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BOLT EV Qualifies for the Used Tax Credit

BOLTEVHEader

If you're considering purchasing an electric vehicle (EV) in 2023, it might be worth looking into a used one to take advantage of the revamped federal tax credit up to $4,000. In this blog post, we'll go over what we know about how the Bolt EV qualifies for the used EV tax credit.

The $7,500 federal tax credit has been extended for new EV purchases under revised qualifying terms, but those current requirements leave a very limited number of current EVs that qualify. Many automakers are already pivoting their business strategies to move EV and battery assembly to US soil to once again qualify, but it will take time to establish those facilities and get them up and running.

In a perfect world for consumers, any and all used EV purchases would qualify for tax credits from the US government, but that's unfortunately not the case. As part of revised terms in the Inflation Reduction Act signed by President Biden, federal tax credits have been extended and include revamped benefits for used EV purchases, as long as they fit certain criteria.

To qualify as a customer, you must:

  • Be an individual who bought the vehicle for use and not for resale
  • Must be an individual (no businesses)
  • Not be the original owner
  • Not be claimed as a dependent on another person's tax return
  • Not have claimed another used clean vehicle credit in the 3 years before the EV purchase date
  • Modified adjusted gross income must not exceed $75k for individuals, $112,500 for heads of households, and $150k for joint returns

Additionally, in order for a used EV to qualify for federal tax credits, it must:

  • Have a sale price of $25,000 or less
  • Have a model year at least 2 years earlier than the calendar year when you buy it
  • Not have already been transferred after August 16, 2022, to a qualified buyer
  • Have a gross vehicle weight rating of fewer than 14,000 pounds
  • Be an eligible fuel cell vehicle (FCV) or plug-in EV with a battery capacity of least 7-kilowatt hours (kWh)
  • Be for use primarily in the United States
  • Purchased from a certified dealer
  • A used vehicle qualifies for tax credit only once in its lifetime

The Bolt EV from Chevrolet (GM) is an all-electric model that currently qualifies for the full $4,000 tax credit. 

As always, we recommend speaking with a tax professional and EV dealer directly to ensure what you and your new vehicle qualify for. 

Make/Model/Year(s) Full Tax Credit CHEVROLET (GM) 

Bolt EV (2017-2021) $4,000 

Spark EV (2014-2016) $4,000

Whether it's a new or used EV purchase that ends up being right for you, you may still be able to take advantage of additional perks at the state level, depending on where you live. Credits, exemptions, and other benefits could be available for an EV purchase, lease, or relevant equipment like home charger installation.

A used EV might be the way to go in 2023 to take advantage of the federal tax credit up to $4,000. Make sure to do your own research and speak with a tax professional directly.

Stay up to date on our 2017-2021 Bolts we have available for sale by clicking the link below. This will have all the 2017-2021 Bolts with a sales price up to $25,000. We can help with vehicle eligibility questions on these vehicles. You will need to cover your personal income questions with your tax professional to see about eligibility on that front.

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BOLT EV - Why are the Huge Discounts Gone and Why That's a Good Thing

