Evaluations of Molten Salt Breeder Reactors have pointed t h e direction of desirable design, research, and development f o r improving t h e economic and breeding performance of these systems, In design, t h e conventional concept of processing f u e l i n f a c i l i t i e s t h a t are separate from t h e reactor plant needs t o be abandoned i n favor of integrating t h e processing operations d i r e c t l y i n t o the reactor building. For the MSBR, only a small spaoe i s required adjacent t o the reactor c e l l s f o r processing c e l l s . This arrangement allows significant savings i n capital, operating;, shipping, and inventory costs.Research and development have shown t h a t i r r a d i a t e d MSBR f u e l can be decontaminated i n a f our-step process consisting of fluorination, UF6 sorption, vacuum d i s t f l l a t i o n , and reduction-reconstitution, These operations recover not only the uranium but a l s o the LiF-BeF2 c a r r i e r , Fluorination and sorption technologies are well developed f o r batchwise operation, having; advanced through the p i l o t plant stage. However, f o r MSBR application, these two steps, a s well a s d i s t i l l a t i o n and reduction-reconstituti~n~must be developed f o r continuous operation. These four unit processes a r e rather simple and straightforward; however, vacuum d i s t i l l a t i o n requires a higher temperature (-1000" C ) than has been encountered previously i n molten salt processing . DISCLAIMERThis report was prepared as an account of work sponsored by an agency of the United States Government. Neither the United States Government nor any agency Thereof, nor any of their employees, makes any warranty, express or implied, or assumes any legal liability or responsibility for the accuracy, completeness, or usefulness of any information, apparatus, product, or process disclosed, or represents that its use would not infringe privately owned rights. Reference herein to any specific commercial product, process, or service by trade name, trademark, manufacturer, or otherwise does not necessarily constitute or imply its endorsement, recommendation, or favoring by the United States Government or any agency thereof. The views and opinions of authors expressed herein do not necessarily state or reflect those of the United States Government or any agency thereof. DISCLAIMERPortions of this document may be illegible in electronic image products. Images are produced from the best available original document. 1 2 I F e r t i l e stream processing s t e p s c o n s i s t of protactinium removal, f l u o r i n a t i o n , and UF6 sorption, Protactinium removal i s s i n g u l a r l y important because of t h e improved breeding performancewithlow protactinium concentrations i n t h e f e r t i l e stream. R e l a t i v e l y high processing r a t e s a r e required. Xenon poisoning i s kept low by i n j e c t i n g a purge gas d i r e c t l y i n t o t h e c i r c u l a t i n g f u e l stream. An i n -l i n e s t r i p p e r removes the gases, ...
This report was prepared as an account of Government sponsored work. Neither the United States, nor the Commission, nor any person acting on behalf of the Commission: A. Makes any warranty or representation, express or implied, with respect to the ac curacy, completeness, or usefulness of the information contained in this report, or that the use of any information, apparatus, method, or process disclosed in this report may not in fringe privately owned rights; or B. Assumes any liabilities with respect to the use of, or for damages resulting from the use of any information, apparatus, method, or process disclosed in this report. As used in the above, "person acting on behalf of the Commission" includes any em ployee or contractor of the Commission to the extent that such employee or contractor prepares, handles or distributes, or provides access to, any information pursuant to his em ployment or contract with the Commission.
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