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Technical Paper

Tritium Processing Tests for the Validation of Upgraded PERMCAT Mechanical Design

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Pages 14-17 | Published online: 07 Apr 2017

References

  • M. GLUGLA, L. DÖRR, R. LÄSSER, D. MURDOCH and H. YOSHIDA, “Recovery of tritium from different sources by the ITER Tokamak exhaust processing system,” Fusion Eng. Des., 61-62, 513 (2002).
  • M. GLUGLA et al., “The ITER tritium systems,” Fusion Eng. Des., 82, 472(2007).
  • M. GLUGLA et al., “A PERMCAT reactor for impurity processing in the JET active gas handling system,” Fusion Eng. Des., 49/50, 817 (2000).
  • D. DEMANGE, S. WELTE and M. GLUGLA, “Experimental validation of upgraded designs for PERMCAT reactors considering mechanical behaviour of Pd/Ag membranes under H2 atmosphere,” Fusion Eng. Des., 82, 2383 (2007).
  • B. BORNSCHEIN et al., “Tritium tests with a technical PERMCAT for final clean-up of ITER exhaust gases,” Fusion Eng. Des., 69, 51 (2003).
  • B. BORNSCHEIN et al., “Successful experimental verification of the tokamak exhaust processing concept of ITER with the CAPER facility,” Fusion Sci. Technol., 48, 11 (2005).
  • L. DÖRR et al., “A decade of tritium technology development and operation at the tritium laboratory Karlsruhe,” 8th ICTST, Rochester, 17-21 Sept (2007).
  • D. CORNELI et al., “Memory effects in measurements of low concentrations as required for the outlet of the TEP system of the ITER fuel cycle,” Fusion Sci. Technol., 48, 55 (2005).
  • K. MUNAKATA, B. BORNSCHEIN, D. CORNELI and M. GLUGLA, “Numerical simulation of membrane reactor for the detritiation of plasma exhaust gas,” Fusion Sci. Technol., 48, 17 (2005).

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