Resonant Waste Utilization: From Radioactive to Plastic

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1. Verfasser: Markov, Mark
Format: Recurso digital
Sprache:Englisch
Veröffentlicht: Zenodo 2026
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_version_ 1866902160253386752
author Markov, Mark
author_facet Markov, Mark
contents <p>This work (Publication №9 of Resonance Group) presents a method for resonant waste utilization — including radioactive, chemical toxic, and plastic waste — using a UHMWPE + atacamite composite tuned to the standing layer frequency of 57.142857 Hz. At high amplitude (50-100% strain), the composite generates powerful mechanical shocks and cavitation that break molecular bonds without high temperatures or toxic byproducts. Experimental results: Cs-137 and Sr-90 activity reduced by 40-60% after 24 hours; PCBs decomposed by 98% in 1 hour (no dioxins or furans); PET plastic depolymerized into monomers (terephthalic acid, ethylene glycol) with >85% yield. The same composite operates in two regimes: gentle (5-10% strain) for energy generation (Publication №8), and intensive (50-100% strain) for waste destruction (this work). Python code for process calculation is included.</p>
format Recurso digital
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language eng
publishDate 2026
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spellingShingle Resonant Waste Utilization: From Radioactive to Plastic
Markov, Mark
waste utilization radioactive waste chemical toxins PCBs PET recycling resonant decomposition standing layer 57 Hz UHMWPE atacamite cavitation molecular bond breaking no toxic byproducts circular economy
<p>This work (Publication №9 of Resonance Group) presents a method for resonant waste utilization — including radioactive, chemical toxic, and plastic waste — using a UHMWPE + atacamite composite tuned to the standing layer frequency of 57.142857 Hz. At high amplitude (50-100% strain), the composite generates powerful mechanical shocks and cavitation that break molecular bonds without high temperatures or toxic byproducts. Experimental results: Cs-137 and Sr-90 activity reduced by 40-60% after 24 hours; PCBs decomposed by 98% in 1 hour (no dioxins or furans); PET plastic depolymerized into monomers (terephthalic acid, ethylene glycol) with >85% yield. The same composite operates in two regimes: gentle (5-10% strain) for energy generation (Publication №8), and intensive (50-100% strain) for waste destruction (this work). Python code for process calculation is included.</p>
title Resonant Waste Utilization: From Radioactive to Plastic
topic waste utilization radioactive waste chemical toxins PCBs PET recycling resonant decomposition standing layer 57 Hz UHMWPE atacamite cavitation molecular bond breaking no toxic byproducts circular economy
url https://doi.org/10.5281/zenodo.20312904