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We’ve talked a lot about the increasing spate of fires related to light electric vehicles, including e-bikes, e-scooters, and other micromobility devices. But one Southern California-based e-bike company is now doing something about it by upgrading all of their batteries with UL certification. Juiced Bikes is now one of the few e-bike companies to offer UL-listed batteries, though the number is slowly growing.

It’s important to remember that the fire risk in electric bikes is incredibly low. There are millions of e-bikes in the US, but just 200 fires were reported from e-bike batteries in 2021 and 2022.

Even so, the few fires that have been reported can spread quickly due to the nature of Li-ion battery fires, which burn much more intensely than a traditional fire.

There is currently no state or federal requirement in the US for e-bikes to come with safety certification for their batteries. That is why many in the industry are urging electric bike manufacturers to voluntarily undergo such certification.

Juiced Bikes, makers of popular high-performance electric bikes, has heeded the call. The company recently announced that all its electric bikes will have UL-compliant and certified batteries.

As CEO and founder of Juiced Bikes Tora Harris explained:

“From the beginning, we’ve prioritized the importance of using only the best and safest components to create our electric bikes.While we’re extremely proud of our own track record when it comes to the issue of e-bike safety, we urge prospective customers to understand the importance of UL certification and basic safety requirements when considering e-bike ownership.”

juiced ripracer e-bike

UL-certification for e-bike batteries isn’t just about making them fire-resistant, but also resistant to other forms of abuse or damage. The certification ensures that the battery has an airtight seal, taht the battery closure can hold up against impacts, direct heat, light rain, and the wiring has to be designed to protect against accidental shorting. UL certified batteries are also tested to ensure they can endure overcharging, over discharging, short circuiting and imbalanced charging. 

In addition to UL certification for just the batteries in Juiced e-bikes, the company is currently in the process of receiving UL 2849 certification for the complete e-bike electronics systems. This certification will be required by NYC later this year after a recent legislative move to combat increasing micromobility-related fires in the densely populated metropolitan area.

It’s a move that matches Juiced’s ethos, as the company has already gone above and beyond on many of its models’ safety features. Most e-bikes come with headlights and tail lights, but many of Juiced’s models include features like mirrors, turn signals, a loud motorcycle-style horn, high/low beams, brake lights, hydraulic brakes, and motorcycle-style tires.

With the number of miles that many e-bike riders put on their bikes, it makes sense for companies to invest further in vehicle-level safety features.

As Harris continued:

“The reality is that more and more riders are using e-bikes to replace car miles, so it’s critical that we provide them with as many features that enable them to ride safely, and confidently, in every type of riding environment. Our UL certification can give these riders peace of mind that they are using e-bikes certified with the most rigorous of safety testing.”

Because UL certification is expensive and rarely required, most e-bike companies don’t offer it. Many use other forms of safety testing, and there are an increasing number of UL-listed e-bikes available.

But for the most part, Juiced Bikes is joining a short list of companies offering UL-compliant electric bike batteries.

How important is UL certification when you are choosing between e-bike models? Let’s hear your thoughts in the comment section below.

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There’s a brewing risk to the stock market rally — and it’s not the flare-up in China trade tensions

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Clear skies ahead – Delta partners with Maeve on M80 hybrid regional aircraft

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Clear skies ahead – Delta partners with Maeve on M80 hybrid regional aircraft

Delta Air Lines is teaming up with Dutch aviation startup Maeve Aerospace to take its idea for a more advanced, fuel-sipping hybrid-electric aircraft powertrain from the drawing board and into regional commercial service.

Delta Air Lines announced a new partnership with Maeve Aerospace meant to accelerate certification and deployment of the startup’s next-generation hybrid-electric regional aircraft – a move that could reduce the company’s fuel consumption on those routes by up to 40% compared to ICE-only assets.

“Delta is proud to collaborate with Maeve to help shape the next chapter of regional aviation and accelerate progress toward a more sustainable future of flight,” said Kristen Bojko, Vice President of Fleet at Delta Air Lines. “As we work toward the next generation of aircraft, we look to partners like Maeve who embody the bold, forward-thinking innovation we champion at Delta – solutions that advance aircraft design, enhance operational efficiency, elevate employee and customer experiences, and cut emissions. While driving toward transformative technologies that strengthen our network and redefine regional air travel remains a key priority, we’re equally focused on safety and a more sustainable future of flight.”

The collaboration positions Delta among a growing list of carriers investing in lower-carbon emission aviation tech as regulators, passengers, and activist investors alike push for cleaner operations.

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Maeve M80 hybrid


M80 hybrid-electric regional aircraft; via Maeve.

Maeve introduced its M80 hybrid-electric, 80-seater aircraft in November of 2023 as a sustainable, cost-effective aircraft designed to satisfy the operational needs of the majority of regional operators and airports.

