Obtaining Iron Chelates and Iron Oxide Nanoparticles via Multispark Discharge Treatment of EDTA Solutions in Argon Atmosphere

This study investigates the physicochemical processes in aqueous solutions treated with a high-current (up to 300 A) pulsed multispark discharge. Pulse length was 2 μs at a 50 Hz repetition rate. The discharge occurred within bubbles of argon injected between the stainless-steel electrodes at the constant flow rate. The erosion of electrode material during the discharge led to iron and other alloy components entering the liquid. Optical emission spectra confirmed the erosion of electrode material (Fe, Cr, Ni atoms and ions). EDTA and its disodium salt were used in order to study their effect on the metal particle formation process. Treatment with deionized water led to an increase in conductivity and the generation of hydrogen peroxide (up to 1200 µM). In contrast, the presence of EDTA and its disodium salt drastically altered the reaction pathways: the H2O2 yield decreased, and the solution conductivity dropped substantially for the acidic form of EDTA, while the decrease was minor for EDTA-Na2. This effect is attributed to the buffered chelation of eroded metal ions, forming stable Fe-EDTA complexes, as confirmed by a characteristic absorption band at 260 nm. The results demonstrate the critical role of complex-forming agents in modulating plasma–liquid interactions, shifting the process from direct erosion products to the formation of stable coordination compounds.

Авторы
Gudkova V.V. 1, 2 , Borzosekov V.D. 1, 2 , Zimina M.A. 1, 2 , Moryakov I.V. 1 , Malakhov D.V. 1 , Gusein-Zade Namik 1 , Konchekov E.M. 1, 2
Журнал
Издательство
MDPI
Номер выпуска
4
Язык
Английский
Статус
Опубликовано
Том
8
Год
2025
Организации
  • 1 Prokhorov General Physics Institute of the Russian Academy of Sciences
  • 2 RUDN University
Ключевые слова
plasma-liquid interactions; spark discharge; Edta; iron oxides
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