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Nuclear Technology Programs semiannual progress report, October 1988--March 1989
Author(s) -
Joseph E. Harmon
Publication year - 1990
Publication title -
osti oai (u.s. department of energy office of scientific and technical information)
Language(s) - English
Resource type - Reports
DOI - 10.2172/138125
Subject(s) - radioactive waste , nuclear fuel cycle , nuclear fission product , national laboratory , spent nuclear fuel , fission products , nuclear fission , uranium , nuclear transmutation , actinide , waste management , work (physics) , environmental science , nuclear fuel , nuclear science , purex , nuclear engineering , engineering , fission , nuclear physics , chemistry , physics , engineering physics , mechanical engineering , chromatography , neutron , extraction (chemistry) , solvent extraction
This document reports on the work done by the Nuclear Technology Programs of the Chemical Technology Division, Argonne National Laboratory, in the period October 1988--March 1989. These programs involve R&D in three areas: applied physical chemistry, separation science and technology, and nuclear waste management. The work in applied physical chemistry includes investigations into the processes that control the release and transport of fission products under accident-like conditions, the thermophysical properties of metal fuel and blanket materials of the Integral Fast Reactor, and the properties of selected materials in environments simulating those of fusion energy systems. In the area of separation science and technology, the bulk of the effort is concerned with developing and implementing processes for the removal and concentration of actinides from waste streams contaminated by transuranic elements. Another effort is concerned with examining the feasibility of substituting low-enriched for high-enriched uranium in the production of fission product {sup 99}Mo. In the area of waste management, investigations are underway on the performance of materials in projected nuclear repository conditions to provide input to the licensing of the nation`s high-level waste repositories. 127 refs., 76 figs., 103 tabs

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