ISSN 2227-3123
Vol. 28, Issue 1, 2019February 01, 2019 CEST
Thermodynamic Prediction for Novel Environmental Biotechnologies of Radioactive Waste Water Purification
Thermodynamic Prediction for Novel Environmental Biotechnologies of Radioactive Waste Water Purification
Oleksandr Tashyrev, Vira Govorukha, Nadiia Matvieieva, Olesia Havryliuk,
Articles in Vol. 28, Issue 1, 2019
Vol. 28, Issue 1, 2019
- An Experiment in Reducing the Radioactivity of Radionuclide (137Cs) with Multi-component Microorganisms of 10 StrainsKyu-Jin YumJong Man LeeGunWoong BahngShanghi Rhee
- “Biological Transmutation” of Stable and Radioactive Isotopes in Growing Biological SystemsVladimir VysotskiiAlla Kornilova
- Biological TransmutationsJean-Paul Biberian
- Nuclear Transmutations and Stabilization of Unstable Nuclei in the Cold Fusion Phenomenon∗Hideo Kozima
- Thermodynamic Prediction for Novel Environmental Biotechnologies of Radioactive Waste Water PurificationOleksandr TashyrevVira GovorukhaNadiia MatvieievaOlesia Havryliuk
- Novel Biotechnologies for Purification of Radioactive Waste WaterVira GovorukhaOleksandr TashyrevValery Shevel
Tashyrev, Oleksandr, Vira Govorukha, Nadiia Matvieieva, and Olesia Havryliuk. 2019. “Thermodynamic Prediction for Novel Environmental Biotechnologies of Radioactive Waste Water Purification.” Journal of Condensed Matter Nuclear Science 28 (1): 50–52. https://doi.org/10.70923/001c.72484.