A clever young scout attempts to construct a nuclear reactor in his family’s cabin. What ensued?

Nuclear reactions can be categorized as either fission (when an atomic nucleus splits into two lighter nuclei) or fusion (when two atomic nuclei combine to form a heavier nucleus). You can explore both of these reactions with a simple setup.

Small amounts of radioactive materials can be found in everyday objects, making nuclear fission a practical demonstration. For example, smoke detectors contain about 0.2 milligrams of americium-241, camping gas lanterns are coated with approximately 250 mg of thorium-232, and glow-in-the-dark gun sights contain around 1.2 micrograms of thorium-232. These materials are all radioactive and could potentially be combined to create a breeder reactor that uses neutrons emitted from one source to convert thorium-232 into the more radioactive uranium-233.

For a fusion reaction to occur, the temperature inside a fusion reactor must be hotter than the core of the sun – about 150 million °C (270 million °F) – Photo courtesy of Getty

David Hahn, a boy scout from Michigan, attempted this in 1994, but did not progress beyond the neutron generator stage before drawing attention from authorities. It is unlikely that his setup ever reached a stage where it could generate useful power.

Creating a functioning nuclear reactor from nuclear fission requires the ability to slow and control neutrons to maintain a self-sustaining fission reaction. Achieving this balance is challenging, especially in small reactors, and proper shielding and cooling are essential for safety.

While modern “microreactors” are available in the 5 megawatt range, they are still the size of a shipping container, making them unsuitable for small-scale setups.

Building a fusion reactor that uses an electric field to accelerate deuterium ions and fuse them into helium 3 is possible at home, resulting in a cold purple plasma. However, the energy required for the electric field exceeds the useful energy obtained from nuclear fusion, making it impractical as a reactor.

This article, by Tim Hurst from Sheffield, provides an answer to the question “Can I build a nuclear reactor in my shed?”

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