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> But you can’t just turn a nuclear reactor on and off No, but I can regulate its output up and down. You don't have to turn a reactor off entirely, its output
by usrbinbash 2y ago
> But you can’t just turn a nuclear reactor on and off
No, but I can regulate its output up and down. You don't have to turn a reactor off entirely, its output can be regulated up and down without shutting down completely.
> and makes it more commercially viable for batteries.
The problem with batteries isn't commercial viability. The problem is physical availability. There simply isn't enough Li in the world to make Solar as powerful as it would need to be to stem a majority of our energy requirements, and as of now, we don't have another battery technology that would be suitable.
At a macro view, the whole thing isn't an economic question.
Here are the three facts:
1. We cannot continue with fossil fuel power as we did before (because climate change)
2. Solar isn't up to the task of taking (among other reasons because we don't have the storage required)
3. The worlds energy demands are increasing. Maybe it could be made to grow slower, but reversing it is unlikely
So, what options does that leave us with? Wind suffers from similar problems as Solar. Hydro is geographically limited, as is Tidal. Geothermal is likely too weak. Fusion power doesn't exist yet. And as cool as a Dyson-Swarm would be, that's even further away than Fusion.
So, what technology remains?
- jncfhnb 2y ago1) lithium mining is up 6x since 10 years ago. You shouldn’t assume the average over ten years is a good indicator about capacity to mine. Mining rates are growing quickly. 2) there are competing materials for new battery tech besides lithium 3) battery capacity deployed per year is growing exponentially 4) when you have large over supplies of energy you can pursue hydrogen. Green hydrogen should be at parity with grey hydrogen in less than a decade. Not cost competitive with just using fuels or batteries for utility scale, but slowly getting there. 5) commercial viability absolutely matters. Subsidizing an expensive source of energy rather than building more and more capacity for cheap energy is a bad strategy while using fossil fuels as a crutch in the interim is a bad strategy. Running a nuclear plant at low capacity craters its financial viability.
- anon84873628 2y agoPlus, the new materials for battery tech could be as simple as "molten sand". We've really barely scratched the surface on grid scale storage.
- usrbinbash 2y ago> Mining rates are growing quickly. https://www.weforum.org/agenda/2022/07/electric-vehicles-world-enough-lithium-resources/ https://www.weforum.org/agenda/2022/07/electric-vehicles-wor... > there are competing materials for new battery tech besides lithium And which of those are mass-production ready and are being deployed? Maybe one day, one of them will. Until such time, this argument is about the situation as-is. > when you have large over supplies of energy you can pursue hydrogen. The over supply would need to be truly enormeous, because Hydrogen is a cryogenic gas. It needs to be pressurized and cooled, both of which requires a constant expenditure of energy which is lost as usable power. It also carries [safety risks][1], and is [infamously hard to keep under control][1]. > commercial viability absolutely matters. Long term, preventing climate change matters more. Alot more. [1]: https://en.wikipedia.org/wiki/Hydrogen_safety https://en.wikipedia.org/wiki/Hydrogen_safety [2]: https://gizmodo.com/nasa-hydrogen-leaks-sls-rocket-space-shuttle-1849500702 https://gizmodo.com/nasa-hydrogen-leaks-sls-rocket-space-shu...
- jncfhnb 2y ago> And which of those are mass-production ready and are being deployed? Maybe one day, one of them will. Until such time, this argument is about the situation as-is. Sodium ion batteries are doing just fine. The drawbacks are not significant. Lithium is simply cheap enough to be preferable at the moment and likely will continue to be. > The over supply would need to be truly enormeous, because Hydrogen is a cryogenic gas. It is. Negative energy prices at peak generation times are increasingly a thing. > Long term, preventing climate change matters more. Alot more. Having 5x more energy available to do useful work, per dollar, is going to enable a lot more… useful work. if you’re willing to increase the cost of energy by 5x, then you should probably also be willing to just raise the price of energy during off generation hours to try and align usage to generation and mitigate the battery necessity altogether. Because that would STILL be cheaper for customers than the high prices you’re introducing by suggesting we go for nuclear
- usrbinbash 2y ago> Sodium ion batteries are doing just fine. Again, this discussion is about the as-is situation. If and when Na-ion enters mass production on a comparable scale, I will happily discuss it. > Negative energy prices at peak generation times are increasingly a thing. That does not indicate that we over-produce to a degree that would make H2 as a storage vector viable. Plus, alot of over-capacity has more to do with lagging infrastructure (e.g. Germany has enormeous problems getting SOlar power to where it is needed) than it has with actual net-overproduction. > f you’re willing to increase the cost of energy Again: Economic concerns lose lose long term to environmental and physical ones.