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Solar generated 11% of EU electricity in 2024, overtaking coal which fell below 10% for the first time, according to the European Electricity Review published today by think tank Ember.

EU gas generation declined for the fifth year in a row, and total fossil generation fell to a historic low.

“Fossil fuels are losing their grip on EU energy,” said Dr Chris Rosslowe, senior analyst and lead author of the report. “At the start of the European Green Deal in 2019, few thought the EU’s energy transition could be where it is today; wind and solar are pushing coal to the margins and forcing gas into structural decline.”

The European Electricity Review published today by global energy think tank Ember provides the first comprehensive overview of the EU power system in 2024. It analyzes full-year electricity generation and demand data for 2024 in all EU-27 countries to understand the region’s progress in transitioning from fossil fuels to clean electricity.

Wind and solar continue their meteoric rise in the EU

The EU power sector is undergoing a deep transformation spurred on by the European Green Deal. Solar generation (11%) overtook coal (10%) for the first time in 2024, as wind (17%) generated more electricity than gas (16%) for the second year in a row.

Strong solar growth, combined with a recovery of hydropower, pushed the share of renewables to nearly half of EU power generation (47%). Fossil fuels generated 29% of the EU’s electricity in 2024. In 2019, before the Green Deal, fossil fuels provided 39% of EU electricity, while renewables provided 34%.

Solar is growing in every EU country and more than half now have either no coal power or a share below 5% in their power mix. Coal has fallen from being the EU’s third-largest power source in 2019 to the sixth-largest in 2024, bringing the end into sight for the dirtiest fossil fuel. EU gas generation also declined for the fifth year in a row (-6%) despite a very small rebound in power demand (+1%). 

The EU is reaping the benefits of reduced fossil fuel dependency

The surge in wind and solar generation has reduced the EU’s reliance on imported fossil fuels and its exposure to volatile prices since the energy crisis. Ember’s analysis found that without new wind and solar capacity added over the last five years, the EU would have imported an additional 92 billion cubic meters of fossil gas and 55 million tonnes of coal, costing €59 billion. 

“While the EU’s electricity transition has moved faster than anyone expected in the last five years, further progress cannot be taken for granted,” continued Rosslowe. “Delivery needs to be accelerated particularly in the wind sector, which has faced unique challenges and a widening delivery gap. Between now and 2030, annual wind additions need to more than double compared to 2024 levels. However, the achievements of the past five years should instil confidence that, with continued drive and commitment, challenges can be overcome and a more secure energy future be achieved.” 

Walburga Hemetsberger, CEO of SolarPower Europe said: “This milestone is about more than just climate action; it is a cornerstone of European energy security and industrial competitiveness. Renewables are steadily pushing fossil fuels to the margins, with solar leading the way. We now need more flexibility to kick-in, making sure the energy system is adapting to new realities: more storage and more smart electrification in heating, transport and industries.”

Read more: China installed a record capacity of solar and wind in 2024 – in numbers


If you live in an area that has frequent natural disaster events, and are interested in making your home more resilient to power outages, consider going solar and adding a battery storage system. To make sure you find a trusted, reliable solar installer near you that offers competitive pricing, check out EnergySage, a free service that makes it easy for you to go solar. They have hundreds of pre-vetted solar installers competing for your business, ensuring you get high quality solutions and save 20-30% compared to going it alone. Plus, it’s free to use and you won’t get sales calls until you select an installer and share your phone number with them.

Your personalized solar quotes are easy to compare online and you’ll get access to unbiased Energy Advisers to help you every step of the way. Get started here. –trusted affiliate link*

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ZeroAvia scores 45 fresh patents for hydrogen aviation engines

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ZeroAvia scores 45 fresh patents for hydrogen aviation engines

Aviation startup ZeroAvia says it’s been granted a “raft” of 45 new patents key to the development of practical large hydrogen aviation engines – and the company says it has 200 more H-related patents in the pipeline!

