and capacity building locally and contribute to site-selection analyses. About H2Uppp The International Hydrogen Ramp-up Programme (H2Uppp) is supporting entrepreneurial engagement in the ramping-up of hydrogen in the Global South and is a funding programme of the German Federal Ministry for Economic Affairs and Energy and is implemented by GIZ.
ENERTRAG begins construction of hydrogen production facility in Wensickendorf, Germany. As Germany seeks to remain the top hydrogen-producing country in Europe, there are greater incentives in place for developers to pursue energy initiatives that will strengthen the nation's overall position. Additionally, there are newer entities that are emerging at this moment with the aim of positioning themselves for the inevitable increase in hydrogen demand worldwide, which in turn will allow them to generate profit. The nation once again displayed its full commitment as news broke that ENERTRAG has started construction of a hydrogen production facility in Wensickendorf, Germany. Germany is fully committed to elevating its total installed hydrogen capacity. The German government deserves a tremendous amount of credit for creating an environment where developers want to pursue major facilities that will, in turn, increase the nation's installed capacity. ENERTRAG is a prominent German-based independent power producer and renewable energy developer specializing in wind, solar, and green hydrogen projects. The company was founded in the 1900s but continues to remain relevant to this day, which is a testament to its ability to adapt to the ever-changing energy landscape. In its current objectives, the company depends on integrated power plants as it connects wind and solar farms directly to storage solutions. Now, ENERTRAG announced that it has officially begun construction of a green hydrogen production facility in Wensickendorf, marking a major step in the country's clean energy transition. The project is located in Brandenburg's Oberhavel district and is specifically built to support sustainable mobility and regional energy independence. Gaining a deeper insight into ENERTRAG's hydrogen production facility in Wensickendorf, Germany. The upcoming initiative is part of a broader push to decarbonize transportation and reduce dependence on fossil fuels across the Berlin-Brandenburg metropolitan region. Commissioning is expected by the end of 2026, and the development is a representation of Europe's growing hydrogen economy. For Germany, the Wensickendorf facility is a significant milestone in the nation's overall strategy to scale up green hydrogen production. Construction officially commenced after a captivating ceremony that united stakeholders from government, industry, and academia. The plant will use renewable energy sources, mainly wind and solar, to produce hydrogen through electrolysis. With a planned capacity of 4 MW, it is projected to generate up to 380 tons of green hydrogen per year when operational. The model, which prioritizes local production, is instrumental to Germany's energy transition, as it allows hydrogen to be produced close to where it will be used. The project is also consistent with national and regional climate objectives, reiterating hydrogen's role as a key energy source for the global transition. Reviewing the impacts of the initiative on ENERTRAG's overall portfolio. Although the main objective of an energy initiative is to generate electricity for the population, it is always interesting to fathom how it can also impact the company itself. Dr Tobias Bischof-Niemz stated the following: "The energy transition is entering a new phase: wind and solar power are the cheapest forms of electricity generation worldwide and are becoming the new primary energy source for our energy system." Since hydrogen is capable of complementing other energy sources like wind and solar, the company sees a brilliant opportunity to find effective combinations within the clean energy sources. Looking ahead: Europe maintains unity in hydrogen development. An integral target of the project is to support climate-neutral transportation, such as rail mobility. About 230 tons of the hydrogen produced per year will be dedicated toward powering the Heidekrautbahn railway line connecting Barnim and Berlin. The facility is part of the Heidekrautbahn hydrogen rail initiative. This is a collaborative effort consisting of multiple partners, including Niederbarnimer Eisenbahn, Kreiswerke Barnim, Brandenburg University of Technology Cottbus-Senftenberg, and the German Aerospace Center. ENERTRAG's advancement of projects like Wensickendorf enables it to slowly position itself as a leader in the green hydrogen sector. For Germany, this is yet another statement of intent to remain a pioneer in the sector.