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Huge Variety of Nuclides That Arise in the LENR Processes: Attempt at Explanation

Huge Variety of Nuclides That Arise in the LENR Processes: Attempt at Explanation
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摘要 Researches in the field of low-energy nuclear reactions (LENR) have shown a wide variety of manifestations of these phenomena. They appear in metals with hydrogen dissolved in them, in plasma, in gas discharge, in electrolysis, and even in biological systems. In addition to energy release, which far exceeds the capabilities of chemical reactions, LENR is characterized by a huge variety of emerging chemical elements. This report provides examples of appearance of many initially missing elements in different LENR installations. For example, in the nickel-hydrogen LENR reactor created in our laboratory, which worked for 7 months, Ca, V, Ti, Mn, Fe, Co, Cu, Zn, Ga, Ba, Sr, Yb, Hf were found. Moreover, new elements were found not only in the “fuel” but also in the surrounding matter. The huge variety of chemical elements that arise can be explained by the fact that in the processes of LENR, the interaction covers several atoms at once. The article discusses approaches to explaining the phenomena discovered in the process of LENR researches. Researches in the field of low-energy nuclear reactions (LENR) have shown a wide variety of manifestations of these phenomena. They appear in metals with hydrogen dissolved in them, in plasma, in gas discharge, in electrolysis, and even in biological systems. In addition to energy release, which far exceeds the capabilities of chemical reactions, LENR is characterized by a huge variety of emerging chemical elements. This report provides examples of appearance of many initially missing elements in different LENR installations. For example, in the nickel-hydrogen LENR reactor created in our laboratory, which worked for 7 months, Ca, V, Ti, Mn, Fe, Co, Cu, Zn, Ga, Ba, Sr, Yb, Hf were found. Moreover, new elements were found not only in the “fuel” but also in the surrounding matter. The huge variety of chemical elements that arise can be explained by the fact that in the processes of LENR, the interaction covers several atoms at once. The article discusses approaches to explaining the phenomena discovered in the process of LENR researches.
作者 Alexander G. Parkhomov Ekaterina O. Belousova Alexander G. Parkhomov;Ekaterina O. Belousova(Russian Academy of Natural Sciences, Moscow, Russia;Institute of Experimental Mineralogy, Russian Academy of Sciences, Moscow, Russia)
出处 《Journal of Modern Physics》 2022年第3期274-284,共11页 现代物理(英文)
关键词 Nuclear Transmutations LENR Coulomb Barrier Multicore Transformations Hot Metals Particles Collisions Weak Nuclear Interaction NEUTRINO Low Energies Nuclear Transmutations LENR Coulomb Barrier Multicore Transformations Hot Metals Particles Collisions Weak Nuclear Interaction Neutrino Low Energies
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