What happened to $16,000 off MSRP! Remember $16,000 off MSRP on a 2021 Bolt EV Premier with a $43,795 list price? And $19,000 off with Costco contributing a $3000 rebate! That was available in April 2021 from Donohoo Chevrolet as one of the nation’s price leaders. In August 2021, we have been out of 2021 Bolts for 4 months, but we now have the 2022 Bolt EV and its new cousin the 2022 Bolt EUV. Let’s put the EUV to the side for a moment and discuss a more apples-to-apples comparison in the Bolt EV. If you are reading this, you are already aware that the charging speed and 259 miles on a full charge are unchanged from the 2021. The seats and suspension are more comfortable, the infotainment is different, and the front fascia is refreshed. So why are the rebates only $500 in August 2021? more That $43,795 list price 2021 Bolt has a similar equivalent that has a $35,790 list price. That difference is $8,005, so Chevy has anchored, let’s call it, $8,000 in rebates into the new MSRPs on the Bolt EV. Due to MAAP (minimum allowable advertised pricing) policies, we are not allowed to show in our math box on our website a price below MSRP less current incentives. We will not go on a tangent here about manufacturers and MAAP, but we bring it up so you understand why a lot of the strong pricing on Bolts has disappeared. But does that mean you can’t purchase this new Bolt for less than MSRP? No, Chevy cannot require us to sell it for MSRP. So we are offering $2,000 back of MSRP to those customers that reach out to us about a Bolt EV. Still, that leaves a price of $33,290 for this particular Bolt EV 2LT. And many of you were used to paying $27,795 for the 2021 Bolt EV Premier. So what else can you get with the 2022 Bolt EV? There is a pretty cool Chevy Charging Installation credit where Chevy will install a Level 2 charging capability in your home at Chevy’s cost! There are a few gotchas in the program. If your location is outside the house (separate garage) or you need infrastructure improvements in your electrical box to support the higher voltage, some of that cost will need to be borne by you, but for most people, Chevy is covering the full cost of installation. If you do not have Level 2 charging, that is a really good value delivered to you, so that bridges the gap some. The rest needs to be covered by your desire to have the fresh look. Additionally, your alternatives in the non-EV space have skyrocketed in price over the past year. How crazy is the price of a used Honda Civic or other OEM’s similarly sized vehicles? I don’t think we will see $16,000 off the 2022 Bolt EV because about $8,000 off is already embedded in the MSRP change from 2021 to 2022. So, at $33,290 with free installation of Level 2 Charging, is that compelling enough to buy a 2022 Bolt EV 2LT (similar to the Premier as 21 Bolt EV LT is like 22 Bolt EV 1LT and 21 Bolt EV Premier is like 22 Bolt EV 2LT)? What about 2021 Bolt EVs? Another note is to look at what a 21 Bolt EV that is left at a dealer would cost you. Chevy rebates are $8,000 with $3,000 extra for fast charge and $1,500 with GM Loyalty if you qualify. A quick search on Cars.com for all 2021 Bolt EVs available in the USA resulted in 188 units. Of these, 107 are Premier. Of the Premiers, the median price at a rough glance appears to be around $32,000. If we assume generously that the price doesn’t include the GM loyalty already, a median 2021 Bolt EV Premier is a little north of $30,000 if you qualify for a loyalty rebate. Additionally, good luck finding the color you want within a reasonable distance of your home. Vehicle supply and demand along with slightly reduced help from GM to dealers in cash to help move 2021 Bolts mean a 2021 Bolt EV is just more expensive than it was 4 months ago. Is the 2022 Bolt EV a good value? Ok, not as good as the 2021 Bolt EV was in April 2021. But think what you could have bought a Silverado 1500 crew cab for 6 months ago versus today? Some of this is general market inflation on goods and services that may or may not be transitory depending on whether you believe central bankers. With our $2,000 discount on offer and free Level 2 charging, we think our Bolt EVs are priced to bridge most of the gap. And that is our main aim – get our pricing to a place where good value for the current market gets delivered. Some of you may be worried about what your Bolt EV will be worth down the road should inflation be transitory or market conditions change radically. Please – Seriously entertain a lease We get it. In the southern United States, leasing is considered throwing money away. And it may be on some models where GM doesn’t support it well, but people lease like gangbusters in the Midwest and Northeast, and they can’t be that ignorant. A lease on a Bolt is a great opportunity to protect yourself from market movements on the vehicle as it ages. Chevy has stepped up in August on its leasing residual