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Tesla is inviting its Energy customers living in California to join Tesla’s Virtual Power Plant (VPP) and help stabilize the grid. Virtual power plants aggregate the capacities of energy resources and enhance power generation along with trading or selling power on the electricity market. Back in 2020, our own Steve Hanley shared that Tesla was expanding into both solar microgrids and virtual power plants. Steve wrote about Tesla’s virtual power plant plan in the UK at the time. Less than a year later, Tesla is now setting one up in California.

Tesla noted that its Virtual Power Plant in California is in the beta stage and pointed out that the California grid operator predicted that there will be a continued need for Californians to support it through the end of this year. Tesla’s invite encourages its customers to help create the largest distributed battery system in the world while avoiding dependence on the least efficient fossil fuel power plants.

Once customers have opted in, Tesla will dispatch their Powerwalls when the grid needs support, without risking customers’ own energy security. Tesla listed several benefits of participation in its new Virtual Power Plant.

Benefits

  • Exporting Credits During Peak Periods. Customers don’t need to make any changes to their home energy usage behavior, and if they’re part of a net energy metering program, they could earn credit for their energy that is sent to the grid during events.
  • Cleaning The Power Grid. When the grid is in critical need of additional electricity, the least efficient fossil-fueled- generators come online. With Tesla dispatching customers’ Powerwall during the critical need, this helps to reduce dependence on those generators and helps clean the grid.
  • Stabilizing California’s Grid. By opting in, Tesla Energy customers will help California reduce or even avoid blackouts during severe emergencies. Powerwall can keep the lights on for all in the community.
  • United as A Tesla Community. The Tesla community is pretty amazing, but this takes that level of community even higher. Tesla Energy customers will team up with other Powerwall owners who are helping Tesla to accelerate the world’s transition to sustainable energy. Customers will help build the largest distributed battery in the world — with over 50,000 Powerwalls.
  • Energy Security. Powerwall customers will not lose any of their energy security. Instead, Powerwall will discharge during VPP events but will not discharge below your backup reserve. Customers can adjust their backup reserve to control how much their contribution to the VPP is.

Tesla noted that eligible Powerwall owners will be able to enroll in its Virtual Power Plant starting on July 22, 2021. Details on program eligibility will be announced soon.


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Critical EV battery materials face a supply crunch by 2030

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Critical EV battery materials face a supply crunch by 2030

The global shift to electric vehicles (EVs) is accelerating, but McKinsey’s latest report warns of significant strain on the supply chain for critical battery materials by 2030.

EV sales are expected to jump from 4.5 million units in 2023 to 28 million annually by the end of the decade. This unprecedented demand will put pressure on the availability of essential materials like lithium, high-purity manganese, and graphite.

While lithium iron phosphate (LFP) batteries reduce reliance on scarcer materials like cobalt and nickel, they still depend heavily on lithium, manganese, and graphite. The shift to LFP batteries offers some relief but does not eliminate the imbalances in the supply chain, highlighting the need for continued focus on securing sustainable sources.

Adding to the challenge, upstream raw material mining and refining these materials account for about 40% of an EV battery’s total emissions. McKinsey’s report emphasizes that reducing emissions in these processes is critical.

“Sourcing materials from supplies committed to low-emission fuels and power sources could cut emissions by as much as 80% in mining and refining phases. This needs to be paired with a strong focus on cost reduction given the current profitability pressure in the battery industry,” said Raphael Rettig, partner at McKinsey.

Smaller but essential materials, such as high-purity manganese, also face growing challenges. Currently, manganese contributes around 4% of emissions in a typical lithium-nickel-manganese-cobalt (LI-NMC) battery. However, as LFP batteries gain popularity and larger materials like lithium and nickel are decarbonized, manganese’s relative emissions intensity could nearly double without targeted strategies to address the imbalance.

