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Excess Heat Production by the Pair Annihilation of Ionic Vacancies in Copper Redox Reactions

机译:铜氧化还原反应中离子空位对的Pair灭导致热量过多

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摘要

In the pair annihilation of ionic vacancies with opposite charges, a drastic excess heat production up to 410 kJ mol−1 in average at 10 T (i. e., 1.5 times larger than the heat production by the combustion of H2,  285.8 kJ mol−1) was observed, which was then attributed to the emission of the solvation energy stored in 0.61 nm radius vacancies with two unit charges. Under a high magnetic field, using Lorentz force, we made ionic vacancies created in copper cathodic and anodic reactions collide with each other, and measured the reaction heat by their annihilation. Ionic vacancy is initially created as a byproduct in electrode reaction in keeping the conservation of linear momentum and electric charge during electron transfer. The unstable polarized particle is stabilized by solvation, and the solvation energy is stored in the free space of the order of 0.1 nm surrounded by oppositely charged ionic cloud. The collision of the ionic vacancies was carried out by circulation-type magnetohydrodynamic electrode (c-type MHDE) composed of a rectangular channel with a pair of copper electrodes and a narrow electrolysis cell.
机译:在带相反电荷的离子空位的成对an灭中,在10 T时平均产生高达410 kJ mol -1 的急剧过量热量(即,比H2燃烧产生的热量大1.5倍) ,观察到285.8 kJ mol -1 ),这归因于以两个单位电荷存储在0.61 nm半径空位中的溶剂化能量的释放。在高磁场下,利用洛伦兹力,我们使铜阴极和阳极反应中产生的离子空位相互碰撞,并通过an灭来测量反应热。离子空位最初是作为电极反应中的副产物而产生的,以保持电子传输过程中线性动量和电荷的守恒。不稳定的极化粒子通过溶剂化作用得以稳定,并且溶剂化能量存储在被带相反电荷的离子云围绕的0.1 nm数量级的自由空间中。离子空位的碰撞通过循环型磁流体动力电极(c型MHDE)进行,该电极由带有一对铜电极的矩形通道和一个狭窄的电解槽组成。

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