values. When you lease, you are trading purchase rebate cash today, $500 on a 2022 Bolt, for no upfront rebate on the price and a guaranteed trade-in value at the end of the 36 months of the lease. If you leased 10,000 miles per year, 30,000 miles total, Chevy has a residual value of 64% of the MSRP of a Bolt EV 2LT for August 2021. So, in the example earlier, $35,790 times 64% is $22,906. So here is the bet you are making. By giving up $500, you are betting that Bolt will be worth less than $22,906 in 36 months when you turn the Bolt back into Chevy. If that vehicle is worth $18,000 as a trade-in, then Chevy eats almost $5,000 in market value difference and it cost you $500. Of course, a lease versus purchase isn’t apples to apples because you have different APRs and fees between the two, but you can work out those numbers and should see differences that aren’t huge. If the vehicle is worth at the end of the leasing period $22,906, you buy it for that from Chevy through a dealer and only lost out on the $500 purchase cash. There are some additional upsides to the lease as well. If the vehicle is totaled, the lease comes with built-in GAP protection, so you have no worry about negative equity with your claim driving up your cash out of pocket on a totaled vehicle. If you get in an accident that shows up on the Carfax, that doesn’t impact the value of the vehicle when you turn it in. If you have ever traded a vehicle with an accident reported on the Carfax, you understand how that reduces the value. And if it says Severe Damage, lookout. If the vehicle is properly repaired at turn-in, there is no financial punishment for those accidents. Now, there is obviously some downside. What happens if you want out of the lease after a year. Yeah, that gets expensive to get out since you are committed to the remaining lease payments. And in some instances with leases, we have ways to minimize the financial impact at the dealership when you want to switch out as we want to keep you as a customer and make you happy. But that takes us to the next point. Welcome to the Privileged Lease Club! Chevy wants you to continue to lease vehicles from them, so they don’t like to leave customers flailing in the wind on a lease. One way to get out of the lease earlier is to take advantage of lease pull ahead programs that begin within a year or so of the end of the lease where Chevy will cover up to a certain amount of remaining lease payments to get you to lease again. Additionally, there are lease loyalty CCR (cap cost reduction) incentives – think of them as like cash off doing another lease. On current Bolt EVs, there is a $1,500 lease loyalty CCR for those that lease with GM Financial currently. That is a major reason why people in the Midwest and Northeast continue to lease. Once you start leasing, GM makes it financially attractive to continue leasing. So I am intrigued about leasing – tell me more We have another blog post that goes into deep detail about leasing a 2022 Bolt EV or EUV in August 2021. Click here to read greater detail about leasing examples of Bolts going on this month. Finally, if you have an interest in looking through our extensive Bolt inventory that blows away our competition’s offerings, please click here to see all of the Bolts on our website. And if you have a particular interest like the Super Cruise EUV units that will not get built until later this year, click here to see our orders that have yet to be built and will be available in the future. Thank you Bolt customers! Many of you are avid Bolt EV fans, and you have been through the experience of shopping for a Bolt and understand the incentives, rebates, and tax credits very well. How do we know this? At Donohoo Chevrolet, we have been stunned at the incredible knowledge of our Bolt customers. We sold more Bolts in 2021 out of Fort Payne, AL than any dealer in these major cities around us – Atlanta, Nashville, Charlotte, Birmingham, Chattanooga, Huntsville, Memphis, Knoxville, Montgomery, Jackson, and Mobile! And it wasn’t all that close. Our sales staff all have extensive experience with the Bolt, and many of you know more than our sales staff. Truly amazing enthusiasm and we appreciate all that you teach our sales staff in your interactions with us. And we thank you for doing business with us. We understand the importance of growing the electric vehicle market, and a big part of that is getting customers in the vehicles to try them. We have evangelized 7 members of our dealership team that all drive them personally, and a couple of those folks were big skeptics – including a couple of truck-loving country folks. They rave about the experience of driving a Bolt. If you are interested in one, we have a few in our service courtesy fleet that can be taken for an overnight test drive. Additionally, we welcome you coming to our dealership to test drive one. We have plenty to choose from.

