Comparison of Reactivity Based on Intercalation and Host Lattice Reconstruction. Two Routes for the Conversion of the Lamellar Solid Hydrogen Uranyl Phosphate to a Lamellar Hydrate of Uranyl Phosphate.

Abstract

The lamellar solid hydrogen uranyl phosphate can be quantitatively converted to a lamellar hydrate of uranyl phosphage by two routes: an intercalative ion-exchange reaction with aqueous uranium oxide ions and thermal decomposition in an aqueous slurry. An X ray powder pattern of the product can be indexed in tetragonal symmetry with an interlammelar spacing of 11.1 angstrom, expanded from a valve of 8.69 angestrom in hydrogen uranyl phosphate (HUP). Conversion of HUP to UP is accompanied by a drastic diminution in photoluminescence lifetime and intensity. Arrhenius parameters derived from the rates of the intercalation and thermal decomposition reactions indicate that they proceed by quite different mechanisms: the intercalation reaction proceeds with an apparent activation energy, of 12 plus or minus 2 kilo calories/mole and is characterized by a value of 30 plus or minus 2 kilo calories/mole. Samples of UP, obtained by either method, can be converted back to HUP by the action of dilute phosphoric acid in an aqueous slurry at room temperature. Possible mechanisms for these reactions are discussed.

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Document Details

Document Type
Technical Report
Publication Date
Jul 08, 1987
Accession Number
ADA182965

Entities

People

  • Arthur B. Ellis
  • Guy L. Rosenthal

Tags

Communities of Interest

  • Energy and Power Technologies

DTIC Thesaurus Topics

  • Abstracts
  • Aqueous Solutions
  • Availability
  • Chemical Compounds
  • Chemistry
  • Classification
  • Decomposition
  • Energy
  • Energy Transfer
  • Exchange Reactions
  • Heat Of Activation
  • Hydrogen
  • Intensity
  • Ion Exchange
  • Military Research
  • Security
  • X Rays

Fields of Study

  • Chemistry
  • Materials science

Readers

  • Materials Science and Engineering.
  • Organic Chemistry

Technology Areas

  • Space
  • Space - Hall-Effect Thruster