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Thermal and chemical degradation of inorganic membrane materials. Topical report

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This report describes the results of a literature review to evaluate the long-term thermal and chemical degradation of inorganic membranes that are being developed to separate gaseous products produced by the gasification or combustion of coal in fixed-, fluidized-, and entrained-bed gasifiers, direct coal-fired turbines, and pressurized-fluidized-bed combustors. Several impurities, such as H{sub 2}S, NH{sub 3}, SO{sub 2}, NO{sub x}, and trace metal compounds are generated during coal conversion, and they must be removed from the coal gas or the combustor flue gas to meet environmental standards. The use of membranes to separate these noxious gases is an attractive alternative to their removal by sorbents such as zinc titanate or calcium oxide. Inorganic membranes that have a high separation efficiency and exhibit both thermal and chemical stability would improve the economics of power generation from coal. The U.S. Department of Energy is supporting investigations to develop inorganic membranes for separating hydrogen from coal gas streams and noxious impurities from hot coal- and flue-gas streams. Membrane materials that have been investigated in the past include glass (silica), alumina, zirconia, carbon, and metals (Pd and Pt).

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Last Updated September 29, 2016, 16:45 (LMT)
Created September 29, 2016, 16:45 (LMT)
Citation Krishnan, G.N.; Sanjurjo, A.; Wood, B.J.; Lau, K.H. ---- Roy Long, Thermal and chemical degradation of inorganic membrane materials. Topical report, 2016-09-29, https://edx.netl.doe.gov/dataset/thermal-and-chemical-degradation-of-inorganic-membrane-materials-topical-report
Netl Product yes
Poc Email Roy.long@netl.doe.gov
Point Of Contact Roy Long
Program Or Project KMD
Publication Date 1994-4-1