1 |
Kinetic-model-based design of industrial reactor for catalytic hydrogen production via ammonia decomposition Takahashi A, Fujitani T Chemical Engineering Research & Design, 165, 333, 2021 |
2 |
Kinetic-model-based design of industrial reactor for catalytic hydrogen production via ammonia decomposition Takahashi A, Fujitani T Chemical Engineering Research & Design, 165, 333, 2021 |
3 |
Effects of promoters on the performance of a VOx/SiO2 catalyst for the oxidation of methane to formaldehyde Shimura K, Fujitani T Applied Catalysis A: General, 577, 44, 2019 |
4 |
Direct transformation of terminal alkenes with H2O into primary alcohols over metal oxide-supported Pd catalysts Zhang ZZ, Mamba T, Yamamoto E, Murayama H, Ishida T, Honma T, Fujitani T, Tokunaga M Applied Catalysis B: Environmental, 246, 100, 2019 |
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Reverse water gas shift reaction using supported ionic liquid phase catalysts Yasuda T, Uchiage E, Fujitani T, Tominaga K, Nishida M Applied Catalysis B: Environmental, 232, 299, 2018 |
6 |
Vapor Phase Catalytic Transfer Hydrogenation (CTH) of Levulinic Acid to gamma-Valerolactone Over Copper Supported Catalysts Using Formic Acid as Hydrogen Source Lomate S, Sultana A, Fujitani T Catalysis Letters, 148(1), 348, 2018 |
7 |
Catalytic transfer hydrogenation of biomass-derived levulinic acid and its esters to gamma-valerolactone over ZrO2 catalyst supported on SBA-15 silica Kuwahara Y, Kaburagi W, Osada Y, Fujitani T, Yamashita H Catalysis Today, 281, 418, 2017 |
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Role of metal oxide supports in NH3 decomposition over Ni catalysts Nakamura I, Fujitani T Applied Catalysis A: General, 524, 45, 2016 |
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Kinetic Analysis of Decomposition of Ammonia over Nickel and Ruthenium Catalysts Takahashi A, Fujitani T Journal of Chemical Engineering of Japan, 49(1), 22, 2016 |
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Esterification of levulinic acid with ethanol over sulfated Si-doped ZrO2 solid acid catalyst: Study of the structure-activity relationships Kuwahara Y, Kaburagi W, Nemoto K, Fujitani T Applied Catalysis A: General, 476, 186, 2014 |