Summary
The article "Looking Back at 2025 to Look Forward for 2026" discusses the factors that drove up electricity prices in 2025, including rapid growth in demand, supply chain issues, and uncertain permitting climates. It expects these trends to continue in 2026. Additionally, the article highlights changes in economics that are affecting project development.
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Key Takeaways
- Rapid growth in electricity demand and supply chain tightness will likely drive up prices again in 2026.
- Deployment delays for transmission and production projects will continue to impact the energy sector.
- Changing economics are expected to influence project development, with potential implications for the future of renewable energy sources.
Summary
Germany has secured significant investments in its power and energy systems, including a 500MW battery energy storage system (BESS), a 370MW pipeline, and a seven-year toll for grid-scale BESS projects. These deals demonstrate growing investor confidence in the country's renewable energy sector. The announcements are part of a broader trend towards increased investment in Germany's energy infrastructure.
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Key Takeaways
- A 500MW BESS has been secured for Germany, contributing to the country's efforts to integrate increasing amounts of renewable energy into its grid.
- Alpiq has announced plans to develop a 370MW pipeline, further highlighting the growth of infrastructure projects supporting Germany's transition to low-carbon energy sources.
- The seven-year toll agreement between Next Kraftwerke and ju:niz Energy will provide stability for BESS projects in Germany, helping to ensure the reliable operation of grid-scale energy storage systems.
Summary
The energy storage industry aimed to install 35 gigawatts of grid technology in the US by 2025, but surpassed this goal with an impressive installation rate, marking a significant milestone for the sector.
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Key Takeaways
- The energy storage industry achieved a remarkable installation of more than 37.4 gigawatts of new grid technology in the United States by 2023, exceeding its initial ambitious goal set for 2025.
- This success can be attributed to advancements in battery technology, decreasing costs, and growing demand for renewable energy sources, which have driven investment and innovation in the sector.
- The rapid growth of energy storage has had a positive impact on grid stability, peak demand management, and overall efficiency, contributing to a more reliable and resilient power grid.
Summary
The Federal Energy Regulatory Commission (FERC) has reported that renewables made up 88% of new US power generating capacity as of September 2025. Solar energy accounted for over 75% of the new capacity added, marking the 25th consecutive month where solar led among all energy sources. This trend indicates a significant shift towards renewable energy sources in the US power generation sector.
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Key Takeaways
- Solar energy has become the leading source of new power generating capacity in the US, accounting for over 75% of the new capacity added as of September 2025.
- The mix of all renewables is on track to exceed 40% of installed capacity within three years, with solar alone potentially reaching 20%.
- For the fifth consecutive month (as of September), wind has also been a leading source of new power generating capacity in the US.
Summary
ABB has acquired the power electronics division of Gamesa Electric, a leading manufacturer of solar PV and wind inverter systems. The acquisition marks ABB's expansion into the renewable energy sector, highlighting its growing interest in clean energy technologies. This move is expected to enhance ABB's offerings in the power conversion system market.
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Key Takeaways
- ABB has acquired Gamesa Electric's power electronics division, expanding its presence in the renewable energy sector.
- The acquisition strengthens ABB's position in the market for solar PV and wind inverter systems, as well as battery storage power conversion systems.
- This move is part of ABB's broader strategy to capitalize on emerging trends in clean energy technologies, such as solar and wind power.
Summary
According to the US Energy Information Administration's data, solar and battery storage have outpaced growth among other energy sources in the first nine months of 2025, with fossil fuels and nuclear power showing stagnant growth. This trend suggests a shift away from traditional energy sources towards renewable energy options. The rise of solar and storage systems may indicate a significant change in the US energy landscape.
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Key Takeaways
- Solar and battery storage have dominated growth among competing energy sources.
- Fossil fuels and nuclear power have stagnated, indicating a decline in their share of energy production.
- This trend suggests a shift towards renewable energy options and away from traditional energy sources.
Summary
Panasonic is testing a PV-driven hydrogen platform in Germany, where an AI-based energy management system has made battery storage unnecessary. The system uses Panasonic PH3 fuel cells and renewable energy generators to provide power to the facility. This setup reduces upfront costs and physical footprint compared to traditional systems.
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Key Takeaways
- Panasonic's HX hydrogen solution is being tested at its Munich facility, utilizing an AI-based energy management system (EMS) that eliminates the need for battery storage due to minimal fluctuations in renewable energy generation.
- The AI-powered EMS performs real-time fuel cell control to optimize energy usage, reducing costs and physical footprint compared to traditional systems that require battery storage.
- Avoiding battery installation reduced upfront costs and physical space requirements, making this system a more efficient and cost-effective solution for the Munich facility.
Summary
The Fraunhofer Institute for Solar Energy Systems (Fraunhofer ISE) has developed a new method to quantify photovoltaic self-consumption in Germany, revealing a sharp increase in the practice. This method uses national register and grid-operator data to estimate the level of self-consumption, which has grown significantly over the past few years. The results show that self-consumption accounted for 17% of net electricity generation from photovoltaics in 2024.
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Key Takeaways
- Self-consumption of solar power has increased sharply in Germany, with estimates suggesting 8.20 TWh in 2023 and 12.28 TWh in 2024.
- The growth of self-consumption is driven by the high electricity costs in Germany, making it a valuable incentive for households and businesses to consume generated solar power directly or store it in battery systems.
