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Formation of Neptunium(V) Carbonates: Examining the Forceful Influence of Alkali and Alkaline Earth Cations.

Anastasiia S KuzenkovaTatiana V PlakhovaIurii M NevolinElizaveta S KulikovaAlexander L TrigubVasiliy O YapaskurtMaria D ShaulskayaDmitry M TsymbarenkoAnna Yu RomanchukStepan N Kalmykov
Published in: Inorganic chemistry (2023)
Herein, neptunium(V) carbonates containing sodium or potassium cations were synthesized via chemical precipitation. Various techniques such as scanning electron microscopy, energy-dispersive X-ray spectroscopy, thermogravimetry combined with differential scanning calorimetry, X-ray diffraction, and X-ray absorption spectroscopy were used to analyze the microstructures and elemental compositions of these samples. The crystal structures of hydrated NaNpO 2 CO 3 ·3H 2 O ( P 1, a = 4.3420(2) Å, b = 4.8962(2) Å, c = 10.0933(11) Å, α = 91.014(7)°, β = 77.834(11)°, and γ = 90.004(10)°) and KNpO 2 CO 3 ( P 6 3 / mmc , a = b = 5.0994(2) Å, c = 10.2210(15) Å) were determined for the first time using the Rietveld method. The synthesized carbonates exhibited distinct structural features and decomposition behaviors, as demonstrated through thermogravimetry analysis, which revealed the presence of crystalline hydrate water in sodium neptunium(V) carbonate. Furthermore, calcium-containing neptunium(V) carbonates were synthesized and characterized. Samples with the general composition Ca 0.5 NpO 2 CO 3 were obtained using the ion exchange method and chemical precipitation from solutions containing competing cations (Ca 2+ , Na + , K + , and Mg 2+ ). The synthesis conditions notably affected the diffraction patterns of the obtained calcium neptunium(V) carbonates. This investigation enhances our understanding of the structural properties and thermodynamic stability of neptunium(V) carbonates in the presence of diverse cations commonly found under radioactive waste disposal conditions.
Keyphrases
  • electron microscopy
  • ionic liquid
  • high resolution
  • single molecule
  • magnetic resonance
  • heavy metals
  • protein kinase
  • municipal solid waste
  • solid phase extraction
  • life cycle