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The Pike’s Peak International Hill Climb is in progress, and several EVs which set out to post new records have done so today, with the Rivian R1T and Ioniq 5N both claiming records, and the Ford SuperTruck being the fastest vehicle up the hill on the day.

The Pike’s Peak International Hill Climb is one of the longest-running races in the world, being held 102 times since 1916.

It’s a famously difficult race, starting at an already-high 9,390ft (2,862m) in elevation and finishing at 14,110ft (4,300m), with an average 7.2% vertical grade. Until 2011, the track was largely unpaved on dirt or gravel roads, and it is not uncommon for cars to leave the track and crash into the woods or, worse, end up tumbling down the mountain. The race is also commonly stopped by rain, snow, fog, or other inclement weather of the type you commonly get at the top of mountains.

In particular, the high altitude nature of the race (which earned it the nickname “Race to the Clouds”) has always been difficult, because at high altitudes there is less oxygen, which means less complete combustion of fuel. This means that gas-powered race vehicles need to have incredibly oversized engines to do well.

That difficulty does not apply to electric vehicles since EVs don’t need oxygen for combustion, so for years EVs have overperformed in the race. Currently the all-time record for the 12.42-mile (20km) hillclimb is 7:57.148, set by the Volkswagen ID.R in 2018. And this year, an EV (Acura ZDX) served as the pace car for the first time.

There were 3 notable electric entries this year: the new higher-powered Rivian R1T Ascend Quad Max in unmodified form, the Hyundai Ioniq 5N in both stock and modified specs, and the bonkers heavily-modified Ford F-150 Lightning SuperTruck. (All vehicles do have seats stripped from the interior and roll cages/fire extinguishers added for safety purposes, but this doesn’t change total vehicle performance much due to the weight of the roll cage).

Last year, Rivian set the record for production trucks, gas or electric, with a 11:23.983, also putting it ahead of past runs by the likes of Faraday Future and a Tesla P90D. But it wasn’t an electric production record, as that was held by a Model 3 Performance with an 11:02.802.

However, with the R1T’s 190hp power boost over last year’s model, Rivian was hoping to gain some time – and boy, did it.

Driver Gardner Nichols managed to set a time of 10:53.883, shattering last year’s time by half a minute, setting a new record for any production truck, gas or electric, and even beating the 2018 Model 3 Performance by about ten seconds (though the new Model 3 Performance hasn’t run up the hill yet).

In fact, the R1T’s time would have been an overall record for unmodified electric vehicles – and even was that record, for a few minutes – until the next car up the mountain, the Ioniq 5N, came in 4 seconds faster.

Hyundai ran the 5N in two classes, aiming for both modified and unmodified records (one of its four vehicles had a crash in practice). Immediately after the R1T finished, Ron Zaras set a 10:49.267 in an unmodified Ioniq 5N, setting the record for electric production vehicles.

Unfortunately the 5N just barely missed the record for production SUV – currently held by the 2018 Bentley Bentayga at 10:48.902, only 3 tenths ahead over the course of this 12.42-mile track. If only Zaras hadn’t had that second donut this morning…

And in the modified category, the Ioniq 5N TA (“Time Attack”) spec, which carries over the stock powertrain but has some software tweaks for more power and big wings on the front and back, was piloted by Dani Sordo to set a 9:30.852, which is now the fastest electric modified SUV up the mountain.

While the R1T was the fastest unmodified truck up the hill today, it wasn’t the fastest truck overall. That honor goes to the 1,400hp Ford F-150 Lightning “SuperTruck,” continuing the long tradition of silly Pike’s Peak vehicles with gigantic wings.

The SuperTruck set the fastest time of the day, with an 8:53.553, the only vehicle to go sub-9 and more than ten seconds faster than the next-best finisher. And that was after the vehicle had an unexpected shutdown in the first sector, coming to a complete stop and needing to be repowered, losing almost half a minute in the process.

As a result, it didn’t set a record, as last year’s Ford SuperVan, a similarly-modified Ford Transit Electric, set a time of 8:47.682. That vehicle still holds the “Pike’s Peak Open” class record, and both were piloted by Romain Dumas (who also holds the overall record in the VW I.D. R).

