首页> 外国专利> METHOD AND APPARATUS FOR GENERATING ENERGY BY NUCLEAR REACTIONS OF HYDROGEN ADSORBED BY ORBITAL CAPTURE ON A NANOCRYSTALLINE STRUCTURE OF A METAL

METHOD AND APPARATUS FOR GENERATING ENERGY BY NUCLEAR REACTIONS OF HYDROGEN ADSORBED BY ORBITAL CAPTURE ON A NANOCRYSTALLINE STRUCTURE OF A METAL

机译:金属纳米结构上轨道捕获吸附的氢的核反应产生能量的方法和装置

摘要

Technical problems: increasing and regulating the power obtained according to a method and by an apparatus based on nuclear reactions between hydrogen (31) and a primary material (19) comprising cluster nanostructures (21) of a transition metal, in which hydrogen is kept in contact with the clusters (21) within a generation chamber, at a determined process temperature, and in which a process comprising an orbital capture reaction of H− ions (35) by clusters (21) and then a capture reaction by the atoms (38) of the cluster (21) is triggered by impulsively acting on the primary material (19), thus generating an energy as a primary reaction heat (Q1).;Solution: arranging a secondary material (28) such as Lithium and/or Boron and/or a transition metal as 232Th, 236U, 239U, 239Pu within a predetermined distance (L) from the clusters (21) of primary material (19), such that secondary material (28) faces primary material (19), said secondary material (28) adapted to interact with protons (35′″) that are emitted by/from primary material (19) during the above process. Secondary material (28) reacts with such protons (35′″) according to nuclear proton-dependent reactions releasing a secondary reaction heat (Q2) that is added to primary reaction heat (Q1). According to an aspect of the invention, a step, and a means thereto, is provided of/for regulating the heat produced, by adjusting the amount of secondary material (28) that is arranged close to and facing primary material (19).
机译:技术问题:增加和调节根据基于氢( 31 )与包含簇状纳米结构的主要材料( 19 )之间的核反应的方法和设备获得的功率( 21 )过渡金属,其中氢与生成室内的簇( 21 )在确定的过程温度下保持接触,并且其中该过程包括通过簇( 21 )的H-离子( 35 )的轨道俘获反应,然后是原子( 38 )的俘获反应脉冲作用于初级材料( 19 )触发簇( 21 ),从而产生能量作为初级反应热(Q 1 28 ),例如锂和/或硼和/或过渡金属,如 232 Th, 236 < / Sup> U, 239 U, 239 Pu在距主要材料( 21)的簇( 21 )预定距离(L)内> 19 ),以使次要材料( 28 )面对主要材料( 19 ),该次要材料( 28 )进行了调整在上述过程中与质子( 35′′)相互作用,质子由初级材料( 19 )发射或从中释放。次级材料( 28 )与核质子相关的反应与此类质子( 35''')反应,释放出次级反应热(Q 2 )添加到主要反应热(Q 1 )中。根据本发明的一个方面,提供了一种/通过其调节所产生的热量的步骤和装置,通过调节被布置为靠近并面对的二次材料( 28 )的量来进行。主要材料( 19 )。

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