1965Nuclear ApplicationsRequires access

Thermochemical Reduction of Uranium Hexafluoride for the Direct Fabrication of Uranium Dioxide Ceramic Fuels

R.L. Heestand, C.F. Leitten

Open publisher page 7 citations

Abstract

Thermochemical reduction of uranium halides is being investigated at the Oak Ridge National Laboratory as a means of fabricating high-density refractory uranium compounds for fuel element application. A one-step conversion of uranium hexafluoride to uranium dioxide has been effected by combining the uranium hexafluoride with hydrogen and oxygen at elevated temperatures and reduced pressures.The product may be deposited as a submicron powder, dendritic crystallites, or a solid approaching theoretical density depending upon reaction pressure and gas-mixing techniques. The stoichiometry of the solid deposit may be controlled by adjusting the ratios of the gaseous reactants.It is anticipated that the process might be optimized for fuels having high enrichments or for reprocessing contaminated fuels, thus giving more-efficient controlled conversion to a desired form. The results also indicate that other refractory oxides may be produced as free-standing bodies through the use of similar techniques.

About this research paper

What this paper is about

Thermochemical reduction of uranium halides is being investigated at the Oak Ridge National Laboratory as a means of fabricating high-density refractory uranium compounds for fuel element application. A one-step conversion of uranium hexafluoride to uranium dioxide has been effected by combining the uranium hexafluoride with hydrogen and oxygen at elevated temperatures and reduced pressures.The product may be deposited as a submicron powder, dendritic crystallites, or a solid approaching theoretical density depending upon reaction pressure and gas-mixing techniques. The stoichiometry of the solid deposit may be controlled by adjusting the ratios of the gaseous reactants.It is anticipated that the process might be optimized for fuels having high enrichments or for reprocessing contaminated fuels, thus giving more-efficient controlled conversion to a desired form. The results also indicate that other refractory oxides may be produced as free-standing bodies through the use of similar techniques.

Why it matters

OpenAlex reports 7 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Thermochemical reduction of uranium halides is being investigated at the Oak Ridge National Laboratory as a means of fabricating high-density refractory uranium compounds for fuel element application. A one-step conversion of uranium hexafluoride to uranium dioxide has been effected by combining the uranium hexafluoride with hydrogen and oxygen at elevated temperatures and reduced pressures.The product may be deposited as a submicron powder, dendritic crystallites, or a solid approaching theoretical density depending upon reaction pressure and gas-mixing techniques. The stoichiometry of the solid deposit may be controlled by adjusting the ratios of the gaseous reactants.It is anticipated that the process might be optimized for fuels having high enrichments or for reprocessing contaminated fuels, thus giving more-efficient controlled conversion to a desired form. The results also indicate that other refractory oxides may be produced as free-standing bodies through the use of similar techniques.

Key concepts: Uranium hexafluoride, Uranium, Uranium dioxide, Stoichiometry, Materials science, Partial pressure, Ceramic, Halide

Related papers

Back to paper searchBrowse research topicsOriginal source
Thermochemical Reduction of Uranium Hexafluoride for the Direct Fabrication of Uranium Dioxide Ceramic Fuels — Research Paper | ScholarLens