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Watkins, A. D.; Musick, C. A.; Cannon, C.; Carlson, N. M.; Mullenix, P.D.; Tillotson, R. D.
Idaho National Engineering and Environmental Lab., Idaho Falls, ID (United States). Funding organisation: USDOE Office of Environmental Management (EM) (United States)1999
Idaho National Engineering and Environmental Lab., Idaho Falls, ID (United States). Funding organisation: USDOE Office of Environmental Management (EM) (United States)1999
AbstractAbstract
[en] A self-verifying temperature sensor that employs advanced contact thermocouple probe technology was tested in a laboratory-scale, joule-heated, refractory-lined glass melter used for radioactive waste vitrification. The novel temperature probe monitors melt temperature at any given level of the melt chamber. The data acquisition system provides the real-time temperature for molten glass. Test results indicate that the self-verifying sensor is more accurate and reliable than classic platinum/rhodium thermocouple and sheath assemblies. The results of this test are reported as well as enhancements being made to the temperature probe. To obtain more reliable temperature measurements of the molten glass for improving production efficiency and ensuring consistent glass properties, optical sensing was reviewed for application in a high temperature environment
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29 Apr 1999; 10 p; 101. annual meeting of the American Ceramic Society; Indianapolis, IN (United States); 25-28 Apr 1999; AC07-94ID13223; Also available from OSTI as DE00007578; PURL: https://www.osti.gov/servlets/purl/7578-cEWkFe/webviewable/
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