Electrochemical Calorimetry of D2O Electrolysis Using a Palladium Cathode—An Undivided, Open Cell System—

  • Oyama Noboru
    Department of Applied Chemistry, Tokyo University of Agriculture and Technology
  • Ohsaka Takeo
    Department of Applied Chemistry, Tokyo University of Agriculture and Technology
  • Hatozaki Osamu
    Department of Applied Chemistry, Tokyo University of Agriculture and Technology
  • Kurasawa Yuko
    Department of Applied Chemistry, Tokyo University of Agriculture and Technology
  • Yamamoto Nobushige
    Department of Applied Chemistry, Tokyo University of Agriculture and Technology
  • Kasahara Seiji
    Department of Applied Chemistry, Tokyo University of Agriculture and Technology
  • Ohta Naoki
    Department of Applied Chemistry, Tokyo University of Agriculture and Technology
  • Imai Yuko
    Department of Applied Chemistry, Tokyo University of Agriculture and Technology
  • Oyama Yukio
    Japan Atomic Energy Research Institute
  • Nakamura Tomoo
    Japan Atomic Energy Research Institute
  • Shibata Tokushi
    Institute for Nuclear Study, The University of Tokyo
  • Imamura Mineo
    Institute for Nuclear Study, The University of Tokyo
  • Uwamino Yoshitomo
    Institute for Nuclear Study, The University of Tokyo
  • Shibata Seiichi
    Institute for Nuclear Study, The University of Tokyo

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タイトル別名
  • Electrochemical calorimetry of D2O electrolysis using a palladium cathode. An undivided, open cell system.

抄録

The electrochemical calorimetry of the electrolysis of D2O has been carried out using a Pd cathode in an undivided, open cell fashion, together with measuring the total volume of the evolved gases. The excess heat production, observed using a Pd cathode pretreated by a special procedure, can not be explained as a result of the D2–O2 recombination alone. However, the present data certainly do not confirm “cold fusion”, because no evidence has yet been obtained for neutron, gamma-ray, tritium or helium production during our electrolysis of D2O with Pd cathodes.

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