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REFERENCES<br />

[1] L. Van den Durpel et al., Activities of <strong>OECD</strong>/NEA in the Frame of P&T, Proceedings of the 6 th<br />

Information Exchange Meeting on Actinide and Fission Product Partitioning and<br />

Transmutation, Madrid, Spain, 11-13 Dec. 2000, EUR 19783 EN, <strong>OECD</strong> <strong>Nuclear</strong> <strong>Energy</strong><br />

<strong>Agency</strong>, Paris, France, (2001).<br />

[2] Fistedis (ed), The Experimental Breeder Reactor II Inherent Safety Demonstration, Elsevier<br />

Science Publishers, B.V. Holland, (1987).<br />

[3] US-DOE, A Roadmap for Developing Accelerator Transmutation of Waste (ATW) Technology:<br />

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[4] H. Takano et al., Study on a Lead-bismuth Cooled Accelerator Driven Transmutation System,<br />

Proceedings of the 6 th Information Exchange Meeting on Actinide and Fission Product Partitioning<br />

and Transmutation, Madrid, Spain, 11-13 Dec. 2000, EUR 19783 EN, <strong>OECD</strong> <strong>Nuclear</strong> <strong>Energy</strong><br />

<strong>Agency</strong>, Paris, France, (2001).<br />

[5] M. Salvatores, I. Slessarev, and K. Uematsu, A Global Physics Approach to Transmutation of<br />

Radioactive Nuclei, Nucl. Sci. & Eng’g. 116, p. 1-18, (1994).<br />

[6] a) R.N. Hill et al., Physics Studies of Weapons Plutonium Disposition in the Integral Fast<br />

Reactor Closed Fuel Cycle, p. 17, Nucl. Sci. Eng’g., Vol. 121, #1 (Sept 1995).<br />

b) R.N. Hill, D.C. Wade, E.K. Fujita, and H. Khalil, Physics Studies of Higher Actinide<br />

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c) V.N. Mikhailov, V.M. Mourogov, V.S. Kagramanian, N.S. Rabotnov, V.Ya. Rudneva and<br />

M.F. Troyanov, Plutonium in <strong>Nuclear</strong> Power Industry, IAEA Consultancy on Long-term<br />

Options for Plutonium Disposition, Vienna, Austria, (1994).<br />

[7] T.J. Moran, Core Restraint Design for Inherent Safety, Proceedings of the Joint American<br />

<strong>Nuclear</strong> Power Conference, Myrtle Beach, South Carolina, (April 1988).<br />

[8] E. Gluekler, US Advanced Liquid Metal Reactor (ALMR), Progress in <strong>Nuclear</strong> <strong>Energy</strong>, Vol. 31,<br />

No. ½, pp. 43-61, (1997).<br />

[9] a) W. Yang and H. Khalil, Neutronics Design Studies of Pb-Bi Cooled ATW Blanket,<br />

Proceedings IAEA Technical Committee Meeting on Core Physics and Engineering Aspects of<br />

Emerging <strong>Nuclear</strong> <strong>Energy</strong> Systems For <strong>Energy</strong> Generation and Transmutation, Argonne, IL,<br />

(Nov. 28-Dec.1, 2000), (to be published).<br />

b) R. Hill and H. Kahlil, Physics Studies for a Na-cooled ATW Design, Proceedings IAEA<br />

Technical Committee Meeting on Core Physics and Engineering Aspects of Emerging <strong>Nuclear</strong><br />

<strong>Energy</strong> Systems For <strong>Energy</strong> Generation and Transmutation, Argonne, IL, (Nov. 28-Dec.1, 2000),<br />

(to be published).<br />

116

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