Earlier quoted context omitted.
Let's unpack it then. You've stated: >"Mostly from Australia and Chile" seems like the opposite of baggage, that sounds like about the best you could hope for in a global commodity, so many of which come from unstable regions, conflict regions, or outright adversaries. So let's break it down with some facts (all easily searchable.) (1) The graph states that Australia is the largest producer of Lithium, and states tha…
China doesn't have largest Li deposits. It's a hub area. Perhaps THE hub area for industrial goods. You didn't really refute GP's point.
Lithium-free sodium batteries exit the lab and enter US production
201–210 of 396 posts
Re: Lithium-free sodium batteries exit the lab and enter US production
#202I had an early EV with only 80 miles of range, and found it extremely useful for most in town travel and commuting. Now that EVs are pushing ~400 miles range at about 300Wh/kg, assuming sodium is about half that (from what I've seen), you'd still get a respectable 100-200 miles in a car. For me, and I imagine a lot of people, that would be totally acceptable if it means lower cost, and batteries that effectively last…
From the article it claims charge speed 10x that of lithium and 50,000 cycle lifetime. I don’t know about you but a EV that can go 150 miles and charge to 80% again in 2min would be super compelling to me. Solid commuter car but not too annoying on the rare roadtrip. But, I am guessing grid frequency regulation use cases are going to make these too expensive for a car for a long time.
Re: Lithium-free sodium batteries exit the lab and enter US production
#203This is what baffles me about Li batteries for grid use. Using high energy / weight is very costly and completely irrelevant for grid batteries.
Re: Lithium-free sodium batteries exit the lab and enter US production
#204I had an early EV with only 80 miles of range, and found it extremely useful for most in town travel and commuting. Now that EVs are pushing ~400 miles range at about 300Wh/kg, assuming sodium is about half that (from what I've seen), you'd still get a respectable 100-200 miles in a car. For me, and I imagine a lot of people, that would be totally acceptable if it means lower cost, and batteries that effectively last…
Re: Lithium-free sodium batteries exit the lab and enter US production
#205So, with about 10.000 kg of these in my basement (2MWh capacity), I should be mostly self-sufficient? Nice! (4MWh electricity usage per year, with solar panels producing slightly more)
i use between 1 and 2 MWh a month... Do you live underground and not have anything electronic? 1000KWh is 1MWh. I guess if one has all natural gas appliances and no need for air conditioning it's possible to get down to 333KWh a month. i have owned and ran computers that used more than that a month, for goodness' sake.
Re: Lithium-free sodium batteries exit the lab and enter US production
#206Earlier quoted context omitted.
I wonder what that will mean for charging infrastructure that suddenly has to deliver 10x power to enable that. Not sure that sort of charging could be as ubiquitously placed as gas stations
Not that much, grids can and do deal with highly variable loads all the time, as all the heavy machinery involved in traditional power generation (=generators, gearboxes, axles, turbines) has a lot of inertia that buffers sudden changes. However, as more and more generation capacity shifts to renewable sources that by design have very small (wind) to zero (solar) inertia, there will be a requirement to build out freq…
Also I'd say the inertia in a normal wind turbine doesn't count because it's not tied into the grid frequency.
Re: Lithium-free sodium batteries exit the lab and enter US production
#207Earlier quoted context omitted.
From the article it claims charge speed 10x that of lithium and 50,000 cycle lifetime. I don’t know about you but a EV that can go 150 miles and charge to 80% again in 2min would be super compelling to me. Solid commuter car but not too annoying on the rare roadtrip. But, I am guessing grid frequency regulation use cases are going to make these too expensive for a car for a long time.
Compelling to me also, as a person who has shied away from EVs because of charging time annoyances. I'd gladly trade the mileage for charging speed every time. Getting excited for what's to come.
Think of it like modern SLC backed QLC flash storage. As long as the usage profile fits inside of the cache, it runs as though the entire system is cache.
Re: Lithium-free sodium batteries exit the lab and enter US production
#208Earlier quoted context omitted.
Just have the same batteries in the charging station to smooth out power usage? Seems a lot cheaper and operationally less complex than a gas station.
i doubt if the batteries can handle the type of surge output as the superchargers require.
Battery-backed charging stations are already common, because it allows use of cheaper grid interconnection, and use of cheaper off-peak or renewable energy.
Re: Lithium-free sodium batteries exit the lab and enter US production
#209I had an early EV with only 80 miles of range, and found it extremely useful for most in town travel and commuting. Now that EVs are pushing ~400 miles range at about 300Wh/kg, assuming sodium is about half that (from what I've seen), you'd still get a respectable 100-200 miles in a car. For me, and I imagine a lot of people, that would be totally acceptable if it means lower cost, and batteries that effectively last…
For example, my daily mileage averages about 5 miles. As an errand-runner, a 30 mile EV would be very practical. The huge benefit of this is a smaller and cheaper battery, and the biggie - much less weight. Much less weight leads to much less tire/brake wear and tire/brake dust pollution.
I'd still have a second gas car for the trips.
Re: Lithium-free sodium batteries exit the lab and enter US production
#210Earlier quoted context omitted.
"Mostly from Australia and Chile" seems like the opposite of baggage, that sounds like about the best you could hope for in a global commodity, so many of which come from unstable regions, conflict regions, or outright adversaries. Yes, I know that China does most of the refining/assembly, but that has little to do with the chemistry. "Building new Na-ion capacity outside China" is probably even harder than "building…
Let's unpack it then. You've stated: >"Mostly from Australia and Chile" seems like the opposite of baggage, that sounds like about the best you could hope for in a global commodity, so many of which come from unstable regions, conflict regions, or outright adversaries. So let's break it down with some facts (all easily searchable.) (1) The graph states that Australia is the largest producer of Lithium, and states tha…