@kravietz
Even if someone cut down the trees in their yard, PV is still one of the best sources of energy:
https://cleantechnica.com/2020/12/16/mediocrity-is-the-enemy-of-the-solution/
@mithrandir @kravietz
Definitely worth investigating to some extent. Scaling properties on solar are hard to beat, but small self-contained nuclear batteries could be competitive.
@mithrandir @kravietz
Per the link I dropped, problem with NEW nuclear is it takes like 15 years to bring it to completion. So shutting down nuclear prematurely is probably a bad plan, but spinning it up right now is kind of a case of too-little-too-late. New solar deployment is up within a year.
Also scaling properties. Every solar panel built makes building the next one cheaper. True too of reactors but not many of them are (ever) made so scale doesn't happen.
@mithrandir @kravietz
1. "Naive" economies of scale, bigger more efficient factories, better processes.
2. R&D-based economies of scale: more people buy PV, more competition, more R&D investment --> higher efficiency, longer lasting PV made with cheaper materials and processes.
Same story as batteries. It's not govt research that's driving these curves, it's competition.
@lain @mithrandir @kravietz
Batteries. Buy a phone, buy a Tesla, push dat curve.
Because PV is actually made mostly of mined resources, as this friendly ad from Australian Mining (!) demonstrates
@kravietz @lain @mithrandir
A PV cell is mined and then runs 10 years. A cm3 of gas is mined and then burned within a couple of hours.
Also I prefer the Australians, they don't try to invade Europe every chance they get.
I don't think anybody supports fossil fuels in this thread, so this argument is irrelevant.
The problem with PV is specifically what you described - it runs 10 years, and then you need a new one.
Per 1 W of energy mining requirements are much higher for PV than other sources.
Then you need a whole lot of them due to low surface power density.
Then you need even more due to low capacity factor.
And then you need storage.
@mithrandir @lain @kravietz
Love how they have this little black sliver "Geological repository". Cost of storing the waste 100,000 years is way higher than that, but I guess that's close to the cost of giving it to the Mafia to dump off the coast of Somalia.
@cjd That’s the problem most people have with nuclear power, after the elephant in the room, dirty bombs all over your country. It’s hard to convince a people who couldn’t hold their country together for 300 years that there’s a good plan for the next 10,000 years. (Did you write 100,000 on purpose?) @mithrandir @lain @kravietz
But it's based on three fundamental misconceptions:
1) that only nuclear reactors produce radioactive waste
2) that it needs storing for 100'000 or 10'000 years
3) that radioactive waste is the *only* one that needs safe storage for a long time
> stored at the reactor sites themselves
I explained above. After 60 years of nuclear power plants operations there's not enough actual nuclear waste to economically justify long-term geologic repository. This is the only reason why it's now being stored in plants. Storages are being built in France, Finland etc.
https://en.wikipedia.org/wiki/Onkalo_spent_nuclear_fuel_repository
> check the comma key on your keyboard
This is the 1000's separator in Europe :)
@kravietz Probably the fastest word with nine characters I can type on my keyboard is wikipedia. I haven’t figured out how to get Duck-Duck-Go to add -wikipedia to my searches and I don’t want to even pollute my mind with their synopses on the search page, much less click on it. Might just as well ask the nuclear salesmen or CNN.
You’d be surprised, if you do that, what a dearth of information there is on the web. They are a monopoly with all the validity of google, twitter, facebook, etc. @lain @cjd @mithrandir