Finland's plan to bury spent nuclear fuel for 100k years
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Re: Finland's plan to bury spent nuclear fuel for 100k years
#2If your nuclear waste is that "hot" (highly radioactive), then you're not draining as much energy out of the material.
Ideally, the closer to lead you are, the more energy is drained out. And that's what I'd hope to see from the mining required for uranium. Instead, we seem to run it once and then go "whoop have to stop".
Re: Finland's plan to bury spent nuclear fuel for 100k years
#3Another thing that is weird to me is that everyone says nuclear waste is hazardous for a uniquely long time, but it become less hazardous over time. Many non-radioactive materials, like arsenic and mercury, are toxic forever.
In the US we have WIPP operating, but it stores weapons-related radioactive material rather than commercial spent fuel, so I guess it doesn't count.
Re: Finland's plan to bury spent nuclear fuel for 100k years
#4What I don't get is the following: If your nuclear waste is that "hot" (highly radioactive), then you're not draining as much energy out of the material. Ideally, the closer to lead you are, the more energy is drained out. And that's what I'd hope to see from the mining required for uranium. Instead, we seem to run it once and then go "whoop have to stop".
Re: Finland's plan to bury spent nuclear fuel for 100k years
#5There's apparently a documentary on this project, "Into Eternity," released in 2010, which has been on my list since earlier this morning (i.e., since I read about its existence).
0. https://en.wikipedia.org/wiki/Long-term_nuclear_waste_warnin...
Re: Finland's plan to bury spent nuclear fuel for 100k years
#6What I don't get is the following: If your nuclear waste is that "hot" (highly radioactive), then you're not draining as much energy out of the material. Ideally, the closer to lead you are, the more energy is drained out. And that's what I'd hope to see from the mining required for uranium. Instead, we seem to run it once and then go "whoop have to stop".
Re: Finland's plan to bury spent nuclear fuel for 100k years
#7The worst possible scenario they calculated:
1) the nuclear canister would corrode in a thousand years instead of the calculated hundred thousand years,
2) and at the same time installed clay buffer surrounding canisters would inexplicably disappear.
3) In addition, the groundwater would magically flow upwards and
4) a city would be built on the site. A person who would live on the most polluted square meter from cradle to grave and would only eat food grown there and drink the most polluted water
Result: people would only receive three times the radiation dose compared to people currently living in a city of Tampere.
Re: Finland's plan to bury spent nuclear fuel for 100k years
#8Underground is nice until you get radioactive groundwater. The time cost of 100k years of maintaining safety seems more than the financial cost of maintaining a F9 fleet and disposing of second stages.
Re: Finland's plan to bury spent nuclear fuel for 100k years
#9Personally I'm rooting for the future where a fleet of falcon 9's launch escape velocity stage 2's that head straight for the sun. Underground is nice until you get radioactive groundwater. The time cost of 100k years of maintaining safety seems more than the financial cost of maintaining a F9 fleet and disposing of second stages.
Re: Finland's plan to bury spent nuclear fuel for 100k years
#10What I don't get is the following: If your nuclear waste is that "hot" (highly radioactive), then you're not draining as much energy out of the material. Ideally, the closer to lead you are, the more energy is drained out. And that's what I'd hope to see from the mining required for uranium. Instead, we seem to run it once and then go "whoop have to stop".
(1) the radiation levels increase, making it more dangerous for workers to do maintenance and safety operations (so overall reactor design would need to take this into account),
(2) some fission products and transuranics (plutonium etc.) act as neutron poisons (absorbing neutrons rather than generating energy-productive fission events), resulting in reduced reactor output and instability issues as the accumulate in the fuel rods.
(3) since you are actually transmuting elements, physical and chemical changes take place resulting in fuel rod corrosion and degradation, swelling and structural changes, etc. which could lead to catastrophic failure by clogging the reactor core and preventing coolant circulation.
[edit] note that reprocessing the spent fuel (plutonium recovery) for use in MOX reactors is possible, but since this is also how you run a nuclear weapons program, there are additional concerns and the costs are really high:
https://world-nuclear.org/information-library/nuclear-fuel-c...