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The image consists of six steps that show how uranium is used in the production of nuclear power. Step 1 indicates that uranium is mined from the earth. Step 2 shows that uranium ore is converted and enriched to make U-235 fuel pellets. Step 3 highlights that U-235 fuel powers generators to make electricity. Step 4 states that after about four years, fuel becomes spent and is removed. Step 5 illustrates that some spent fuel can be reprocessed and re-used. Finally, step 6 points out that spent fuel that cannot be reprocessed is stored in containers and buried. No numerical data points, percentages, trends, or specific countries or categories are visible in the image.
Given the complexity of the image, the above description may not be entirely accurate.
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The diagram below illustrates the process of uranium utilization in the production of nuclear power.
Overall, the process comprises six stages, starting with the mining of uranium from the earth and concluding with its storage in stainless steel containers buried deep underground.
In the initial step, workers extract uranium from the earth through mining. Subsequently, the uranium ore is converted into gas, where it is enriched to produce U-235 fuel pellets. In the third stage, the Uranium fuel (U-235) is utilized in nuclear power stations, generating 7 billion KWh of electricity per station per year.
In the following step, the spent fuel undergoes four years of usage before being stored in large facilities. Some of the spent fuel is then re-processed and reused in nuclear power stations to generate electricity. In the final stage, the spent fuel that cannot be re-processed is stored in sealed stainless steel containers and buried deep underground.
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