The effect of lead on the corrosivity and friability of slags containing various ratios of sodium, vanadium, magnesium, and silicon has been evaluated. The application of the linear polarization technique was demonstrated. Lead produces very corrosive melts and tenacious slags. Magnesium will inhibit corrosion to acceptable levels and produce friable slags at 800 °C with a 4 to 1 ratio of additive to vanadium plus lead and a sodium to vanadium plus lead ratio no greater than 0.1. To produce friable slags at 900°, sodium must first be reduced to a sodium to vanadium plus lead ratio of 0.01. Second, a magnesium-silicon additive must be used at a 6 to 1 ratio of additive to vanadium plus lead. The corrosion rates of lead containing melts increases rapidly with sodium level.
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July 1975
This article was originally published in
Journal of Engineering for Power
Research Papers
High-Temperature Corrosion in Gas Turbines and Steam Boilers by Fuel Impurities—Part V: Lead Containing Slags
M. J. Zetlmeisl,
M. J. Zetlmeisl
Tretolite Division, Petrolite Corp., St. Louis, Mo.
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W. R. May,
W. R. May
Tretolite Division, Petrolite Corp., St. Louis, Mo.
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R. R. Annand
R. R. Annand
Tretolite Division, Petrolite Corp., St. Louis, Mo.
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M. J. Zetlmeisl
Tretolite Division, Petrolite Corp., St. Louis, Mo.
W. R. May
Tretolite Division, Petrolite Corp., St. Louis, Mo.
R. R. Annand
Tretolite Division, Petrolite Corp., St. Louis, Mo.
J. Eng. Power. Jul 1975, 97(3): 441-447 (7 pages)
Published Online: July 1, 1975
Article history
Received:
July 29, 1974
Online:
July 14, 2010
Citation
Zetlmeisl, M. J., May, W. R., and Annand, R. R. (July 1, 1975). "High-Temperature Corrosion in Gas Turbines and Steam Boilers by Fuel Impurities—Part V: Lead Containing Slags." ASME. J. Eng. Power. July 1975; 97(3): 441–447. https://doi.org/10.1115/1.3446028
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