While we’re somewhat jumping the gun on this article since the race is still in progress (you can watch here), it’s unlikely that any other cars will beat any of these times set. The SuperTruck had the fastest qualifying time by a longshot, and there are no remaining electric or production truck-class vehicles still yet to run which have a chance of beating the 5N and R1T’s times.

So, another successful year for EVs at the mountain.

Electrek’s Take

Both of these records set this year are extremely impressive. I asked Rivian if they thought they could get sub-11 minutes, but all they committed to was trying to beat their record from last year.

But the fact that a 7,000+ pound truck managed to beat even the 2018 Model 3 Performance is quite exceptional. That’s a lot of weight to push up a mountain and around all those curves. I’m sure that the new Model 3 would be quicker, and there have been faster Teslas up the hill in modified form, but these vehicles aren’t even close to being in the same class – so the R1T has achieved a pretty incredible feat here.

It’s a shame that the Ioniq 5N couldn’t have been just a tiny bit quicker to beat the Bentayga – but it also costs less than 1/3 as much as the Bentayga. The fact that you can go right out and buy an Ioniq 5N, for a pretty reasonable price, and have an SUV that beats every other electric vehicle ever to go up the mountain and almost every other SUV/crossover, with a sub-11 minute time on this famously difficult race, is extremely impressive.

Hyundai has only just started pushing the electric performance envelope, but we’re pretty excited to see where this goes.

(And speaking of Rivian, and of electric crossovers in a rally competition, can you just imagine what the Rivian R3X is going to look like up this hill in a few years?! Stay tuned!)

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New DOE report finds 90% of wind turbine materials are recyclable

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New DOE report finds 90% of wind turbine materials are recyclable

The US Department of Energy (DOE) has released an encouraging new report revealing that 90% of wind turbine materials are already recyclable using existing infrastructure, but tackling the remaining 10% needs innovation.

That’s why the Biden administration’s Bipartisan Infrastructure Law has allocated over $20 million to develop technologies that address these challenges.

Why this matters

The wind energy industry is growing rapidly, but questions about what happens to turbines at the end of their life are critical. Recyclable wind turbines means not only less waste but also a more affordable and sustainable energy future.

According to Jeff Marootian, principal deputy assistant secretary for the Office of Energy Efficiency and Renewable Energy, “The US already has the ability to recycle most wind turbine materials, so achieving a fully sustainable domestic wind energy industry is well within reach.”

The report, titled, “Recycling Wind Energy Systems in the United States Part 1: Providing a Baseline for America’s Wind Energy Recycling Infrastructure for Wind Turbines and Systems,” identifies short-, medium-, and long-term research, development, and demonstration priorities along the life cycle of wind turbines. Developed by researchers at the National Renewable Energy Laboratory, with help from Oak Ridge and Sandia National Laboratories, the findings aim to guide future investments and technological innovations.

What’s easily recyclable and what’s not

The bulk of a wind turbine – towers, foundations, and steel-based drivetrain components – is relatively easy to recycle. However, components like blades, generators, and nacelle covers are tougher to process.

Blades, for instance, are often made from hard-to-recycle materials like thermoset resins, but switching to recyclable thermoplastics could be a game changer. Innovations like chemical dissolution and pyrolysis could make blade recycling more viable in the near future.

Critical materials like nickel, cobalt, and zinc used in generators and power electronics are particularly important to recover.

Key strategies for a circular economy

To make the wind energy sector fully sustainable, the DOE report emphasizes the adoption of measures such as:

  • Better decommissioning practices – Improving how turbine materials are collected and sorted at the end of their life cycle.
  • Strategic recycling sites – Locating recycling facilities closer to where turbines are decommissioned to reduce costs and emissions.
  • Advanced material substitution – Using recyclable and affordable materials in manufacturing.
  • Optimized material recovery Developing methods to make recovered materials usable in second-life applications.

Looking ahead

The DOE’s research also underscores the importance of regional factors, such as the availability of skilled workers and transportation logistics, in building a cost-effective recycling infrastructure. As the US continues to expand its wind energy capacity, these findings provide a roadmap for minimizing waste and maximizing sustainability.

More information about the $20 million in funding available through the Wind Turbine Technology Recycling Funding Opportunity can be found here. Submission deadline is February 11.

