Replication Experiments at Tohoku University on Anomalous Heat Generation Using Nickel-based Binary Nanocomposites and Hydrogen Isotope Gas

Replication Experiments at Tohoku University on Anomalous Heat Generation Using Nickel-based Binary Nanocomposites and Hydrogen Isotope Gas
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东北大学利用镍基二元纳米复合材料和氢同位素气体进行异常发热的复制实验

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发表时间:
2017
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通讯作者:
M. Kishida
M. Kishida
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作者:
A. Kitamura;A. Takahashi;Koh Takahashi;R. Seto;Y. Matsuda;Iwamura Yasuhiro;T. Itoh;J. Kasagi;Masanori Nakamura;M. Uchimura;Hidekazu Takahashi;T. Hioki;T. Motohiro;Y. Furuyama;M. Kishida

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我们根据 A. Kitamura 和 A. Takahashi 的论文建立了一个新的实验系统来复制异常发热实验。该系统的开发是为了使用液态烃冷却剂的流动量热法精确测量热量的产生,使我们能够在高于 373 K 的温度下进行测量。镍基二元纳米复合材料样品是通过熔融纺丝方法制备的。神户大学的一种人造材料被分成两个样本。一个样品在东北大学加载并测试,另一个样品在神户大学加载和测试,以比较两个不同地方的实验结果。到目前为止已经进行了两次实验。一种是采用 D2 气体实验的 PNZ4s (Pd0:044Ni0:31Zr0:65),另一种是采用 H2 气体实验的 CNZ5s (Cu0:044Ni0:31Zr0:65)。对于使用 D2 气体的 PNZ4 实验,观察到高达 10 W 的过热。过剩能量达到2.5 MJ,对应于每吸收D 14.9 eV。CNZ5s (Cu0:044Ni0:31Zr0:65)与H2气体实验也显示出2至5 W的异常余热。多次观察到反应室压力和气体温度同时增加的事件,这表明反应室中产生高温气体。过剩能量达 1.9 MJ,每个氢原子产生的能量估计为 67.8 eV/H。对于采用相同制造工艺的两个样品,本工作的结果在质量上与神户大学进行的类似实验的结果一致。这些观察结果应该很难仅通过已知的化学过程来解释。 c ⃝ 2017 ISCMNS。版权所有。 ISSN 2227-3123
We built a new experimental system to replicate the anomalous heat generation experiments based on the papers by A. Kitamura and A. Takahashi. The system was developed in order to measure precisely heat generation using a flow-calorimetry method with liquid hydrocarbon coolant that enables us to measure at temperatures higher than 373 K. The Ni-based binary nano-composite samples were prepared by the melt spinning method. A fabricated material at Kobe University were separated into two samples. One sample was loaded and tested at Tohoku University and the other at Kobe University, in order to compare the experimental results at the two different places. Two experiments were performed up to now. One was the PNZ4s (Pd0:044Ni0:31Zr0:65) with D2 gas experiment and the other is the CNZ5s (Cu0:044Ni0:31Zr0:65) with H2 gas experiment. For the PNZ4s with D2 gas experiment, excess heat up to 10 W was observed. The amount of excess energy reached 2.5 MJ and it corresponded to 14.9 eV per absorbed D. CNZ5s (Cu0:044Ni0:31Zr0:65) with H2 gas experiment also showed anomalous excess heat ranging from 2 to 5 W. Coincident increase events of the pressure of reaction chamber and gas temperature, which suggested high temperature gas generation in the reactor chamber, was observed many times. The amount of excess energy amounted to 1.9 MJ and the generated energy per hydrogen atom was estimated as 67.8 eV/H. For the both samples subjected to the same fabrication process, results of the present work qualitatively agreed with those of the similar experiment performed at Kobe University. And these observations are supposed to be very difficult to explain by known chemical processes only. c ⃝ 2017 ISCMNS. All rights reserved. ISSN 2227-3123
Yasuo Iwamura:日本应用物理学杂志。
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