As designed, the M80 promises an operating range of more than 900 miles (~1,500 km) with 40% higher fuel efficiency than conventional aircraft. Similar in concept to the way Toyota’s Prius uses its electric motors to accelerate and cruises on a small ICE engine, the Maeve’s hybrid engine architecture provides additional electric power assistance at low altitude, high-drag flight.

The M80’s electric motors can also be used during taxiing operations on the ground to reduce surface-level carbon emissions while also supporting a more efficient integration of more electric aircraft systems. Two facets of the aircraft’s designs that are specifically called out by Delta’s press material as being of extreme interest to the commercial carrier.

“It’s a privilege to have Delta as a partner in the development of groundbreaking technologies and processes,” shared Martin Nuesseler, Chief Technology Officer at Maeve Aerospace. “Their expertise in fleet innovation and commitment to aviation sustainability is unmatched, and we’re proud to work together to tailor the MAEVE Jet for the US market.”

SOURCE | IMAGES: Delta.


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Hear me out: instead of faster chargers, we should lobby for SLOWER gas pumps

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Hear me out: instead of faster chargers, we should lobby for SLOWER gas pumps

Utilities, state governments, and private developers are racing to roll out faster, more powerful EV chargers. At the same time, automakers and tech giants across the globe are pouring billions into R&D to develop batteries that can take ever-higher levels of power. But what if there’s a better, easier, cheaper, and more effective way to cut emissions?

What if, instead of faster chargers, we pushed for SLOWER gas pumps?

I want to start this conversation by pointing out that there’s a precedent for this idea. Back in 1993, the Environmental Protection Agency (EPA) finalized a rule that limited the rate that gas service stations could pump fuel to a maximum of 10 gallons per minute (gpm), with the stated goals of reducing evaporative emissions and promoting safety by ensuring the integrity of the nation’s refueling infrastructure.

Officially dubbed “61 FR 33033 – Regulation of Fuels and Fuel Additives: Controls Applicable to Gasoline Retailers and Wholesale Purchaser-Consumers; 10 Gallon Per Minute Fuel Dispensing Limit Requirement Implementation,” the rule was finalized in January of 1993 and went into effect in 1996. Now, almost thirty years later, I think it’s time to revisit 61 FR 33033 in a way that helps reduce emissions even more.

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To zero.

The pitch


Gavin Newsom high-fives JB Pritzker; by ChatGPT.

The basic idea is this: instead of “just” asking for utility rate-payers and State or local governments to help cover the costs of rolling out an increasingly huge EV charging infrastructure that will never be big enough to convince the red hats it’s ready, anyway, we focus our lobbying efforts on slower gas pumps in blue states. Like, significantly slower gas pumps.

By reducing the maximum pumping speed from 10 gpm to 3 gpm, we could increase the minimum time to fill up a half-ton Ford F-150’s 36 gallon fuel tank (yes, really) from under four minutes to nearly twelve (12). Factor in the longer wait times ICE-vehicles would have to endure waiting in line to refuel, as well, and we’re talking about a 20-30 minute turnaround time to go from just 10% to a usable 80-or-90% fill.

Y’all see where I’m going with this?

Everybody wins


EV charging, via BP Pulse.

Way back in 2022, oil giant BP claimed that its BP Pulse electric vehicle chargers were “on the cusp” of being more profitable than its gas pumps. Now, three years and several technological leaps since, BP is investing billions to expand its EV charging infrastructure – and it doesn’t take a genius to realize that they’re expecting a positive ROI.

You don’t have to take my word for that, though. You can take big oil’s. “If I think about a tank of fuel versus a fast charge, we are nearing a place where the business fundamentals on the fast charge are better than they are on the (fossil) fuel,” BP head of customers and products, Emma Delaney, told Reuters.

Those fundamentals revolve around amenities. If you’re popping into a gas station for a three or four minute visit, you’re probably getting in and out as fast as you can. But if you’re there a bit longer? That’s a different story. You might visit the rest room, might buy a snack or order a coffee or suddenly remember you were supposed to pick up milk on your way home, even – and that stuff has a much higher margin for the gas station than the dino-juice, totaling 61.4% of all fuel station profits despite being a fraction of the overall revenue.

The other big winner, of course, is literally everyone. The forgotten costs of fossil fuels cost Americans billions in healthcare bills and environmental clean up each year, and untold trillions of dollars of military spending (to say nothing of the toll on three generations of American blood spilled in the Middle East to secure an affordable supply of oil).

With this plan, ICE-holes and Hemi zealots can continue to have their gas (if they decide it’s worth the wait, so be it). Meanwhile, the well-adjusted normals figure out real quick that it’s better, cheaper, and easier to charge at home.

The rest will take care of itself.

What do you guys think? Does this low-cost, high-impact idea to cut the time delta between refueling your gas car and recharging your EV have legs? What concerns do we need to address before we take it to Gavin and JB? Let us know, in the comments!

Original content from Electrek; featured image by Wikimedia user Coolcaesar, under the Creative Commons Attribution-Share Alike 3.0 Unported license.


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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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