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Radiocarbon Dispersion around Canadian Nuclear Facilities

G.M. MiltonAECL Research, Chalk River Laboratories, Chalk River, Ontario, Canada, K0J 1J0S.J. KramerAECL Research, Chalk River Laboratories, Chalk River, Ontario, Canada, K0J 1J0R. M. BrownAECL Research, Chalk River Laboratories, Chalk River, Ontario, Canada, K0J 1J0Cory ReptaAECL Research, Chalk River Laboratories, Chalk River, Ontario, Canada, K0J 1J0Kevin KingAECL Research, Chalk River Laboratories, Chalk River, Ontario, Canada, K0J 1J0R. R. RaoAECL Research, Chalk River Laboratories, Chalk River, Ontario, Canada, K0J 1J0
1995en
ABI

Аннотация

Canadian deuterium uranium (CANDU) pressurized heavy-water reactors produce 14 C by neutron activation of trace quantities of nitrogen in annular gas and reactor components ( 14 N(n,p) 14 C), and from 17 O in the heavy water moderator by ( 17 O(n,α) 14 C). The radiocarbon produced in the moderator is removed on ion exchange resins incorporated in the water purification systems; however, a much smaller gaseous portion is vented from reactor stacks at activity levels considerably below 1% of permissible derived emission limits. Early measurements of the carbon speciation indicated that >90% of the 14 C emitted was in the form of CO 2 . We conducted surveys of the atmospheric dispersion of 14 CO 2 at the Chalk River Laboratories and at the Pickering Nuclear Generating Station. We analyzed air, vegetation, soils and tree rings to add to the historical record of 14 C emissions at these sites, and to gain an understanding of the relative importance of the various carbon pools that act as sources/sinks within the total 14 C budget. Better model parameters than those currently available for calculating the dose to the critical group can be obtained in this manner. Global dose estimates may require the development of techniques for estimating emissions occurring outside the growing season.

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