Determinants of electric vehicle emissions savings and costs across locations and individuals Marco Miotti and Jessika E Trancik*

Following is in video description by @MoneyShift

The most common argument against electric cars is that once you factor in battery manufacturing and lithium mining, they aren't actually cleaner. MIT tested that directly, and the answer is no longer ambiguous.

Researchers Marco Miotti and Jessika Trancik built a lifecycle model covering thousands of US zip codes, drilling down to individual driver behavior rather than comparing broad regions. They accounted for battery and vehicle manufacturing, fuel extraction and refining, regional electricity mix, local meteorological data, traffic density, trip length and duration, acceleration patterns, gas and electricity prices, and state fees. The study appears in Environmental Research Letters.

The concession first: building a battery is dirtier than building a comparable gas car, and an EV starts life with a larger manufacturing footprint. MIT states that plainly rather than working around it.

The findings: in most US locations, a battery electric vehicle reduces lifetime greenhouse gas emissions by 40 to 60 percent compared to a similar gas vehicle, with larger reductions in urban areas. On cold weather, MIT found that in a climate like North Dakota, efficiency can drop as much as 50 percent on a particularly frigid night, but the effect on annual emissions benefits is minimal. Miotti's own conclusion was that even in the most unfavorable conditions, EVs still reduce emissions substantially.

On cost, EVs are competitive with comparable combustion vehicles in lifetime ownership cost across most of the country, even without clean vehicle tax credits. Where electricity is relatively affordable, battery electrics tend to cost less outright. The study also found that individual driving behavior matters roughly as much as regional electricity mix, with the biggest reductions going to people who drive more, drive larger vehicles, and spend more time in traffic.

MIT also updated their public tool at carboncounter.com, where you can compare lifecycle emissions and ownership costs for nearly any car on the market.

None of this means you have to like electric cars. Dislike the steering feel. Dislike the brake feel. Want a manual. Those are real objections. The emissions one is finished.

Car news the way Doug DeMuro, Jason Cammisa and Chris Harris cover cars, every day

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[–] 6 points 10 hours ago (2 children)

If it's 40-60%... (which is amazing).. then my gasoline car that's past its half life should be used instead of buying a new electric one?

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  • [–] 6 points 6 hours ago* (2 children)

    Your gasoline car will be used for its lifetime no matter who drives it. If your concern is to reduce overall emissions, just get an EV instead next time you change, whenever that is.

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  • [–] 1 point 46 minutes ago (1 child)

    I plan to just convert mine but the engine still runs. The engine was built in 1998.. Still runs though.

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  • [–] 1 point 16 minutes ago (1 child)

    The immediate rewards of an EV are the lack of noise and high initial torque. I never thought I'd enjoy these so much, for some people, it could nudge purchase being sooner rather than later.

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  • [–] 1 point 8 minutes ago

    That's why I've wanted to convert my jeep into one, I'm sure the diff and transmission and transfer case will have no problem with the torque =) Plenty of space, and I can always upgrade the coils for more batteries and throw a solar panel on the roof rack. Still have to figure out AC though. I really wish there were more companies that offered to do conversions.

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  • [+] -26 points 9 hours ago (3 children)

    Exactly

    Especially considering the lifetime of your average EV is 5 years before the underside rusts off, the batteries die, the "lifetime" fluids start corroding it from inside out, and the driver inevitably crashes into a wall because he thought the car could drive itself "liKe a TeSler"

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