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Nuclear power relies on chain reactions involving uranium-235, but because the isotope's concentration in natural ores is too low to sustain these reactions, enrichment is needed to produce more highly concentrated fuel.
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Only about 0.7% of the uranium ore found on Earth is uranium-235, which contains 92 protons and 142 neutrons, while most of the rest is uranium-238, which contains more neutrons and requires more energy to initiate nuclear reactions.
Nuclear power plants require concentrations of uranium-235 between 3-5%, while small nuclear reactors need concentrations up to 20%, and nuclear weapons require concentrations as high as 90%.
To enrich uranium, the ore is converted to a gas and run through a centrifuge, which causes the heavier uranium isotopes to drift to the outside as the gas is spun, leaving lighter uranium-235 in the center to be collected or sent through subsequent centrifuges to increase enrichment as more of the heavier uranium is pulled out.
When the desired enrichment of uranium—that is, the ratio of uranium-235 to the other isotopes—is achieved, the gaseous mixture is chemically converted into a powder and pressed into fuel pellets for eventual use.
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