Cesium exhibits different mesoscale segregation and ion pairing than lithium, sodium, or potassium in concentrated alkaline aqueous nitrite solutions
Abstract
Understanding ion pairing in concentrated alkaline electrolytes facilitates the prediction and control of chemical processes in nuclear waste. While sodium is the dominant alkali metal in such systems, cesium often exhibits distinct bulk behavior relative to lighter alkali cations. Aqueous mixtures of cesium hydroxide and sodium nitrite were compared to alkali hydroxide analogs using small-angle x-ray scattering, revealing that cesium disrupts the sodium nitrite electrolyte structure, forming cesium-rich domains. This mesoscale segregation contrasts with the near-ideal mixing observed in other mixed hydroxide–nitrite systems. Raman spectroscopy indicates cesium–nitrite ion pairing, evidenced by vibrational shifts distinct from those associated with sodium. Multinuclear magnetic resonance spectroscopy further supports cesium–nitrite and cesium–hydroxide association, revealing a distinct local environment for nitrite in cesium-containing solutions. Together, these findings show that cesium promotes a unique solution structure dominated by specific ion pairing within segregated domains. This structural organization may influence radical generation pathways in high-ionic-strength alkaline media relevant to nuclear waste processing and management.
Article Details
Journal Info
The Journal of Chemical Physics
American Institute of Physics
Authors (6)
Emily T. Nienhuis
Pacific Northwest National Laboratory 2 , P.O. Box 999, Richland, Washington 99354,
Sebastian T. Mergelsberg
Pacific Northwest National Laboratory 2 , P.O. Box 999, Richland, Washington 99354,
Trent R. Graham
Ashley R. Kennedy
Pacific Northwest National Laboratory 1 , Richland, Washington 99354,
Carolyn I. Pearce
Energy and Environment Directorate, Pacific Northwest National Laboratory
Jacob G. Reynolds
Central Plateau Cleanup Company 1 , P.O. Box 850, Richland, Washington 99354,