• dual_sport_dork 🐧🗡️@lemmy.world
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    6 months ago

    Well, only relatively.

    In order to work batteries need to have a certain amount of instability built in, on a chemical level. Them electrons have to want to jump from one material to a more reactive one; there is literally no other way. There is no such thing as a truly “safe and stable” battery chemistry. Such a battery would be inert, and not able to hold a charge. Even carbon-zinc batteries are technically flammable. I think these guys are stretching the truth a little for the layman, or possibly for the investor.

    Lithium in current lithium-whatever cells is very reactive. Sodium on its own is extremely reactive, even moreso than lithium. Based on the minimal lookup I just did, this company appears to be using an aqueous electrolyte which makes sodium-ion cells a little safer (albeit at the cost of lower energy density, actually) but the notion that a lithium chemistry battery will burn but a sodium chemistry one “won’t” is flat out wrong. Further, shorting a battery pack of either chemistry is not likely to result in a good day.

      • dual_sport_dork 🐧🗡️@lemmy.world
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        6 months ago

        It is definitely that. That’s kind of the point, actually. Sodium is easier to come by than lithium and does not require mining it from unstable parts of the world, nor relying on China.

        • UnderpantsWeevil@lemmy.world
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          6 months ago

          nor relying on China

          The appeal of China is largely in the size of the labor force. Whether this tech is more or less feasible than cobalt and lithium, businesses will still want to exploit the large volume of cheap Chinese labor in order to build them.

    • UnderpantsWeevil@lemmy.world
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      6 months ago

      the notion that a lithium chemistry battery will burn but a sodium chemistry one “won’t” is flat out wrong

      Flinging a brick of sodium into my bathtub to prove you wrong.