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Front-end nuclear fuel supply cooperation: Turning allied interdependence into strategic advantage
The global nuclear revival, which is fueled by unprecedented demand for firm, affordable, dispatchable power for artificial intelligence and data center build-out, energy security imperatives, and climate commitments, has exposed a structural reality of the Western fuel cycle: No single allied nation currently possesses the full suite of front-end capabilities. From mining through conversion, enrichment, fabrication, and the emerging deconversion and metallization steps required for reactor fuels, capability is distributed across Canada, France, Japan, the United Kingdom, and the United States (collectively, the “Sapporo Five”), as well as a small group of close partners.
George T. Baldwin, Glenn F. Knoll
Nuclear Science and Engineering | Volume 88 | Number 2 | October 1984 | Pages 123-128
Technical Paper | doi.org/10.13182/NSE84-A28396
Articles are hosted by Taylor and Francis Online.
Absolute measurement of the thorium radiative capture cross section has been made using antimony-beryllium photoneutrons and an activation method. The average of two determinations is 606 mb near 23-keV neutron energy with a 3.2% estimated error from all sources. This value is ∼10% higher than those reported from recent measurements employing iron-filtered neutron beams.