197 - 220 |
Microstructure of Pd/CeO2 Catalyst - Effect of High-Temperature Reduction in Hydrogen Kepinski L, Wolcyrz M |
221 - 229 |
Selective Oxidation of Styrenes Under Oxygen Catalyzed by Cobalt Chloride Lin YH, Williams ID, Li P |
231 - 242 |
The Acidity and Catalytic Behavior of Mg-ZSM-5 Prepared via a Solid-State Reaction Li YG, Xie WH, Yong S |
243 - 252 |
Synthesis of Mixed Alcohols from CO2 Contained Syngas on Supported Molybdenum Sulfide Catalysts Lu G, Zhang CF, Gang YQ, Zhu ZB, Ni YH, Cheng LJ, Yu F |
253 - 268 |
The Catalytic Reduction of SO2 by Co over Lanthanum Oxysulfide Ma JX, Fang M, Lau NT |
269 - 278 |
Ammoxidation of 3-Picoline over V2O5/TiO2 (Anatase) System .1. Relationship Between Ammoxidation Activity and Oxidation-State of Vanadium Narayana KV, Venugopal A, Rao KS, Rao VV, Masthan SK, Rao PK |
279 - 296 |
Potential of Zeolite-Supported Rhodium Catalysts for the CO2 Reforming of CH4 Bhat RN, Sachtler WM |
297 - 318 |
2nd Row Transition-Metal Sulfides for the Hydrotreatment of Coal-Derived Naphtha .1. Catalyst Preparation, Characterization and Comparison of Rate of Simultaneous Removal of Total Sulfur, Nitrogen and Oxygen Raje AP, Liaw SJ, Srinivasan R, Davis BH |
319 - 342 |
2nd Row Transition-Metal Sulfides for the Hydrotreatment of Coal-Derived Naphtha .2. Removal of Individual Sulfur-Compounds Raje AP, Liaw SJ, Davis BH |
343 - 364 |
2nd Row Transition-Metal Sulfides for the Hydrotreatment of Coal-Derived Naphtha .3. Removal of Individual Nitrogen-Compounds Liaw SJ, Raje AP, Thomas GA, Davis BH |
365 - 376 |
Preparation and Properties of Supported Cobalt Catalysts for Fischer-Tropsch Synthesis Vandeloosdrecht L, Vanderhaar M, Vanderkraan AM, Vandillen AJ, Geus JW |