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The Global Threat Reduction Initiative’s Radiological Security Cooperation With Russia

[+] Author Affiliations
Tiffany A. Blanchard

U.S. Department of Energy, Washington, DC

William J. Abramson

Lawrence Livermore National Laboratory, Livermore, CA

James W. J. R. Russell

National Security Technologies, Las Vegas, NV

Catherine K. Roberts

Pacific Northwest National Laboratory, Richland, WA

Paper No. ICEM2011-59361, pp. 679-686; 8 pages
doi:10.1115/ICEM2011-59361
From:
  • ASME 2011 14th International Conference on Environmental Remediation and Radioactive Waste Management
  • ASME 2011 14th International Conference on Environmental Remediation and Radioactive Waste Management, Parts A and B
  • Reims, France, September 25–29, 2011
  • Conference Sponsors: Nuclear Engineering Division and Environmental Engineering Division
  • ISBN: 978-0-7918-5498-3
  • Copyright © 2011 by ASME

abstract

The United States (U.S.) Department of Energy (DOE) / National Nuclear Security Administration’s (NNSA) Global Threat Reduction Initiative (GTRI) supports both U.S. and international threat reduction goals by securing vulnerable nuclear and radiological material located at civilian sites throughout the world. GTRI’s approach to reducing the threat posed by vulnerable, high-activity radioactive sources includes removing and disposing of orphan or disused radioactive sources; implementing physical security upgrades at civilian sites containing radioactive sources; and establishing a cooperative sustainability program at sites to ensure that upgrades are maintained. For many years GTRI has collaborated successfully with the Russian Federation and international partners to improve radiological security in Russia. This paper provides a synopsis of GTRI’s accomplishments and cooperation with Russia in the following areas: 1.) recovering and disposing of orphan and disused radioactive sources, 2.) recovering and disposing of radioisotope thermoelectric generators (RTGs), and 3.) providing physical security upgrades at civilian sites that contain vulnerable radiological material.

Copyright © 2011 by ASME

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