Rotating high-density fusion reactor for neutron-free and neutron-free fusion
A fusion reaction and reactor technology, applied in fusion reactors, low-temperature fusion reactors, thermonuclear fusion reactors, etc., can solve the problem that it is difficult to achieve high density in charged media
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[0066] Applicable fusion reactions
[0067] The above embodiments mainly consider p-B 11 A fusion reaction, involving hydrogen nuclei (protons) and boron nuclei, as described by the following equation:
[0068] P+B 11 →3He 4 +8.68MeV
[0069] The reactants (eg, hydrogen and boron) can be solid (powder, nanoparticle or other), liquid or gaseous, can be mixed into a solution with water or any other solvent, and can exist in elemental state or in any chemical compound form. For example, boron is commonly found in boric acid minerals (including borax, borax tetrahydrate, sorbite, colemanite, and boborite), any of which can be used to fuel the fusion reactor described above (hereinafter referred to as the "alpha unit"). ”) to provide boron fuel. In addition, other boron compounds that are not borate minerals, including but not limited to elemental boron, lanthanum hexaboride, and boron nitride, can also be used.
[0070] Additionally, the Alpha unit is suitable for use with a...
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