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Study of a Power Source Based on Low Energy Nuclear Reactions (LENRs) Using Hydrogen Pressurized Nanoparticles

机译:基于氢加压纳米粒子的基于低能核反应(LENR)的电源研究

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We are studying anomalous heat, attributed to Low Energy Nuclear Reactions (LENRs), generated from metal alloy nanoparticles loaded with hydrogen (or deuterium) through pressurizing the vessel containing the particles. The primary result thus far is that the excess energies observed in experiments to date are all well above maximum estimation of what could be attributed to known chemical reactions. The discovery of ultra-high-density hydrogen cluster formation in void and dislocation loops has allowed us to develop host materials that give reasonably reproducible results The hydrogen in these clusters is close to metallic density and theory shows the cluster atoms can react when another hydrogen diffuses in transferring momentum to the cluster atoms.
机译:我们正在研究归因于低能核反应(LENR)的异常热量,该异常热量是通过向装有氢(或氘)的金属合金纳米颗粒加压包含颗粒的容器而产生的。迄今为止的主要结果是,迄今为止在实验中观察到的多余能量都远高于对可归因于已知化学反应的最大估计值。在空隙和位错环中形成超高密度氢原子团的发现,使我们能够开发出可合理再现结果的主体材料。这些原子团中的氢接近于金属密度,并且理论表明,当另一个氢扩散时,原子团簇可以发生反应。在将动量传递给簇原子上。

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