Boltheader

BOLT EV & EUV - Best Value EV On The Market

We have long been fans of the BOLT, but recent incentive changes have made it the best value EV on the market. Considering recent events, GM has cleaned up the battery “issue” and lowered the price by $6000, and introduced 2023 model year – as well as a tax rebate refresh opportunity – I thought it would be fun to take another look at the now sub-$30,000 Bolt EUV. more Back to the Bolt I’ve been driving one version or another of this car since way back in January of 2017. Chevy actually built the Bolt EV and delivered the first units at the end of 2016. We got our first one in early 2017 and fell in love with the small form factor “Micro Crossover.” Bolt EUV The Bolt EUV was unveiled in Feb 2021, and we took a first drive of it. The EUV is six inches longer, providing more room inside, including three additional inches of legroom in the back seat. That extra length/reduced height also makes the Bolt EUV look more like a crossover SUV than the Bolt EV, which more closely resembles a hatchback than a “Micro Crossover.” The drive train stays the same, so the bigger EUV is less than a second slower 0-60 and has a slightly reduced range. Chevy Bolt EV Range – 259 miles on a full charge Chevy Bolt EUV Range – 247 miles on a full charge Perhaps most importantly, GM saw fit to include an optional Super Cruise Autonomous driving on the EUV. It must be configured at purchase, and cameras/equipment are built-in, however, so it can’t be added later like Tesla’s Autopilot/FSD. Otherwise, the EUV is outstanding for an inexpensive EV, which are few and far between these days. The 0-60 in six seconds isn’t lightning fast, but it is respectable. The seats of both Bolts improved dramatically in 2022, and I wasn’t among the people who hated the early Bolt seats – the whole interior is just a lot nicer. Bolt EV and EUV – Fun to drive and practical Maybe the most crucial aspect of the Bolt experience is the ease and how much downright fun it is to own. You can rip around turns, gun it on green lights, and park easily. The hatchback means it is easy to load, and there’s a surprising amount of space in the back. Four adults fit well in the EUV or EV, as well as three kids in the back. 2023 Bolt EUV problems are many of the same from 2017 Unfortunately, the EUV still suffers from many issues I had with the Bolt back in 2017. Notably: DC fast charging speed: 54kW, allowing 100 miles in 30 minutes and 160 miles in an hour. In 2017, most DC fast charging was 50kW, so this wasn’t a huge problem. Today, it is no longer class-leading. Front-wheel drive, low resistance tires, wheels spin in rain/snow gravel quite easily. No AWD option. Putting even a 50hp electric motor on the rear wheels and charging a few thousand extra for a faster Bolt that would be able to handle snow would have opened up a much bigger market for the Bolt. Chevy didn’t do this. Gear shifting buttons: In 2017, the Bolt had a gear shifter that didn’t provide any tactile feedback but seemed like a normal shifter. In 2022, with the Bolt EUV, Chevy changed the shifter to buttons. Drive and Reverse are pull buttons, while Park and Neutral are push buttons (see below). The one nice thing is that for us one-pedal drivers, there’s a one-pedal drive button that keeps the driver's preference even after shutting down the car. Wireless CarPlay/Android Auto is a huge step up. One of the bigger improvements to the Bolt is the CarPlay/Android Auto experience. The 10.2-inch display is not only bigger, but it feels brighter, and things like maps pop. The touch display is also much more accurate. The biggest change, however, is that Carplay/Android Auto now works wirelessly, meaning you can just leave your phone in your pocket or drop it down the cleverly designed wireless charging hole and see the charging status on display. In my testing, Wireless CarPlay worked almost flawlessly on the Bolt EUV with a little lag when switching songs. The Bolt retains the ability to change songs and volume behind the steering wheel, though it has changed the buttons somewhat. Once you get used to this, the ergonomics of the Bolt are fantastic. Bolt EUV vs. EV There are some notable differences between the two cars, including the 6-inches of length and SuperCruise discussed already. Base Price: Bolt EV: $25,600 Bolt EUV: $27,200 Storage space is remarkably similar, given the extra six inches of length. But surprisingly, because it is taller, the shorter EV has more cargo space on a volumetric basis. Bolt EUV: 16.3 ft³, 56.9 ft³ with seat area Bolt EV: 16.6 ft³, 57 ft³ with seat area My Take I highly recommend the Chevy Bolt to anyone shopping for an EV in the $30,000 or under price bracket. There’s not much else out there to consider in the US market. The Nissan Leaf is similarly priced but has a lower range, Chadamo fast charging, and slower. The $35,000 Kia Niro/Hyundai Konas aren’t as zippy and are more expensive. The rest of your options are used Teslas (which don’t age particularly well) and other early EVs like Jaguar i-pace/Audi E-Trons or compliance cars. Even Mazda’s MX-30EV, with all of 100 miles of range, is more expensive at $33,500. The biggest question you might have is EV or EUV, and I might have a surprising answer for you. I recommend the EV over the EUV UNLESS you need that three inches of the extra rear room or Super Cruise, which I love (but also goes on a $25/month subscription after three years). The Bolt EV is incredibly roomy for its footprint. The EV is also $1600 less than the EUV base price. What’s more exciting is that if the new law makes its way through the US congress, it might make the Bolt a sub $20,000 car. Of course, a lot of devils will be in the details there, and it is likely that GM will bring prices back up if it passes. Still, you can’t go wrong with a Bolt EV purchase right now. Finding a New Bolt Shop BOLT EVs Shop BOLT EUVs One major consideration for many people today is finding a Bolt to purchase. The battery recall means many vehicles are held up at dealers awaiting battery replacement, and the supply of freshly built Bolts is limited. In the Southeastern USA, we are a top dealer in sales of Bolts, so we continue to get allocation that most dealers are not getting to build the 2023 model year. If you are interested in getting a sold order entered, please reach out to us. We can also help you with some of our Bolts that are awaiting battery replacements as those batteries are starting to arrive more quickly, and we have several not our website due to open recalls. We are NOT applying market adjustments, so you will not pay above MSRP to purchase a Bolt from us.

