I 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…
My first EV was a Volt which had only ~30 miles of EV range before it switched to gas. I bought it because I was EV curious but worried about range and I got a crazy cheap lease from GM. I drove it for three years and did a few short road trips. When I returned it, my total driving stats: 99% on electrons.
Lithium-free sodium batteries exit the lab and enter US production
241–250 of 396 posts
Re: Lithium-free sodium batteries exit the lab and enter US production
#242Earlier 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.
Those would need to get cycled a lot(many times per day). You might want one for your house if you wanted to charge quickly at home, but for charging stations, I think more realistically they'd have 10x less charging spots if each person was only there 1/10th the time. So the peak would be the same, but if there were too many customers then sort of like at a busy gas station people would be waiting for a spot rather…
Fortunately these batteries have "an estimated lifespan of 50,000 cycles". Also, since there aren't super-dangerous elements in them, they should be much easier and cleaner to recycle/renew - especially with the giant recharge-station-scale ones' we're talking about, which could be designed specifically for that.
Re: Lithium-free sodium batteries exit the lab and enter US production
#243Earlier quoted context omitted.
This falls in line with a plug in hybrid being an excellent alternative to evs for most people. 30-50 miles of driving around town for work an errands, with an ICE for the occasional longer trip. Almost all driving will be electric without the charge anxiety.
My hesitation with hybrids is that I keep all the associated maintenance costs of an ICE engine. Now I have two power trains and energy systems to maintain instead of just one.
Re: Lithium-free sodium batteries exit the lab and enter US production
#244Earlier quoted context omitted.
Why would you need storage for half of your annual electricity usage to be self-sufficient? It seems like you could achieve that with far, far less battery, perhaps combined with slightly more solar.
Our panels produced a mere 60kWh in december. We've got 6 months where we use more than we produce. Storing 50% was a quick estimate as for what we'd need. Anybody got better numbers for that?
Re: Lithium-free sodium batteries exit the lab and enter US production
#245Earlier quoted context omitted.
Well, hybrids sometimes get to replace the transmission with EV bits, like Toyota's system. Imagine an engine and exhaust system; now multiply the complexity by 100 and you have a modern transmission. Toyota hybrids (and GM/Chrystler/Honda) replace all that with a single planetary gearset, or with Honda, one clutch. Other systems, think Volvo, pop the EV bits in the back of the car and replace where the drive shaft u…
Modern transmissions can’t be two orders of magnitude more complicated than a modern ICE. If they are then I need to get into transmission design. An automatic transmission is basically just a series of planetary gears anyway. I would expect the marginal complexity between an ICE transmission and a hybrid transmission to be within a multiple of 2, but closer to parity. They’re both extremely reliable but an EV transm…
Re: Lithium-free sodium batteries exit the lab and enter US production
#246Earlier quoted context omitted.
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…
Aren't batteries quite limited in their ability to provide synthetic inertia? Sure, they can respond on a second or tenth-of-second scale, but they don't provide the kind of instantaneous inertia you get from spinning rust. Inverters aren't exactly designed to just eat power surges, they'll instantly disconnect instead. That's why the UK grid has been building some "high-inertia synchronous compensators", and a 2019…
Re: Lithium-free sodium batteries exit the lab and enter US production
#247I 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…
MBAs at car manufacturing companies will ensure that battery pack cost savings are NOT passed on to the consumer, don't worry about that.
We were supposed to hit $100/KWh on battery packs several years ago, but EV prices skyrocketed instead, despite literally being in the same plastic/aluminum shitbox where every car looks alike.
Cheap battery packs = higher margins for companies.
Re: Lithium-free sodium batteries exit the lab and enter US production
#248Earlier quoted context omitted.
My first EV was a Volt which had only ~30 miles of EV range before it switched to gas. I bought it because I was EV curious but worried about range and I got a crazy cheap lease from GM. I drove it for three years and did a few short road trips. When I returned it, my total driving stats: 99% on electrons.
Hybrids get a bad rep. It makes for such a difference: knowing that you don't need to worry about that 1%.
Re: Lithium-free sodium batteries exit the lab and enter US production
#249Earlier quoted context omitted.
Are they safer? Sodium is also very highly reactive. Otherwise agreed, I'm very happy with form factor of 5-10 year old phones.
Since na-ion cells are available on aliexpress, youtubers already did puncture tests, and indeed they did not catch fire. Seems like sodium is better "hidden" in the cathode/anode so it won't react witth the air so quickly as lithium when battery innards are exposed.
Also it's my understanding that neither sodium batteries nor li-ion batteries have metallic sodium/lithium in them (besides small amounts which build up in heavily used li-ion cells or something).
Re: Lithium-free sodium batteries exit the lab and enter US production
#250Earlier quoted context omitted.
This falls in line with a plug in hybrid being an excellent alternative to evs for most people. 30-50 miles of driving around town for work an errands, with an ICE for the occasional longer trip. Almost all driving will be electric without the charge anxiety.
My hesitation with hybrids is that I keep all the associated maintenance costs of an ICE engine. Now I have two power trains and energy systems to maintain instead of just one.