Conceptualized Fusion Reactor based on Gas Turbine with High Temperature CO2

Author:

Kodama Noriyuki

Abstract

Author discovered the mechanism of Cold fusion that covalent bond compression of D-D transition electron to deep orbit which distance is a few femto- meters from the nucleus, which electron density between d-d is so dense that it shields the coulomb repulsive force to cause Fusion, and discovered that nucleus is constituted only by proton and internal electron and neutron is a pair of proton and electron in deep orbit. Dr. Ohmasa claims that his transmutation reactor produce produces precious metal from base metal, which shows experimentally and author discovered that femto-H2 fusion to metal cause transmutation, which proves the existence of femto-H2, and femto-D2 therefore current nucleus model is probed to be incorrect. Dr. Ohmasa also claims that CO2 can be reduced by burning with fossil gas fuel mixed with H2 and O2, and author hypothesized the cause that compression of C-O bond cause fusion between C and O to be P and Si based on the correct nucleus model and based on author’s Cold fusion mechanism of bond compression. Developing this mechanism and hypothesis, I would like to propose the conceptualized fusion reactor based on gas turbine with high temperature CO2. D-D bond can be compressed by high temperature CO2 and by the collision of high-speed blades in gas turbine to cause D+D fusion and C+O fusion, which reduce the CO2 emission. Reactor needs to be cooling to generate power by steam turbine and high- speed blade rotation produce power and causes fusions.

Publisher

International Journal of Innovative Science and Research Technology

Reference37 articles.

1. Noriyuki Kodama, Correct D2O Cold Fusion Reactor with Strong Alkaline Electrolyte in IJISRT, Volume 8, Issue 7, (2023) July, Available from Scribd : https://tinyurl.com/nu5teade

2. Noriyuki Kodama, Novel Cold Fusion Reactor with Deuterium Supply from Backside and Metal Surface Potential Control, in IJISRT, Volume 6, Issue 6, June,(2021), Available from Scribd : https://bit.ly/2S3m5Tu

3. Noriyuki Kodama , Mechanism of Hydrogen Embrittlement by Volumetric Expansion and Transmutation by Cold Fusion, in IJISRT, Volume 8, Issue 4, (2023), April, DOI : https://doi.org/10.5281/zenodo.7894536

4. J. Va’vra, A simple argument that small hydrogenmay exists, Phys. Lett. B, 794 (2019) 130-134. Also available from https://www.researchgate.net/ deref/https%3A%2F%2Farxiv.org%2Fftp%2Farxiv%2Fpapers%2F1906%2F1906.08243.pdf?_tp=eyJjb250ZXh0Ijp7ImZpcnN0UGFnZSI6ImhvbWUiLCJwYWdlIjoicHVibGljYXRpb24iLCJwb3NpdGlvbiI6InBhZ2VDb250ZW50In19

5. T. Yamamoto, D. Zeng, T. Kawakami, V.Arcisauskaite, K. Yata, M.A. Patino, N. Izumo, J.E.McGrady, H. Kageyama, M.A. Hayward, The role of π-blocking hydride ligands in a pressure-inducedinsulator-to-metal phase transition in SrVO2H, NatureComm. 8 (2017). Also available from http://hdl.handle.net/2433/227748

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