Dane C. Grenoble
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Featured researches published by Dane C. Grenoble.
Journal of Catalysis | 1987
Lawrence L. Murrell; Dane C. Grenoble; Chang J. Kim; N.C. Dispenziere
Abstract Surface phase oxides bonded to a support such as alumina have not been recognized previously to have acid cracking activities in the league of amorphous silica-alumina to the best of our knowledge. In this paper the relative gas-oil cracking activities of all Group IV, V, and VIB oxides supported on alumina (including alumina and rhenia on alumina) are reported. All of the supported oxides are at a surface coverage about one-third that of a monolayer. Tungsten oxide and niobium oxide on alumina have been identified as solid acids with high activity; while molybdenum oxide and rhenium oxide on alumina lead to high coke and gas make even with steam present as a cofeed in the cracking test. The periodic trends of cracking activity are those expected from the charge-to-radius ratio of the metal cation. This class of surface phase oxide solid acids has a wide range of activities (two orders of magnitude) and may prove useful for matching acid strength to specific reactions. In addition, this class of solid acids maintains surface area and cracking activity following high temperature steam treatment, in contrast to many conventional solid acid catalysts.
Archive | 1997
Carl W. Bradow; Dane C. Grenoble; Richard Foley; Brendan Dermot Murray; Bruce H. C. Winquist; Stanley Nemec Milam
Archive | 1978
Lawrence L. Murrell; Chang J. Kim; Dane C. Grenoble
Archive | 1979
Dane C. Grenoble; Chang J. Kim; Lawrence L. Murrell
Archive | 1978
Dane C. Grenoble; Walter Weissman
Archive | 1978
Lawrence L. Murrell; Dane C. Grenoble; John P. DeLuca
Archive | 1981
Lawrence L. Murrell; Dane C. Grenoble
Archive | 1981
Kenneth A. Gould; Dane C. Grenoble; Lawrence L. Murrell; Wim Johan Meindert Pieters
Archive | 1979
Lawrence L. Murrell; Dane C. Grenoble; John P. DeLuca
Archive | 1984
Dane C. Grenoble; Chang J. Kim; Lawrence L. Murrell