Electric school buses are driving major growth in the vehicle-to-everything (V2X) market, with capacity expected to double to 40 megawatts (MW) by 2025, according to a new report from Wood Mackenzie.
The report, titled “Power from the People: The State of the Vehicle-to-Everything (V2X) Market,” spotlights electric school buses as the key players behind this expansion. Their predictable schedules, large batteries, and plenty of downtime make them ideal for V2X applications.
Even with this promising outlook, the report points out a few roadblocks that still stand in the way of widespread V2X adoption, such as unclear utility interconnection processes and a lack of effective compensation mechanisms.
V2X technology, which lets vehicles feed power back into the grid, is currently concentrated among a small number of US companies. Some are focused exclusively on commercial or residential applications, while others cover multiple segments.
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At the same time, energy companies in Europe are busy forming partnerships to explore V2X business models, with a big emphasis on interoperability and scaling up the technology. Plus, regulatory support and utility incentives for vehicle-to-grid applications are steadily gaining momentum.
“V2X technology has huge potential to boost grid flexibility and create valuable new streams of revenue, but it’s still early days,” said Elham Akhavan, a senior research analyst at Wood Mackenzie. According to Akhavan, as utilities and regulators sort out compensation and connection details, we’ll likely see adoption rates jump—especially in commercial and fleet markets.
More vehicles are now offering bidirectional charging, both in AC and DC formats, laying the groundwork for broader V2X adoption. However, Oliver McHugh, another senior analyst at Wood Mackenzie, highlights that to achieve mass-market scale, we’ll need to standardize charging protocols and bring hardware costs down significantly.
McHugh also notes there’s still debate about whether AC or DC charging will eventually dominate. “AC charging is cheaper in terms of infrastructure, but DC is leading the way in pilot projects,” McHugh explained. AC charging faces some technical challenges since the inverter is built into the vehicle itself, whereas DC charging is somewhat similar to connecting solar PV systems, although even this has its limitations.
Looking forward, many passenger EVs coming out in 2025 will include vehicle-to-load (V2L) features, which are often seen as a stepping stone to wider adoption of AC V2X technology.
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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.
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.
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.
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!
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John Deere is quick to point out that these new GX side-by-side utility vehicles are not golf carts. Fair enough – while they;re not quite in the same go-anywhere league as Deere’s TH 6×4 Gas or TE 4×2 Gators, the Gator GX and GX Crew offer more than enough capability to handle just about anything you’ll find on a typical campus, golf course, or job site.
To that end, the sturdy composite dump bed, comfortable and supportive high-back foam seats seem credible enough at first glance. And, if you give the new Deere UTVs a second glance, you’ll see a 367-L (13-cu ft) cargo box can haul more than 800 lbs. (~365 kg) of mulch, nursery plantings, building supplies, firewood, animal feed, or tools.
These are serious machines, in other words, ready to get down and do some serious work, but without the noise, vibration, and harmful exhaust emissions of gas.
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“The Gator GX lineup offers property owners the opportunity to increase productivity around their properties with less noise, less maintenance and more versatility,” said John Deere Go To Market Manager Eric Halfman. “These utility vehicles are intuitive and durable while offering users the comfort, reliability and convenience they expect from a John Deere Gator.”
The key component in the new GX and GX Crew is the new, 5.4 kWh, 51.2V lithium-ion battery that sends power to a high-efficiency electric drive motor with responsive torque and smooth acceleration. An onboard charger allows for convenient charging anywhere with a standard, grounded 120 outlet, eliminating the need for handling fuel or trips to the gas station and fully charging the 5.4 kWh battery over night, with more than 8 hours of continuous operation on tap that’s extendable with clever use of the new Deere’s regenerative braking.
These new electric Gators are available in classic John Deere green or grey metallic, and start at $17,499 with a whole suite of available accessories to make upfitting a breeze. The company says they’ll be available for order at your local John Deere TriGreen dealer in Q1 of 2026.
Electrek’s Take
I imagine that applying the Gator name to a vehicle that I’d call a glorified golf cart makes me feel something similar to what the Mustang guys feel whenever they see a Mach-E drive past. As such, I’ll give myself the same advice I give them: the people who make the thing decide what makes it worthy of the name, not you.
As such, I’d better get used to it. The good news there, of course, is that it seems like Deere’s latest Gator is going to be more than good enough to win me over. Eventually.
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GM has scrapped plans to build $55 million hydrogen fuel cell factory in Detroit, triggering a tsunami of headlines about the General’s future plans for hydrogen. The reality? GM isn’t scaling back its hydrogen efforts. It’s thinking bigger.
Like the great Sam Clemens, there seems to be plenty of confidence in the greater automotive press that GM’s decision to cancel a $55 millions fuel cell plant on the former Michigan State Fairgrounds site in Detroit. That plant, a JV with Southeast Michigan’s Piston Automotive, would have created ~140 jobs and built compact hydrogen fuel cells for light- and medium-duty vehicles under the Hydrotec brand.
The new Trump Administration put an end to that flow last week, however, terminating 321 financial awards for clean energy worth $7.56 billion.
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“Certainly the decisions of the DOE are an element of that overall climate but not the only driver,” explained GM spokesperson, Stuart Fowle, in a statement. “We want to prioritize the engineering talent and resources and everything we have to continuing to advance EVs given hydrogen is in a different spot.”
That spot is heavy-duty, off-highway, maritime, and data centers.
Bigger trucks, bigger fuel cells
Fuel cell semi truck; via Honda.
Instead of dying, GM is continuing on the hydrogen fuel cell it’s been on for literal decades – with no plans (publicly, at least) to shutter its Fuel Cell System Manufacturing joint-venture with Honda in Brownstown Township, MI.
That company is not just developing HFCs, they’re out there selling fuel cells today, to extreme-duty, disaster response, and off-highway equipment customers operating far enough off the grid that access to electricity is questionable and to data center developers for whom access to a continuous flow of energy is mission-critical.
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