- The new method developed by Fraunhofer ISE provides a more accurate picture of photovoltaic self-consumption, accounting for 17% of net electricity generation from photovoltaics in 2024.
Summary
Skeleton Tech, an Estonia-based high-power energy storage startup, has established two European production plants to cater to the growing demand for its solutions in the AI boom. This move indicates a significant expansion of the company's manufacturing capabilities to meet the increasing need for high-power energy storage in Europe. By setting up these plants, Skeleton Tech aims to capitalize on the surge in AI-related power requirements.
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Key Takeaways
- Skeleton Tech has established two European production plants in Estonia, marking a significant expansion of its manufacturing capabilities.
- The company is well-positioned to cater to the growing demand for high-power energy storage solutions in Europe, driven by the AI boom.
- This move suggests that Skeleton Tech is strategically positioned to benefit from the increasing need for reliable and efficient power supplies in AI-related applications.
Summary
ConnectDER, a US startup, is introducing meter socket adapters to millions of households, aiming to reduce the cost of rooftop solar, home energy storage, and EV charging stations by making it easier to transition away from fossil fuels.
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Key Takeaways
- ConnectDER's meter socket adapters are expected to help reduce the cost of transitioning to renewable energy sources such as rooftop solar and home energy storage.
- The adapters can also facilitate the adoption of electric vehicles (EVs) by providing a convenient way to charge them at home.
- By making it easier for households to switch to clean energy, ConnectDER's solution aims to accelerate the transition away from fossil fuels.
Summary
RWE Clean Energy has commissioned the Stoneridge Solar PV project in Texas, which adds 200MW of solar PV and a 100MW/200MWh energy storage system (BESS) to its operational portfolio. This move reinforces RWE's commitment to renewable energy sources. The project is expected to contribute to a more sustainable energy mix.
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Key Takeaways
- RWE has expanded its presence in the US market with the commissioning of the Stoneridge Solar PV project, which marks an addition of 200MW of solar power capacity.
- The project also features a 100MW/200MWh BESS, demonstrating RWE's focus on integrating energy storage solutions to enhance grid resilience and flexibility.
- This new project is part of RWE Clean Energy's broader efforts to transition its portfolio towards renewable energy sources, contributing to the company's net-zero emissions goals.
Summary
A Rockefeller Foundation study suggests that nuclear energy can contribute 20% of electricity generation in eight key emerging economies by 2050, and philanthropy plays a crucial role in making this vision a reality. The study highlights the potential for philanthropic support to catalyze growth in nuclear energy. This initiative aims to address global energy needs while promoting sustainable development.
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Key Takeaways
- Nuclear energy has the potential to contribute significantly to electricity generation in emerging economies by 2050.
- Philanthropy can play a "catalytic role" in supporting the growth of nuclear energy in these countries, with the Rockefeller Foundation study being a key example.
- The initiative aims to balance global energy needs with sustainable development goals, addressing pressing concerns such as climate change and energy access.
Summary
Innofreight and voestalpine Tubulars have launched the H2Tainer, a 40-foot stackable unit designed to simplify hydrogen storage and logistics on rails and roads. The container holds up to 475 kg of gaseous hydrogen and is built with proprietary VAhyper fittings for high-pressure handling. This innovative solution aims to support the growing demand for green hydrogen in various industries.
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Key Takeaways
- The H2Tainer is a stackable unit that can hold up to 475 kg of gaseous hydrogen, making it an efficient solution for logistics and transportation.
- The container features proprietary VAhyper fittings that can handle high pressures of up to 500 bar without leaking, ensuring safe storage and transportation of hydrogen.
- The H2Tainer's design is adaptable to both flatbeds and rail wagons, allowing for easy switching between modes of transportation and facilitating the last-mile push in the logistics chain.
Summary
The Municipality of Shuniah in Ontario, Canada has denied support for a proposed 400MW/3.2GWh long-duration energy storage project by PowerBank ahead of an impending request for proposal (RFP) deadline from the Independent Electricity System Operator (IESO). The decision was made after careful consideration and evaluation of the project's merits. This setback may impact PowerBank's ability to secure funding for the project.
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Key Takeaways
- The Municipality of Shuniah denied support for a 400MW/3.2GWh long-duration energy storage project proposed by PowerBank, citing unspecified reasons.
- The denial comes ahead of an impending RFP deadline from the IESO, which may impact PowerBank's chances of securing funding for the project.
- This decision is significant as it highlights the importance of securing support from municipalities and regulatory bodies in large-scale energy projects.
- Long-duration energy storage projects like this one are crucial for addressing grid resilience and stability challenges.
Summary
Hyundai Steel has unveiled a $6 billion, hydrogen-ready steel mill in Louisiana, which will produce 2.7 million tonnes of steel annually while aiming to drive emissions toward near zero. The mill is designed to use natural gas with carbon capture initially and then switch to green hydrogen from renewable-powered electrolysis. This project is part of Hyundai Motor Group's $26 billion investment roadmap for 2025-2028.
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Key Takeaways
- Hyundai Steel is investing $6 billion in a hydrogen-ready steel mill in Louisiana, which will use Direct Reduced Iron (DRI) and Electric Arc Furnace (EAF) technologies to produce low-carbon steel.
- The mill plans to initially use natural gas with carbon capture and then transition to 100% green hydrogen from renewable-powered electrolysis by late 2029.
- This project is a significant move by Hyundai Motor Group toward ultra-low-carbon manufacturing in the US, as part of its $26 billion investment roadmap for 2025-2028.