Acoustic Cavitation Plasma Synthesis (ACPS) for Non-Thermal Rare Earth Element (REE) Liberation from Coal Fly Ash Matrices

The global supply chain for critical Rare Earth Elements (REEs) is constrained by geopolitical monopolies and legacy extraction methodologies that rely on highly toxic, low-yield acid leaching and bulk thermal smelting. This paper details a solid-state, non-thermal extraction architecture utilizing Acoustic Cavitation Plasma Synthesis (ACPS) and Universal Dielectric Barrier Discharge (U-DBD) gateways to process industrial coal fly ash and waste streams. By employing tuned acoustic resonance, the system physically fractures the aluminosilicate glass matrices that trap trace REEs. Simultaneously, an asymmetric U-DBD plasma sheath is applied to execute targeted molecular cleavage, liberating neodymium, yttrium, and scandium ions via electrohydrodynamic (EHD) separation. This methodology completely bypasses legacy thermodynamic smelting and toxic acid dependencies, establishing a high-yield, closed-loop framework to convert hazardous coal ash liabilities into sovereign domestic REE assets. For commercial licensing, acquisition inquiries, or Option to Evaluate (OTE) agreements regarding this architecture, please contact: [email protected]

Authors

Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-10-04
DOI
https://doi.org/10.5281/zenodo.23137752
Primary Topic
Coal and Its By-products
Type
preprint
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Acoustic Cavitation Plasma Synthesis (ACPS) for Non-Thermal Rare Earth Element (REE) Liberation from Coal Fly Ash Matrices

Charles Clark Lawrence
Zenodo (CERN European Organization for Nuclear Research)
Coal and Its By-products
preprint

Acoustic Cavitation Plasma Synthesis (ACPS) for Non-Thermal Rare Earth Element (REE) Liberation from Coal Fly Ash Matrices

Charles Clark Lawrence
preprint en

Abstract

The global supply chain for critical Rare Earth Elements (REEs) is constrained by geopolitical monopolies and legacy extraction methodologies that rely on highly toxic, low-yield acid leaching and bulk thermal smelting. This paper details a solid-state, non-thermal extraction architecture utilizing Acoustic Cavitation Plasma Synthesis (ACPS) and Universal Dielectric Barrier Discharge (U-DBD) gateways to process industrial coal fly ash and waste streams. By employing tuned acoustic resonance, the system physically fractures the aluminosilicate glass matrices that trap trace REEs. Simultaneously, an asymmetric U-DBD plasma sheath is applied to execute targeted molecular cleavage, liberating neodymium, yttrium, and scandium ions via electrohydrodynamic (EHD) separation. This methodology completely bypasses legacy thermodynamic smelting and toxic acid dependencies, establishing a high-yield, closed-loop framework to convert hazardous coal ash liabilities into sovereign domestic REE assets. For commercial licensing, acquisition inquiries, or Option to Evaluate (OTE) agreements regarding this architecture, please contact: [email protected]

Zenodo (CERN European Organization for Nuclear Research)
Responsible consumption and production
Coal and Its By-products
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