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Influence of changing particle structure on the rate of gas-solid gasification reactions. Final report, July 1981-March 1984
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National Energy Technology Laboratory (NETL) - view all
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The objetive of this work is to determine the changes in the particle structure of coal as it undergoes the carbon/carbon dioxide reaction (C CO/sub 2/ ..-->.. 2CO). Char was produced by heating the coal at a rate of 25/sup 0/C/min to the reaction temperatures of 800/sup 0/C, 900/sup 0/C, 1000/sup 0/C and 1100/sup 0/C. The changes in surface area and effective diffusivity as a result of devolitization were determined. Changes in effective diffusivity and surface area as a function of conversion have been measured for reactions conducted at 800, 900, 1000 and 1100/sup 0/C for Wyodak coal char. The surface areas exhibit a maximum as a function of conversion in all cases. For the reaction at 1000/sup 0/C the maximum in surface area is greater than the maxima determined at all other reaction temperatures. Thermogravimetric rate data were obtained for five coal chars; Wyodak, Wilcox, Cimmeron, Illinois number 6 and Pittsburgh number 6 over the temperature range 800-1100/sup 0/C. All coal chars exhibit a maximum in reaction rate. Five different models for gas-solid reactions were evaluated. The Bhatia/Perlmutter model seems to best represent the data. 129 references, 67 figures, 37 tables.

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CitationRoy Long, Influence of changing particle structure on the rate of gas-solid gasification reactions. Final report, July 1981-March 1984, 2016-09-29, https://edx.netl.doe.gov/dataset/influence-of-changing-particle-structure-on-the-rate-of-gas-solid-gasification-reactions-final-rep
Netl Productyes
Poc EmailRoy.long@netl.doe.gov
Point Of ContactRoy Long
Program Or ProjectKMD
Publication Date1984-4-4
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  • http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=6728355