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Improved understanding of self-sustained, sub-micrometric multi-composition surface Constantan wires interacting with H2 at high temperatures: experimental evidence of Anomalous Heat Effects

机译:改进了对自我维持的亚微米多成分表面康斯坦坦线在高温下与H2相互作用的理解:异常热效应的实验证据

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This article is an extension of what presented by our team at 17 th International Conference on Cold Fusion, ICCF-17, in Daejon, Korea, in 2012 [1]. It documents the improvements on Constantan-related experiments, started in 2011, in order to study the feasibility of new Nickel based alloys that are able to absorb proper amounts of Hydrogen (H 2 ) and/or Deuterium (D 2 ) and that have, in principle, some possibility to generate anomalous thermal effects at temperatures >100°C. The interest in Ni comes in part because there is the possibility to use also H 2 instead of expensive D 2 . Moreover, cross-comparison of results using H 2 instead of D 2 can be made and could help the understanding of the phenomena involved (atomic, nuclear, super-chemical origin?) due to the use of such isotopes.
机译:本文是我们小组在2012年于韩国大田举行的第17届国际冷聚变大会ICCF-17上所做的延伸的延伸[1]。它记录了从2011年开始的与Constantan相关的实验的改进,目的是研究能够吸收适量的氢(H 2)和/或氘(D 2)的新型镍基合金的可行性,并且原则上,在> 100°C的温度下可能会产生异常的热效应。对Ni的兴趣部分是因为可以使用H 2代替昂贵的D 2。而且,可以比较使用H 2而不是D 2进行结果的交叉比较,并且可以帮助理解由于使用此类同位素而引起的现象(原子,核,超化学起源?)。

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