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Destruction of PFAS via Dimensional Resonance: A Theoretical Quantum Harmonic Approach Using ℏ_true

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Zenodo2025-08-09 更新2026-05-26 收录
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This paper presents a theoretical method for the non-thermal destruction of PFAS ("forever chemicals") using quantum harmonic resonance tuned to the carbon–fluorine bond and enhanced by a corrected Planck constant: ℏtrue=ℏ⋅(1+2.5×10−9)\hbar_{\text{true}} = \hbar \cdot (1 + 2.5 \times 10^{-9})ℏtrue=ℏ⋅(1+2.5×10−9) The proposed system drives C–F bond destabilization using a precision-tuned far-IR electromagnetic cavity that matches the bond's vibrational frequency (~33–39 THz). By leveraging dimensional resonance with 5D coupling (Ψ) and enhanced quantum tunneling, PFAS molecules may be broken into safe byproducts (fluoride ion and carbon) without combustion or toxic residues. A full power budget is presented (~150W per reactor), showing energy cost as low as $0.14 per kilogram of PFAS destroyed. Potential cost recovery is analyzed through byproduct reuse: fluoride capture, carbon harvesting, and purified water output. DISCLAIMER:This is a theoretical proposal that requires laboratory validation. No experimental tests have yet confirmed PFAS destruction using this method. The paper is intended to guide future research and development in advanced environmental remediation using corrected quantum physics.

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Zenodo
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2025-07-28
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