Lithium EV Problem

What is the Biggest Issue to 100% Adoption of Electric Vehicles?

This is lithium. Pretty soon, we are going to need a lot of it. Lithium is a useful metal. It spends its entire existence trying to get rid of its one outer electron, but, crucially, this reaction can be both controlled and reversed. That means, properly configured, the metal can discharge energy when needed, take in more energy, and then discharge that energy. Essentially, it can act as a battery. It's only been a few decades since lithium-ion batteries reached commercial feasibility, but, in that time, they have become the power source of choice for portable electronics thanks to their perfect blend of safety and lightness. However, the latest major tech boom, the latest infatuation of Silicon Valley and Wall Street alike, is centered around the most extensive consumer electronics product to date: electric vehicles. Electric vehicles need a whole lot of lithium. more Source: https://www.youtube.com/watch?v=9dnN82DsQ2k&t The UK, for example, has committed to banning internal combustion car sales by 2030. To replace its 31.5 million vehicles, about 236,000 metric tons of lithium carbonate are needed. To produce 236,000 metric tons of lithium carbonate, every lithium mine in the world would have to devote its output to this one use for nine months. So there are a lot more countries, a lot more lithium applications, and a whole lot more growth in the forecast. While the industry and its issues may be complex, how battery-grade lithium is produced is not. Four countries dominate the sector —Argentina, Chile, Australia, and China combined account for 92% of the globe's production. The metal is extracted from the ground at massive sites like the Greenbushes mine in Western Australia, the world's largest hard-rock lithium mine. The site was selected due to the abundance of spodumene in the area, a mineral containing large concentrations of lithium. Once the raw material is extracted from the ground, it's transported two and a half hours north to the Kwinana Lithium Plant near Perth—a facility majority owned and operated by a Chinese company, Tianqi Lithium, which is responsible for almost half of the world's production of the metal. Once refined, lithium hydroxide and other compounds are sold to battery manufacturers, which in about three-quarters of cases means one of three companies—LG Chem, CATL, or Panasonic. The problem, however, is the world's solution. In addition to the UK, Iceland, Belgium, the Netherlands, Germany, Denmark, Norway, Sweden, Israel, Singapore, and South Korea have each committed to banning the sale of internal combustion passenger vehicles within the next decade. Adding up their annual passenger vehicle sales numbers from 2019 means the absolute base-case demand for EVs a decade from now will be 9.5 million per year. To reach that, EV production would have to quintuple, but even the most conservative forecasters don't dare tread anywhere close to a number as low as 9.5 million in 2032. Finally, the market is waking up to what this means for lithium demand. Across 2021, Seaborne lithium prices rose from around $8,000 per metric ton to over $30,000—a 400% rise in a mere twelve months—and lithium is hardly the only crucial metal for lithium-ion battery production—it's just the one in the name. Cobalt and nickel are also critical to most commercially-available versions of these batteries, and the situation is hardly different with them. Cobalt prices doubled across 2021, while nickel rose to its highest price in a decade. So, the world needs a lot more metals, but right now, it's hard to believe the world's going to get them. Is The US Trying to Improve Lithium Production? What Hurdles Are There? The biggest hurdle the industry faces is best exemplified here: Thacker Pass, Nevada. Source: https://www.youtube.com/watch?v=9dnN82DsQ2k&t Thacker Pass is located in one of the most sparsely populated areas of the country. It's a half hour's drive to the nearest store, an hour to the nearest supermarket, and three to the nearest Starbucks. The few roads in the area are lucky to see a few cars an hour, traveling to and from the various remote farms, ranches, and communities dotting northern Nevada. That could soon change, though. 