The news comes just weeks after ZeroAvia and Scottish regional airline Loganair announced a new, hydrogen-electric “turboprop” replacement motor capable of up to 5MW of shaft horsepower (~6,700 hp). United States Patent and Trademark Office (USPTO) no. 12,341,225 covers an integrated hydrogen-electric engine design land is key to the development of a modular multi-MW hydrogen-electric engine for the ATR 42 and 72 model aircraft — which Loganair owns more than twenty of.

ATR isn’t the only potential customer ZerAvia is eyeballing, either. Despite hydrogen losing ground on utility-scale projects and more companies realizing that it’s “impossible” for hydrogen to compete as a transportation fuel, the fuel still seems to have some practical application in the aviation space. Both Airbus and Boeing have advanced plans and IP for hydrogen-ready airframes in recent weeks, as well, making the IP for large hydrogen-powered aviation engines that much more valuable.

“Recent patents filed and granted around hydrogen aviation give a window into an accelerating field of innovation,” explains Val Miftakhov, Founder and CEO, ZeroAvia. “As we see the large airframe manufacturers beginning to compete on technologies for hydrogen aircraft, there is a big opportunity for companies pioneering hydrogen propulsion systems. These are the inventions that will deliver truly clean, more affordable and highly efficient commercial air travel.”

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What it’s all about


ZA2000 2-5MW modular hydrogen-electric powertrain for 40-80 seat regional turboprops
ZA2000 2-5MW aviation engine; via ZeroAvia.

Like many tech-based startups, securing IP has been an integral part of ZeroAvia’s strategy, with the value of its patents being, essentially, the value of the company. Just as – if not more important to airlines like Loganair, American, and EcoJet, however, are the potential cost-savings of hydrogen compared to conventional aviation fuels like kerosene.

Importantly, these novel engines promise cost reductions for airlines. The substantially lower maintenance needs of hydrogen-electric engines will mean a decrease in maintenance and downtime for an airline’s fleet, with hydrogen fuel also projected to be significantly more cost effective than kerosene over time.

ZEROAVIA

You can read more about the new ZA600 and ZA2000 hydrogen-electric av motors here, and let us know what you think of hydrogen’s chances against traditional, kerosense-based aviation fuels in the comments.

SOURCE | IMAGES: ZeroAvia.


If you’re considering going solar, it’s always a good idea to get quotes from a few installers. To make sure you find a trusted, reliable solar installer near you that offers competitive pricing, check out EnergySage, a free service that makes it easy for you to go solar. It has hundreds of pre-vetted solar installers competing for your business, ensuring you get high-quality solutions and save 20-30% compared to going it alone. Plus, it’s free to use, and you won’t get sales calls until you select an installer and share your phone number with them. 

Your personalized solar quotes are easy to compare online and you’ll get access to unbiased Energy Advisors to help you every step of the way. Get started here.

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100 MPH on a STANDING e-scooter?! Bo blows way past the limits

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100 MPH on a STANDING e-scooter?! Bo blows way past the limits

You might want to hold onto your handlebars for this one – literally. The fashion-forward British electric scooter maker Bo just unveiled what could be the most extreme electric scooter the world has ever seen. Named The Turbo, this standing e-scooter isn’t just playing around with speed – it’s aiming to smash right through it and find out what’s waiting on the other side.

And it all begs the question, “How much is too much?”

When we talk about fast electric scooters, we’re usually in the neighborhood of 50 mph (80 km/h). But the Bo Turbo doubles those numbers.

With 100 mph+ (160+ km/h) top speeds and claimed acceleration that’s faster than a Tesla, this scooter seems to use a design philosophy pulled straight from the playbook of Formula One. Thus, it should come as no surprise that the team behind The Turbo includes engineers with experience from Williams F1 and the Bloodhound Land Speed Record rocket car.

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Bo Turbo looks at home in the Bo-nnevile salt flats

The world’s fastest e-scooter?

Built on the same base chassis as the company’s sleek road-going Bo Model-M, The Turbo takes everything up a notch – actually, several notches. It features a 24,000 W dual-motor powertrain, 1,800 Wh battery, advanced traction control, and a power-to-weight ratio that reportedly beats a Bugatti Veyron.

