A Thorium Reactor in the Desert Has Rewritten the Rules of Nuclear Power
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A Thorium Reactor in the Desert Has Rewritten the Rules of Nuclear Power
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Re: A Thorium Reactor in the Desert Has Rewritten the Rules of Nuclear Power
#2Re: A Thorium Reactor in the Desert Has Rewritten the Rules of Nuclear Power
#3Re: A Thorium Reactor in the Desert Has Rewritten the Rules of Nuclear Power
#41) Molten salt is corrosive as hell and will chew through your pipes.
2) It can't be serviced. If it ever shuts down and solidifies, it cannot restart.
Re: A Thorium Reactor in the Desert Has Rewritten the Rules of Nuclear Power
#5Did anyone figure out how to handle two fundamental problems of MSRs yet? 1) Molten salt is corrosive as hell and will chew through your pipes. 2) It can't be serviced. If it ever shuts down and solidifies, it cannot restart.
Re: A Thorium Reactor in the Desert Has Rewritten the Rules of Nuclear Power
#6Did anyone figure out how to handle two fundamental problems of MSRs yet? 1) Molten salt is corrosive as hell and will chew through your pipes. 2) It can't be serviced. If it ever shuts down and solidifies, it cannot restart.
Re: A Thorium Reactor in the Desert Has Rewritten the Rules of Nuclear Power
#7is not really true. The Shippingport Atomic Power Station produced power:
>The thorium core was rated at 60 MW(e), produced power from 1977 through 1982 (producing over 2.1 billion kilowatt hours of electricity) and converted enough thorium-232 into uranium-233 to achieve a 1.014 breeding ratio. (wikipedia)
Thorium has been around for ages but never seemed profitable which is why the Chinese made a 2MW research reactor rather than a 1GW production one. For comparison they have 57GW of uranium plants working and another 100GW or so planned.