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Radiation Environments in Nuclear Reactor Power Plant

A Possible Mechanism for Corrosion Product Transport and Radiation Field Growth in a Pressurized Water Reactor Primary Circuit

Pages 85-92 | Published online: 12 May 2017

References

  • K. A. BURRILL, “Corrosion Product Transport in Water-Cooled Nuclear Reactors. Part I: Pressurized Water Operation,” Can. J. Chem. Eng., 55, 54 (1977).
  • F. H. SWEETON and C. F. BAES, Jr., “The Solubility of Magnetite and Hydrolysis of Ferrous Ion in Aqueous Solutions at Elevated Temperatures,” J. Chem. Thermo., 2, 479 (1970).
  • Y. SOLOMON and J. ROESMER, “Measurement of Fuel Element Crud Deposits in Pressurized Water Reactors,” Nucl. Technol., 29, 166 (1976).
  • D. H. LISTER, “The Transport of Radioactive Corrosion Products in High-Temperature Water. Part II: The Activation of Isothermal Steel Surfaces,” Nucl. Sci. Eng., 59, 406 (1976).
  • M. E. MEEK, “The Calculated pH of Aqueous Boric Acid Solutions as a Function of Temperature and Added Base Content,” WCAP-3269-51, Westinghouse Electric Corporation (1965).
  • P. COHEN, Water Coolant Technology of Power Reactors, p. 49, Gordon and Breach, Science Publishers, Inc., New York (1969).
  • S. G. SAWOCHKA et al., “Primary System Shutdown Radiation Levels at Nuclear Power Generating Stations,” EPRI 404-2, Electric Power Research Institute (Dec. 1975).

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