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In an interesting plot twist, the same Ford plant used to make vehicle engines is now using the technology that powers EVs to reduce the facility’s carbon footprint.

Ford is partnering with Convergent Energy and Power, an energy-storage-solutions provider, to use lithium-ion battery technology to reduce its carbon emissions.

Convergent uses artificial intelligence (AI) powered battery storage to help companies reduce their carbon footprint while lowering energy costs. Since its founding in 2011, Convergent has continuously progressed the battery-energy-storage market forward, insisting it can play a vital role in the transition to a clean energy future.

As the need to cut reliance on fossil fuels continues to become more evident with an escalating global energy crisis, the company is developing energy storage and solar-plus-storage (solar PV with added battery storage) systems that are helping pave the way for a cleaner future.

Convergent has committed over $500 million for energy storage and solar-plus-storage (500 MW/800 MWh) capacity in operation or under development.

Ford’s Essex engine plant in Windsor, Ontario, will utilize a (4 MW/8 MWh) battery energy storage system to power a portion of the facility while power consumption is highest. Thomas Reeber, Plant Manager at Ford Essex, talks about how the new energy solution can help the facility, grid, and community:

The battery storage system provided by Convergent Energy and Power is a strong example of how batteries can support the auto industry at the plant level while also supporting the electric grid serving Ford and the surrounding community.

The new energy solution from Convergent is a first for Ford, but with automakers looking to reduce costs (and, more importantly, their carbon footprint) where they can, this may be the start of a new trend.

Ford-EVs-carbon-footprint-1
Convergent Energy and Power’s battery storage system for Ford Motor Company’s Essex plant Source: Business Wire

Electrek’s Take

It is interesting to see a facility that builds gas engines implementing EV battery tech to help reduce its carbon footprint and save on energy costs.

Meanwhile, energy storage can help maximize the benefits of renewable energy. For example, electricity rates are highest during the most in-demand hours and, perhaps more importantly, the most carbon-intensive times.

The reason for this is that when energy demand is high, the current solution to meet it is by using outdated gas “peaker plants” that are inefficient, more expensive to operate, and generate higher carbon emissions.

They are called peaker plants because they generally only run when electricity demand peaks. The US relies on over 1,000 natural gas and oil-fired peaker power plants.

However, battery storage solutions paired with renewable energy, such as those provided by Convergent, can allow grid flexibility to lower costs and reduce air pollution.

Tesla and Elon Musk have deployed and suggested several Megapack projects to avoid adding new peaker plants while providing stationary energy-storage solutions instead.

The more energy-storage options available, the less we need to rely on fossil fuels. The ability to store energy captured from renewables like solar or wind can help ease the transition to a clean energy sector.

For example, less than 25% of proposed large-scale renewable energy projects become commercially operational because of transmission hurdles. Battery storage and renewable energy can help solve this issue while lowering energy costs and reducing air pollution.

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World’s largest EV maker unveils new sodium battery electric motorbikes

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World's largest EV maker unveils new sodium battery electric motorbikes

Yadea, which has claimed the title of the world’s largest electric vehicle maker for seven years running, has just announced a new electric motorbike powered by the company’s innovative HuaYu sodium-ion battery technology.

Yadea has long dominated the electric two-wheeler and three-wheeler market globally, but has generally relied on both lithium-ion and lead acid batteries to power its vehicles in different markets.

The newly unveiled electric scooter uses Yadea’s recently introduced sodium battery technology, offering what the company says is outstanding performance in range, charging speed, and safety. Using the HuaYu Sodium Superfast Charging Ecosystem presented by Yadea, the battery can reach 80% charge in just 15 minutes, providing greater convenience for riders.

Yadea’s sodium battery has successfully passed more than 20 safety tests, many focusing on its resistance to fire and explosions under extreme conditions like punctures and compression.

Yadea’s new sodium battery offers an energy density of 145 Wh/kg and a lifespan of up to 1,500 cycles at room temperature, with the company rating it for a five-year useful lifespan. It also includes a three-year warranty for added assurance.

With excellent low-temperature capabilities, the battery retains over 92% of its discharge capacity at -20°C, making it well-suited for colder climates.

Sodium batteries present major advantages

Most electric vehicles used in the West, especially electric two-wheelers, rely on lithium-ion batteries for their high energy density. But sodium-ion batteries offer many benefits over traditional lithium-ion batteries.

Sodium is an abundant element on the planet and is easily accessible, unlike lithium, which is concentrated in specific regions and often expensive to extract. This abundance can make sodium-ion batteries cheaper to produce, reducing costs for EV manufacturers and potentially making electric vehicles more affordable.

Lithium mining also has environmental challenges, such as water depletion and habitat destruction. Sodium, on the other hand, can be sourced from seawater or common salts, offering a more sustainable and environmentally friendly option.

Sodium-ion batteries are less prone to overheating and thermal runaway compared to lithium-ion batteries. This makes them inherently safer for electric vehicles, reducing the risk of fires and improving consumer confidence in EV technology.