Toyota’s recent $4.5 million grant from the US Department of Energy to develop more sustainable EV batteries is a step toward addressing these challenges. However, it’s clear that solving the broader supply chain issues will require a collective effort from the entire industry to balance demand with sustainable practices and minimize emissions. The path forward will define the EV industry’s ability to meet climate goals while scaling up production.

Read more: Toyota gets $4.5M DOE grant to boost EV battery sustainability


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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*

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Hyundai’s top-tier IONIQ 9 Calligraphy trim looks sharp in stealthy all-black

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Hyundai's top-tier IONIQ 9 Calligraphy trim looks sharp in stealthy all-black

Hyundai’s new IONIQ 9 electric SUV already looks like it’s from the future, but the flagship Calligraphy trim stands apart from the other options. The top-tier model gains added tech, features, and sleek trim-exclusive design elements. A new all-black model was spotted in California, giving us a better look at the top-tier trim on the road.

Hyundai IONIQ 9 Calligraphy spotted in all-black

The IONIQ 9 is Hyundai’s first three-row electric SUV, a “living room on wheels,” if you will. Last month, Hyundai unveiled the larger electric SUV at the LA Auto Show.

Featuring Hyundai’s new “Aerosthetic” design, you can miss the IONIQ 9’s futuristic style. The streamlined roof and flush exterior design provide a spacious, “lounge-like” interior. It even includes added elements like Parametric Pixels integrated into the front LED lights and bumper.

The IONIQ 9 will be available in S, SE, SEL, Limited, and a flagship Calligraphy trim options. Hyundai confirmed the top-tier model will have an exclusive Calligraphy Design package with 21″ wheels.

Other trim-specific features added to the Calligraphy model include a microfiber suede roof trim, a premium cargo sill plate, a two-tone leather-wrapped steering wheel, a 10″ Head-Up Display (HUD), and a full-display mirror FDM with HomeLink.

Hyundai IONIQ 9 Calligraphy trim testing in the US (source: KindelAuto)

Although Hyundai has shown the flagship SUV off in public, a new video from KindelAuto shows a preproduction IONIQ 9 Calligraphy in all-black testing in the US.

Earlier this month, an IONIQ 9 model was spotted testing in public ahead of deliveries. We also saw what appears to be an XRT trim with off-road upgrades caught in Korea last week.

At 199.2″ long, 78″ wide, and 70.5″ tall, the Hyundai IONIQ 9 is slightly smaller than the Rivian R1S (201″ long, 82″ wide, 77″ tall). It’s roughly the size of Kia’s EV9.

Hyundai’s electric SUV, which is powered by a 110.3 kWh battery pack, has an EPA-estimated range of 335 miles, or 620 km, on the WLTP cycle.

Hyundai’s three-row electric SUV will be available in the US and Korea in the first half of 2025. Following that, it will roll out to global markets like Europe. It will be built alongside the updated 2025 IONIQ 5 at Hyundai’s new manufacturing plant in Georgia. Prices will be revealed closer to launch.

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Podcast: Tesla self-driving computer failure, Cybertruck issues, Honda/Nissan merger, and more

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Podcast: Tesla self-driving computer failure, Cybertruck issues, Honda/Nissan merger, and more

In the Electrek Podcast, we discuss the most popular news in the world of sustainable transport and energy. In this week’s episode, we discuss Tesla’s issues self-driving computer failure, Cybertruck is also having some problem, Honda/Nissan merger, and more.

The show is live every Friday at 4 p.m. ET on Electrek’s YouTube channel.

As a reminder, we’ll have an accompanying post, like this one, on the site with an embedded link to the live stream. Head to the YouTube channel to get your questions and comments in.

After the show ends at around 5 p.m. ET, the video will be archived on YouTube and the audio on all your favorite podcast apps:

We now have a Patreon if you want to help us avoid more ads and invest more in our content. We have some awesome gifts for our Patreons and more coming.

Here are a few of the articles that we will discuss during the podcast:

Here’s the live stream for today’s episode starting at 4:00 p.m. ET (or the video after 5 p.m. ET):

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