250 miles to the south is the Silver Peak Lithium Mine. This is the nation's only currently operating major lithium mine, despite the US being one of the largest EV markets and home to the world's largest EV manufacturer. China, also a major EV market home to major EV manufacturers, has made significant headway in building up its domestic lithium production capacity. The country's companies also have a significant presence at the world's other major lithium production sites. Getting beat at lithium production has concerned those in charge in the US. So naturally, sights are set on Thacker Pass—home to the US' largest lithium deposit. This site could singlehandedly propel the US into the ranks of major lithium producers, but getting a mine up and running there has proved… difficult. How significant lithium deposits are distributed across the world is rather cruel. Overwhelmingly, they're located in arid regions with little water availability, like Nevada. Thacker Pass receives less than 10 inches of rain a year. However, the extraction and processing of lithium require enormous quantities of water. It's expected that operations at the proposed Thacker Pass lithium mine would require 3,224 gallons of water per minute—roughly equivalent to the contents of a backyard, above-ground pool. That water would be used to pump into the ground as part of the extraction process, during refinement, and to conduct necessary dust control at the site. To get the water, the mine would have to pump it out of the ground using wells, but every acre-foot of water in the area is strictly allocated, given the degree of scarcity. So the mine has to buy up water rights from others to gain the legal right to use it. However, what that means is that there's a direct trade-off between one use and another, and in this case, the other use is predominantly ranching and farming—two key tenants to the local economy. In addition, there's a chance the project could do far more to further the inaccessibility of water in northern Nevada. The US Bureau of Land Management's Environmental Impact Study for the project found that it presented the distinct possibility of leaking unacceptable levels of arsenic into the area's groundwater table, which could take the entire region's water supply offline for hundreds of years. In a place where the availability of water undergirds almost all economic activity, that has people seriously concerned. The issues only compound on top of that. As Thacker Pass is, of course, a mountain pass, it acts as a wildlife corridor between the Double-H and Montana mountains—two biodiversity hotspots. Therefore, the environmental impact study found the project likely to destroy or deteriorate thousands of acres of habitat used by the pronghorn antelope, sage grouse, golden eagle, and other unique species. For interrelated reasons, the project also has several local indigenous tribes concerned—the most vocal is the Fort McDermitt Paiute and Shoshone Tribe. They say that during the era of American soldiers rounding up and shipping indigenous people off to reservations, two of the tribe's families hid out in the shelter Thacker Pass provided—so they directly attribute the continued existence of their tribe to the area. In addition, they consider the pass a sacred site, partly because of a historic massacre they say occurred there. This assertion, however, was directly challenged in a court case related to the mine project, and the judge rejected the claim citing a lack of evidence. To add to their opposition, the tribe put forward evidence linking the development of similar resource-extraction projects, which are predominately staffed by men, to increases in the rape and murder of indigenous women in nearby areas. Even just looking at these few headline issues, it becomes clear that the Thacker Pass lithium mine project is mired in a nearly insurmountable web of controversy and conflict, and it's hardly alone in that status. Much of the evidence opponents to the Thacker Pass mine have put forward is based on real-world experiences in the lithium triangle—the nexus between Chile, Argentina, and Bolivia that hosts some of the world's most productive lithium production facilities. In a similar situation—a remote, arid landscape punctuated by small communities home to a historically oppressed indigenous population—the lithium triangle has seen an economic boom. Still, it's come at the cost of environmental and cultural devastation. Just as the issues are not confined to one geography, they're not even limited to lithium alone. According to World Bank figures, some 70% of the world's cobalt, a crucial component to current battery tech, comes from the Democratic Republic of the Congo—the 8th poorest country in the world. While a majority of the cobalt mining is conducted by large mining companies with often shaky