Sodium-ion batteries perform better than lithium-ion in cold climates. Lithium-ion batteries struggle with capacity retention in freezing conditions, but sodium batteries maintain efficiency, making them ideal for EVs in colder regions.

Sodium batteries still have challenges to overcome

While sodium-ion batteries are promising, they currently have a lower energy density than lithium-ion batteries, meaning they store less energy per unit of weight.

For EVs, this translates to shorter driving ranges for the same-sized battery. That’s especially important in electric two-wheelers like motorbikes and electric bicycles, which don’t have much extra space for storing bulky batteries.

However, advancements in cathode materials and battery architecture are quickly closing this gap, which Yadea has demonstrated. These sodium-ion batteries still can’t match the energy density of lithium-ion batteries, but as they continue to improve their energy density, the technology’s other major advantages provide encouraging signs for larger adoption in the industry.

Yadea’s status as a major electric motorbike maker also means that its adoption of sodium-ion battery technology could help lead the entire industry towards this battery chemistry, bringing safety and performance benefits along with it.

Last year I had the unique opportunity to visit one of Yadea’s global manufacturing sites.

To see inside the company’s massive and highly-automated manufacturing processes, check out the video below!

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CES2025 | John Deere autonomous mower promises a perfect cut, every time

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CES2025 | John Deere autonomous mower promises a perfect cut, every time

At CES2025, the impressively built-out John Deere exhibit was all about automation. Autonomous job sites, autonomous farms … but it was this new, battery electric, autonomous lawn mowing robot that stole the show.

The self-driving Deere mower robot was positively dwarfed by the giant farm machinery surrounding it, but it continues to prove that humans will pack bond with anything as more than one burly-looking and grizzled man asked what its name was. (It’s Howard. I’ll fight you.)

For his part, Howard packs a 21.4 kWh battery pack that runs a suite of electric motors that includes a drive motor and three cutting blade motors spread across a 60 inch cutting deck – but it’s not the electric motors that make John Deere’s little robot mower cool, it’s the way it works.

See, instead of using “just” GPS data or “just” repeating a pre-recorded run, Howard can do something in between. The way it was explained to me, you would ride the stand-up mower around the perimeter of the area you wanted to mow, select a pattern, then hop off, fold up the platform, and let it loose. Howard mows just the way you would, leaving you to focus on edging, planting, or (let’s face it) schmoozing with the clients.

It’s exactly the sort of help landscapers are looking for.

But that should come as no surprise, of course. John Deere, perhaps more than most companies, knows its customer. “We’ve been in the turf business for 60 years — it’s a core part of Deere,” says Jahmy Hindman, chief technology officer at John Deere, explaining things beautifully. “The work that’s being done in this industry is incredibly labor intensive … they’re not just doing the mowing work. They’re doing the tree trimming, maintaining flowerbeds and all these other jobs. The mowing is table stakes, though, for them to get the business. It’s the thing they have to do in order to get the higher value work.”

Tim Lewis, lead engineer with the commercial automatous mower, told Lawn & Landscape that the industry in general has a high turnover rate as well, making it difficult to hang to people who know where one job ends and another begins. “There’s a lot of nuances it takes to do these jobs effectively,” he explains, “so “Autonomy can help with that.”

The John Deere autonomous commercial mower (there’s no snazzy alphanumeric, yet) leverages the same camera technology as other Deere autonomous machines, but on a smaller scale (since the machine has a smaller footprint). With two cameras each on the front, left, right, and rear sides of the little guy, he has a 360-degree view of the world and enough AI to lay down a pattern, avoid an obstacle, and shut off if it thinks it’s about to mow down something (read: someone) it shouldn’t.

John Deere will have Howard on display through tomorrow at CES in the LVCC’s West Hall. If you’re in town, be sure to go say hi.

John Deere CES2025

SUOURCE | IMAGES: John Deere; Electrek.

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Tesla sales fall, Honda brings back ASIMO, and a bunch of stuff from CES2025

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Tesla sales fall, Honda brings back ASIMO, and a bunch of stuff from CES2025

Despite big discounts and 0% financing, Tesla sales are down for the first time in a decade … but there’s even bigger robot news with the return of Honda ASIMO, a flying car from China, and a whole lot more from today’s episode of Quick Charge!

CES2025 was all about AI – and not just what AI could do, but what AI could do for you. That’s where ASIMO comes in, helping everyone have a better time in there car and not at all just a modern day version of KITT dreamed up by a bunch of Gen X executives (wink, wink). We also cover some neat stuff from Suzuki, Aptera, Volvo, and more. Enjoy!

Prefer listening to your podcasts? Audio-only versions of Quick Charge are now available on Apple PodcastsSpotifyTuneIn, and our RSS feed for Overcast and other podcast players

New episodes of Quick Charge are recorded, usually, Monday through Thursday (and sometimes Sunday). We’ll be posting bonus audio content from time to time as well, so be sure to follow and subscribe so you don’t miss a minute of Electrek’s high-voltage daily news!

Got news? Let us know!
Drop us a line at tips@electrek.co. You can also rate us on Apple Podcasts and Spotify, or recommend us in Overcast to help more people discover the show.

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