At full power, the system is capable of propelling riders down a straightaway at three-digit speeds while standing upright. It’s absurd. It’s glorious. It’s gratuitous. It’s a dream. Or it’s a nightmare.

Bo says the machine is already delivering 85+ mph (137+ km/h) in early track testing at Goodwood Motor Circuit and is currently in development to push beyond the 100 mph barrier under Guinness World Record supervision.

And just in case you’re wondering if this is some experimental prototype cooked up in a lab – it’s not. The company is planning a limited run of built-to-order Turbo scooters, starting at a whopping $29,500. The first one is scheduled for delivery to a collector in Madrid during the 2026 Formula One race weekend.

The Bo Turbo shares the same chassis as the more mild-mannered Bo M scooter

From F1 brake ducts to street scooter DNA

Despite the headline-grabbing speed numbers, there’s a ton of serious engineering going on here. The Turbo uses ram-air intakes based on F1 brake cooling designs to keep the motors and controllers from overheating. The chassis – made from aerospace-grade aluminum and CNC-machined billet parts – is based on Bo’s proven Monocurve platform, the same structure that underpins the Bo Model-M. In fact, that might be the most impressive part of all, that the same chassis used underneath their everyday-ride-it-to-work Bo Model-M scooter is also holding together this 100 mph beast.

Bo’s team insists that despite the monster specs, The Turbo remains “surprisingly rideable.” Professional BMX rider Tre Whyte has piloted over 20 high-speed test runs, with the team now preparing to push the envelope even further.

A wild PR stunt – or something more?

It’s tempting to see The Turbo as just a headline machine (and hey, it works), but Bo says this project is about more than just chasing speed records. According to Bo CEO Oscar Morgan, “The Turbo is part of our mission to elevate these futuristic electric vehicles into the top tier of automotive performance.”

And honestly, they’ve got a point. E-scooters have exploded in popularity as low-speed urban vehicles, but the category rarely gets taken seriously in the performance world, despite the advent of racing leagues. Bo wants to change that – and they’re using motorsport technology to do it.

Electrek’s Take

Is this a practical daily rider? Absolutely not. But that’s not the point.

Bo is doing what so few e-scooter companies are willing to do – pushing boundaries, proving performance, and trying to make scooters feel exciting, not just functional. Whether The Turbo hits 100 mph or not, it’s already helped raise the bar for what electric micromobility can be. And if that means they develop safer and stable ways to build scooters along the way, then all the better.

The fact that they actually plan to sell these is a bit worrying, though the $30k pricetag means the local teens on your street aren’t going to be terrorizing the sidewalks with them. Well, not unless you’ve got an oil sheikh and his teenagers living on your street.

But hey, if you’ve got thirty grand and a need for painful death levels of speed – maybe this is your next toy.

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Chevron defeats Exxon in dispute over Guyana oil assets, clearing path for Hess acquisition

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Chevron defeats Exxon in dispute over Guyana oil assets, clearing path for Hess acquisition

Chevron prevails in mediation over Exxon in Guyana oil assets

Chevron has prevailed against Exxon Mobil in a dispute over Hess Corporation’s offshore oil assets in the South American nation of Guyana, Exxon CEO Darren Woods told CNBC’s Becky Quick on Friday.

The ruling by the International Chamber of Commerce in favor of Chevron clears the way for the oil major to complete its $53 billion acquisition of Hess Corporation.

Chevron shares jumped about 3% in premarket trading.

“We disagree with the ICC panel’s interpretation but respect the arbitration and dispute resolution process,” Exxon said in a statement Friday.

The dispute had created significant uncertainty over whether Chevron’s acquisition of Hess would close, weighing on the oil major’s stock performance. The transaction would have failed if Exxon had prevailed.

Exxon and China National Offshore Oil Corporation had filed an arbitration case with the ICC, claiming a right of first refusal over Hess’s assets in the Stabroek Block, an oil development off the coast of Guyana.

Hess has a 30% stake in an oil patch, while Exxon leads the project with a 45% stake and CNOOC maintains 25% stake.

“We welcome Chevron to the venture and look forward to continued industry-leading performance and value creation in Guyana for all parties involved,” Exxon said.

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