safety and human rights records, a concerningly large minority is accomplished through what's referred to as "artisanal" mining—a term defining the illegal, informal practice of individuals mining cobalt by themselves and selling it on to shady middlemen. The complete lack of safety standards or regulations in the sector means child labor and deadly mine collapses are rampant. In addition, for those that aren't directly injured or killed on the job, long-term exposure to cobalt mines has been linked to significant health effects later in life and fatal congenital disabilities for children in the region. Altogether, there's almost no such thing as ethical cobalt. There's also almost no such thing as green lithium. There's little appetite anywhere to increase lithium mining in the places where it's accessible, and little progress has been made in the DRC to make cobalt mining less socially disastrous. As demand for EVs and their batteries increases, getting more cobalt and lithium will be incredibly difficult. However, getting more cobalt and lithium that's more ethical and green, or even as ethical and green, will be next to impossible. But to decarbonize driving, solutions must be found. How Can GM Plan An Electric Future With So Many Limitations? Solid-State Battery Production Rather than finding more raw materials, one option is to need less of them. But, of course, the way to do that is by making batteries better. The most promising short-term innovation that could fulfill that mission is solid-state batteries. Whereas traditional EV batteries have a liquidy, viscous lithium-based electrolyte, solid-state batteries use a solid metal composition as their ion transport mechanism. This switch has many benefits, including a higher safety profile that reduces the risk of fire and, therefore, reduces the need for expensive safety features. Solid-state batteries can also be made without cobalt or nickel, eliminating two problematic and costly necessities in current battery tech. Most significant, however, is solid-state batteries' higher energy density and faster charging times. Traditional lithium-ion compositions used in EV battery packs store about 114 watt-hours of energy per pound. That means one pound of battery could move a Chevrolet BOLT EV, for example, 0.4 miles. Meanwhile, it's expected that solid-state batteries will be able to store between 175 and 225 watt-hours per pound— essentially doubling battery density. That means GM could halve the weight of their half-ton battery pack and not only keep range the same but increase it as the car would no longer need to carry the rest of the weight of the battery pack. On top of all those benefits, experts believe that, at scale, the production costs of solid-state batteries could be even less than the cheapest current lithium-ion batteries. However, the issue is getting to that scale. Battery production needs to occur in absolutely massive quantities to reach cost-competitiveness—an assertion backed up by the industry's current effective triopoly. The process of working down this cost curve is long as there are few applications where battery weight matters as much as with EVs, and EVs won't switch to solid-state batteries until their cost is competitive. Still, their cost will only become competitive when the industry reaches a production capacity that only EVs can provide. So, the industry has to wait for some level of scale to occur through niche solid-state battery applications in medical devices, race cars, and fighter jets; then wait for consumer electronics to realize the weight savings or battery life benefits the innovation could provide; then wait for the highest-end EVs to incorporate the technology to offer super-long ranges as a luxury; before solid-state batteries can finally reach a cost that would allow them to permeate into what will by then be the large segment of everyday EVs. Most estimates place that enticing end-goal more than a decade away. Even if the solid-state battery transition reaches fruition earlier, the world will still need a whole lot more lithium. Is There Any Ethically Sourced Lithium? Far from the potential environmental disaster at Thacker Pass is an existing ecological disaster—the Salton Sea. Source: https://www.youtube.com/watch?v=9dnN82DsQ2k&t A century ago, Colorado River floodwaters breached through an irrigation canal and accumulated, over the years, in the Imperial Valley's geographic low-point 236 feet below sea level. That massive puddle still exists today, but some of the water has slowly evaporated through