Read more: The California grid ran on 100% renewables with no blackouts or cost rises for a record 98 days


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Mazda finally reveals plans to build its first dedicated EV: Here’s what we know so far

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Mazda finally reveals plans to build its first dedicated EV: Here's what we know so far

Mazda is finally stepping up with plans to build its first dedicated EV. The upcoming Mazda EV will be made in Japan and based on a new in-house platform. Here’s what we know about it so far.

The first dedicated Mazda EV is coming soon

Although Mazda isn’t the first brand that comes to mind when you think of electric vehicles, the Japanese automaker is finally taking a step in the right direction.

Mazda revealed on Monday that it plans to build a new module pack plant in Japan for cylindrical lithium-ion battery cells.

The new plant will use Panasonic Energy’s battery cells to produce modules and EV battery packs. Mazda plans to have up to 10 GWh of annual capacity at the facility. The battery packs will power Mazda’s first dedicated EV, which will also be built in Japan using a new electric vehicle platform.

Mazda said it’s “steadily preparing for electrification technologies” under its 2030 Management Plan. The strategy calls for a three-phase approach through 2030.

The first phase calls for using its existing technology. In the second stage, Mazda will introduce a new hybrid system and EV-dedicated vehicles in China.

Mazda-first-dedicted-EV
Mazda EZ-6 electric sedan (Source: Changan Mazda)

The third and final phase calls for “the full-fledged launch” of EVs and battery production. By 2030, Mazda expects EVs to account for 25% to 40% of global sales.

Mazda launched the EZ-6, an electric sedan, in China last October. It starts at 139,800 yuan, or around $19,200, and is made by its Chinese joint venture, Changan Mazda.

Mazda-first-dedicted-EV
Mazda EZ-6 electric sedan (Source: Changan Mazda)

Based on Changan’s hybrid platform, the electric sedan is offered in EV and extended-range (EREV) options. The all-electric model gets up to 600 km (372 miles) CLTC range with fast charging (30% to 80%) in 15 minutes.

At 4,921 mm long, 1,890 mm wide, and 1,485 mm tall with a wheelbase of 2,895 mm, Mazda’s EZ-6 is about the size of a Tesla Model 3 (4,720 mm long, 1,922 mm wide, and 1,441 mm tall with a 2,875 mm wheelbase).

Mazda-first-dedicted-EV-interior
Mazda EZ-6 interior (Source: Changan Mazda)

Inside, the electric sedan features a modern setup with a 14.6″ infotainment, a 10.1″ driver display screen, and a 50″ AR head-up display. It also includes zero-gravity reclining seats and smart features like voice control.

The EZ-6 is already off to a hot sales start, with 2,445 models sold in November. According to Changan Mazda, the new EV was one of the top three mid-size new energy vehicle (NEV) sedans of joint ventures sold in China in its first month listed.

Will Mazda’s first dedicated EV look like the EZ-6? We will find out with Mazda aiming to launch the first EV models on its new in-house platform in 2027. Stay tuned for more.

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Trump says he will revoke Biden offshore drilling ban on first day in office

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Trump says he will revoke Biden offshore drilling ban on first day in office

A view of offshore oil and gas platform Esther in the Pacific Ocean on January 5, 2025 in Seal Beach, California. 

Mario Tama | Getty Images

President-Elect Donald Trump said Tuesday that he will reverse President Joe Biden‘s ban on offshore drilling along most of the U.S. coastline as soon as he takes office.

“I’m going to have it revoked on day one,” Trump said at a news conference, though he indicated that reversing the ban might require litigation in court.

Biden announced Monday that he would protect 625 million acres of ocean from offshore oil and gas drilling along the East and West coasts, the eastern Gulf of Mexico, and Alaska’s Northern Bering Sea. The president issued the ban through a provision of the 1953 Outer Continental Shelf Lands Act.

An order by Trump attempting to reverse the ban will likely end up in court and could ultimately be struck down.

During his first term, Trump tried to issue an executive order to reverse President Barack Obama’s use of the law to protect waters in the Arctic and Atlantic from offshore drilling. A federal court ultimately ruled that Trump’s order was not lawful and reversing the ban would require an act of Congress.

The Republican Party has a majority in both chambers of the new Congress.

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