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Celani and colleagues pursue anomalous heat in hydrogen-loaded commercial Constantan wire, chosen in 2011 over palladium for its lower cost and higher defect density. The wire runs in a compact INFN-LNF reactor at internal temperatures up to 900 °C while the outer jacket stays below 350 °C. With calorimetry accurate to ±1 W, pulsing plus a pulsed counter-electrode raised net excess heat to 20 to 21 W for 80 W input, peaking at a ratio of 1.27 at 60 W. After two weeks idle the effect weakens but partly returns with in-situ redox cycling and extended pulsing.

Anomalous Heat Effects via Longitudinal and Transversal Excitations in Constantan Wires

  1. F. Celani(Author)
  2. C. Lorenzetti(Author)
  3. E. Purchi(Author)
  4. S. Cupellini(Author)
  5. M. Nakamura(Author)
  6. P. Cerreoni(Author)
  7. G. Vassallo(Author)

Publication and identifiers

Work type
Paper
Year
2026
Identifiers

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Rights holder
Journal of Condensed Matter Nuclear Science

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Original title
Anomalous Heat Effects via Longitudinal and Transversal Excitations in Constantan Wires
Attribution
  1. F. Celani(Author)
  2. C. Lorenzetti(Author)
  3. E. Purchi(Author)
  4. S. Cupellini(Author)
  5. M. Nakamura(Author)
  6. P. Cerreoni(Author)
  7. G. Vassallo(Author)
Year
2026
Identifiers