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Abnormally high heat generation by transition metals interacting with hydrogen and oxygen molecules

机译:过渡金属与氢和氧分子相互作用产生的异常高热量

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Abnormally high heats, exceeding 2000 kJ/mol (20 eV) per molecule of O2, are generated by interaction of the oxygen with the hydrogen absorbed on palladium, gold and nickel particles at 25 °C to 220 °C. The highest heats were observed when the metals were treated with micromole quantities of argon, prior to absorption of hydrogen, as well as its interactions with metal particles reaching nanometer size. In the latter case the heat evolutions due to the interactions with hydrogen were approaching 5000 kJ/mol. The interactions with oxygen in inert gas environments, such as that of argon, yielded higher heat evolutions than those given by pure O2 pulses injected into nitrogen carrier gas. The results revealed an important role of argon in increasing the intensity of atomic hydrogen-oxygen reactions to a level several times higher than the heat of water formation from molecular hydrogen and oxygen.
机译:在25°C至220°C下,氧与吸附在钯,金和镍颗粒上的氢相互作用,会产生异常高的热量,每分子O2超过2000 kJ / mol(20 eV)。当金属在吸收氢之前用微摩尔量的氩气处理时,观察到最高的热量,以及它与达到纳米尺寸的金属粒子的相互作用。在后一种情况下,由于与氢相互作用而产生的热量接近5000 kJ / mol。在惰性气体环境(例如氩气)中与氧气的相互作用所产生的热量要比注入氮气载气中的纯氧气脉冲所产生的热量更高。结果表明,氩在增加原子氢-氧反应强度至比由分子氢和氧形成水的热量高几倍的水平方面具有重要作用。

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