The performance of Inconel 693 electrodes for processing an iron phosphate glass melt containing 26 wt.% of a simulated low activity waste

Iron phosphate glass is a candidate fixation medium for storing radioactive waste. The Department of Energy supported a program to assess the viability of using Fe-phosphate glass for vitrifying low activity waste in a Joule Heated Melter (JHM). In this study, Inconel 693 electrodes were tested in a...

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Veröffentlicht in:Journal of nuclear materials 2014, Vol.444 (1-3), p.323-330
Hauptverfasser: HSU, Jen-Hsien, NEWKIRK, Joseph W, KIM, Cheol-Woon, BROW, Richard K, SCHLESINGER, Mark E, RAY, Chandra S, DAY, Delbert E
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Sprache:eng
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Zusammenfassung:Iron phosphate glass is a candidate fixation medium for storing radioactive waste. The Department of Energy supported a program to assess the viability of using Fe-phosphate glass for vitrifying low activity waste in a Joule Heated Melter (JHM). In this study, Inconel 693 electrodes were tested in a research-scale joule-heated melter (RSM) at Pacific Northwest National Laboratory. After a 10-day test at 1030 degree C that yielded 124 kg of glass, the electrodes exhibited a dimensional loss rate of similar to 1.6 mm/year, which is comparable to that of Inconel 690 electrodes used in a JHM for processing borosilicate melts. Microstructural changes occurred within the outermost 700 mu m of the electrodes and are consistent with an earlier study of Inconel coupons in Fe-phosphate melts. The results indicate that Inconel 693 should have an acceptable corrosion resistance as the electrode for JHM processing of iron phosphate melts.
ISSN:0022-3115
1873-4820
DOI:10.1016/j.jnucmat.2013.09.055