Serial/Series Title

4 Matching Results

Results open in a new window/tab.

Density and Hydrogen Content of Uranium Oxide Cakes and Slurries (open access)

Density and Hydrogen Content of Uranium Oxide Cakes and Slurries

The work described was undertaken to provide data for nuclear safety studies concerning NPF reprocessing equipment. The original objective was to determine the uranium density and water (hydrogen) content of UO2-H2O mixtures ranging from compact centrifuge cakes to dilute slurries. The scope was later expanded to include mixtures of UO2 with hydrocarbon oil and mixtures of UO3-H2O.
Date: March 22, 1960
Creator: Amos, L. C.
System: The UNT Digital Library
The Oxidation of Plutonium to the Plutonyl State (open access)

The Oxidation of Plutonium to the Plutonyl State

This report follows the study of the oxidation of plutonium III and IV to the plutonyl state.
Date: March 22, 1950
Creator: Miller, H. W. & Brouns, R. J.
System: The UNT Digital Library
The Preparation of Thin Films of Plutonium by Electrodeposition (open access)

The Preparation of Thin Films of Plutonium by Electrodeposition

This report discusses methods for preparing thin films of plutonium on metallic disks, which are used for alpha energy analysis, fission counting, and preparation of geometry standards in ordinary counting. Various methods of preparation were tested and analyzed, but electrodeposition was the most effective method. Deposition was then tested, but the yields were "somewhat erratic".
Date: March 22, 1950
Creator: Miller, H. W. & Brouns, R. J.
System: The UNT Digital Library
Properties of the System: Uranyl Nitrate-Aluminum Nitrate - Nitric Acid (or Sodium Hydroxide) - Sodium Nitrate - Water - Hexone (open access)

Properties of the System: Uranyl Nitrate-Aluminum Nitrate - Nitric Acid (or Sodium Hydroxide) - Sodium Nitrate - Water - Hexone

This report discusses properties of the Redox process. Density, apparent molar volumes and viscosity are all described.
Date: March 22, 1949
Creator: Burger, L. L.; Rehn, I. M.; Schmidt, H. R. & Slansky, C. M.
System: The UNT Digital Library