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Self-excited potential hydrogen fusion - by dispersing hydrogen nuclei in metal lattices and maintaining by charged high energy end prod. nuclei of potential hydrogen fusion
Self-excited potential hydrogen fusion - by dispersing hydrogen nuclei in metal lattices and maintaining by charged high energy end prod. nuclei of potential hydrogen fusion
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机译:自激势能氢融合-通过将氢核分散在金属晶格中并通过带电的高能末端产物来维持。潜在氢融合核
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摘要
In hydrogen nuclear fusion in metal lattices, the fusion occurs as a self-excited potential-hydrogen-fusion (PHF) of hydrogen nuclei which are dissolved in metal lattices and which are maintained by the charged high energy end prod. nuclei of the PHF reactions. Electron showers are produced consisting of high kinetic energy electrons which induce further preferred PHF reactions. Metal pref. has an extremely large surface (pref. in foam or micro-cluster form) which is in continuous contact with hydrogen of suitable isotopic compsn. The PHF process may be initiated by bombarding with ionising radiation, passing an electric current through the metal or effecting a glow or arc discharge in the reaction space. Host metal may be subjected to periodic binding stresses in the initiation phase or during the entire reaction and is pref. highly negatively charged during the PHF reaction. ADVANTAGE - Cold fusion process does not require continual energy input once initiated, can employ normal hydrogen and has a reaction rate which can be varied. Part of the released nuclear fusion energy can be directly converted into usable electrical energy.
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