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MOLECULE CHEMISTRY NUCLEAR FUSION REACTION GENERATION METHOD AND MOLECULE CHEMISTRY NUCLEAR FUSION ENERGY GENERATOR

机译:分子化学核融合反应的产生方法及分子化学核融合能发生器

摘要

In chemical nuclear fusion in which hydrogen ions of nuclear stopping power energy of a few keV per nucleon, that is, deuteron or proton beam, are implanted in a liquid target of molten metal lithium, the reaction rate is increased by about 1011 times by thermodynamic force in the liquid. For putting chemical nuclear fusion to practical use, there is a need to increase the reaction rate by further increasing the thermodynamic force. In order to enhance the thermodynamic force, molecule ions or ion clusters of hydrogen, helium, lithium, helium hydride, lithium hydride, borane or the like withdrawn from an ion source (3) or produced by discharge within a reaction vessel (8) is accelerated to implant the molecule ions into the surface of a liquid target (4) such as molten metal lithium or lithium alloy, whereby a molecule chemistry nuclear fusion reaction, which synergistically enhances and increases the thermodynamic force which acts on constituent atoms of molecule ions within the liquid target, is induced.
机译:在化学核聚变中,将每个核子几keV的核终止动力能的氢离子,即氘核或质子束注入到熔融金属锂的液体靶中,通过热力学将反应速率提高约1011倍力在液体中。为了将化学核聚变投入实际应用,需要通过进一步增加热力学力来提高反应速率。为了提高热力学力,从离子源(3)中抽出或通过在反应容器(8)内放电而产生的氢,氦,锂,氢化氦,氢化锂,硼烷等的分子离子或离子簇。加速将分子离子注入液体目标(4)的表面,例如熔融金属锂或锂合金的表面,从而进行分子化学核聚变反应,从而协同增强和增加作用于分子离子组成原子中的热力学力液体目标被诱导。

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