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I highly doubt that Lithium mines have that sort of power. More likely there are either more mundane suspected downsides that aren’t being so breathlessly reported, or simply that it’s too new.
It takes time to switch production lines, and actual demand from battery consumers. Of Lithium Ion is good enough to meet thier requirements than why rush to something that hasn’t been proven in the field yet? If thier already struggling to meet demand with thier current output why risk taking a bunch of lines down to maybe see demand there?
Oh, I’m not saying switch production until there’s maturity, but if that’s the starting point with sodium-ion, clearly the research is better suited there.
It’s worth noting that research tends to lead manufacturing by ten to fifteen years. Mostly just down to the fact that making a few kilograms of something in a lab is a far cry from making and assembling tons an hour. Research also tends to take time to move between technologies, as most scientists don’t like to abandon projects half way though just becuse someone else published something interesting.
Also, while I don’t watch the battery space to closely, from my understanding there has traditionally been safety considerations stemming from large quantities of sodium given its tendency to react rather hot and fast when exposed to water.
I think we’re trying to make different points. I’m not in manufacturing but get that lab to product for batteries is glacial; what I was pointing out was the way the story is written – all strengths, zero drawbacks – would leave a credulous reader with that conclusion.