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Alla Kornilova, Sergey Gaydamaka and Vladimir Vysotskii previously reported speeding the decay of reactor caesium-137 by transmutation to barium-138 in growing microbial cultures. Caesium-137 and strontium-90 are the two long-lived reactor isotopes most dangerous to people, because the body absorbs them like potassium and calcium. Here they study stable strontium-88 turning into yttrium-89, as a stand-in for radioactive strontium-90. The work used anaerobic syntrophic microbial associations stimulated at a distance by weak undamped thermal waves. They report synchronised changes in strontium and yttrium, and in potassium and calcium, and suggest yttrium forms because it is a biochemical analogue of calcium.
LENR Transmutation of Stable Sr and K Isotopes in Activated Microbiological Syntrophic Associations
- Alla Kornilova(Author)
- Sergey Gaydamaka(Author)
- Vladimir Vysotskii(Author)
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- Work type
- Paper
- Year
- 2022
- Identifiers
- Original source links
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- Recorded rights status
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- Rights holder
- Journal of Condensed Matter Nuclear Science
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- Original title
- LENR Transmutation of Stable Sr and K Isotopes in Activated Microbiological Syntrophic Associations
- Attribution
- Alla Kornilova(Author)
- Sergey Gaydamaka(Author)
- Vladimir Vysotskii(Author)
- Year
- 2022
- Identifiers
- Original source links