time, leaving an ever saltier, dirtier accumulation of water. However, thousands more feet below are several underground volcanoes that superheat water to hundreds of degrees. If one brings that water to the surface, the pressure change leads to it transforming into steam and steam, of course, is what most power plants use to drive turbines. Traditional power plants use coal or natural gas to heat water into steam, but this steam is created by the earth—meaning it's carbon-free. That's why Berkshire Hathaway Energy has built ten geothermal energy plants in the area, but, crucially, this superheated water is filled with something else: lithium. Therefore, these geothermal plants are planning to add an extra step to extract lithium from the briny steam they use. However, there are undoubtedly significant technological hurdles that stand between now and a future of commercially-competitive lithium production at the Salton Sea, primarily as the metal only represents a tiny portion of the slurry of materials found in the water, but the lithium is there. As the largest existing energy company working around the Salton Sea, Berkshire Hathaway Energy is leading the charge thanks in part to a sizable federal grant and expects to have its demonstration facility up and running later in 2022. Some competitors have already started developing their lithium-extraction plays around the Salton Sea, meaning America's first lithium boom-town might already be a foregone conclusion. These are the solutions needed as the world transitions to electric mobility. Unfortunately, due to their reliance on batteries, electric vehicles are just dirtier than internal combustion vehicles to produce. Lithium can be recycled, but the process needs to advance to make it truly viable. That being said, the vast majority of emissions from cars, including from EVs themselves, come not from the production of vehicles but from driving them. If Lithium Mining Is So Bad Why Change to Electric Vehicles at All? The science on the issue is sound—electric vehicles, from production, to use, to scrapping, are responsible for about 75% less emissions than their internal combustion counterparts, even on current, fossil-fuel-based electric grids. Anyone who argues the opposite is either misinformed or attempting to disinform, and that gap will only widen as grids continue to decarbonize. However, there can be better alternatives to better alternatives. In the coming lithium gold rush, technologies will have to adapt to supply shortages and hopefully lead to a greener future. One that sees ethically and humanely sourced lithium and battery components. An important note to remember when discussing mining is natural gas is also mined and has numerous questionable methods to acquire it. The most critical aspect of natural gas is that experts expect us to run out of gas in the next 50 years at our current consumption rate. We have seen some arguments about the current grid not supporting charging electric vehicles. While there seems little doubt that EVs will increase the nation's grid load, "The transition … will be slow," contends Pat Romano, CEO of ChargePoint, one of the nation's largest public charging companies. The primary reason for his optimism is his expectation that 80% of EV owners now charge their vehicles at night, mostly from home, taking advantage of a general surplus of off-peak generating capacity. ChargePoint' s business model is based on the expectation that will remain the case as we advance. But, even in off-hours, the already creaky grid is likely to become still more stressed, requiring plenty of upgrades, on top of new generating capacity — whether fossil-fueled or renewable, experts agree. In the US, updating a power grid that hasn't seen significant change since the early 50s probably won't be a bad thing. TLDR: Lithium, Cobalt, and Nickle have significant sourcing and ethical problems that will need to be addressed to meet future battery demands. The US is looking at improving our production. Still, environmental concerns at Thacker Pass, Nevada, and technology concerns at the Salton Sea may delay the US from becoming a major player in lithium production. Future solutions will make electric vehicles genuinely viable such as solid-state batteries, but economies of scale will need to be achieved before they become commercially viable. We need to replace gas-powered vehicles to limit emissions and decrease our dependence on finite resources. Still, significant changes must be made to our infrastructure before that vision can become a reality.