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Optimizing High Level Waste Disposal

Dirk Gombert, Jay Roach

2005enwaste managementnuclear energysafetyenvironment

Abstract

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If society is ever to reap the potential benefits of nuclear energy, technologists must close the fuel-cycle completely. A closed cycle equates to a continued supply of fuel and safe reactors, but also reliable and comprehensive closure of waste issues. High level waste (HLW) disposal in borosilicate glass (BSG) is based on 1970s era evaluations. This host matrix is very adaptable to sequestering a wide variety of radionuclides found in raffinates from spent fuel reprocessing. However, it is now known that the current system is far from optimal for disposal of the diverse HLW streams, and proven alternatives are available to reduce costs by billions of dollars. The basis for HLW disposal should be reassessed to consider extensive waste form and process technology research and development efforts, which have been conducted by the United States Department of Energy (USDOE), international agencies and the private sector. Matching the waste form to the waste chemistry and using currently available technology could increase the waste content in waste forms to 50% or more and double processing rates. Optimization of the HLW disposal system would accelerate HLW disposition and increase repository capacity.

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Cite This Work

@article{475f098e-b821-4108-b634-e63d4a209daa,
  title={Optimizing High Level Waste Disposal},
  author={Dirk Gombert and Jay Roach},
  year={2005},
  language={en}
}
TY  - JOUR
TI  - Optimizing High Level Waste Disposal
AU  - Dirk Gombert
AU  - Jay Roach
PY  - 2005
LA  - en
ER  -

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