Network


Latest external collaboration on country level. Dive into details by clicking on the dots.

Hotspot


Dive into the research topics where Taizo Uda is active.

Publication


Featured researches published by Taizo Uda.


Journal of Catalysis | 1980

The catalytic oxidation of propylene: VII. The use of temperature programmed reoxidation to characterize γ-bismuth molybdate

Taizo Uda; Timothy T. Lin; George W. Keulks

Temperature programmed reoxidation (TPR) was used to characterize the redox properties of γ-Bi2MoO6. Reoxidation of a prereduced catalyst by this technique yielded two well-defined temperature ranges for reoxidation. When the catalyst was prereduced by propylene, the maximum of a low-temperature peak occurred at 158 °C and the maximum of a high-temperature peak occurred at 340 °C. The physicochemical changes associated with these reoxidation temperatures were further investigated by X-ray diffraction, Auger spectroscopy, and kinetic measurements. The low-temperature reoxidation peak was found to be a result of the reoxidation of Mo4+ to Mo6+ and Bi0 to Bim+, where 0 < m < 3. The high-temperature reoxidation peak was found to be a result of the reoxidation of Bim+ to Bi3+. The high-temperature reoxidation may involve the direct oxidation of bismuth by gas phase oxidation or may involve shear structures. The high-temperature reoxidation process also appears to be related to the rate-limiting step for propylene oxidation to acrolein at temperatures below 400 °C.


Journal of the American Chemical Society | 1980

Spin trapping of molecules adsorbed on zinc oxide

Tokuo Matsuzaki; Taizo Uda; Akio Kazusaka; George W. Keulks; Russell F. Howe


Journal of the American Chemical Society | 1979

Spin trapping of adsorbed hydrogen

Taizo Uda; Akio Kazusaka; Russell F. Howe; George W. Keulks


Archive | 1983

Process for producing lower alkylene glycol, catalyst composition used therefor and process for production thereof

Haruhiko Miyazaki; Koichi Hirai; Taizo Uda; Yasuo Nakamura; Harumi Ikezawa; Takanori Tsuchie


Archive | 1980

Process for preparing phenol

Sumio Umemura; Ryozo Kitoh; Taizo Uda


Archive | 1983

Copper-silica hydrogenation catalysts

Haruhiko Miyazaki; Koichi Hirai; Taizo Uda; Yasuo Nakamura; Harumi Ikezawa; Takanori Tsuchie


Archive | 1978

Method for the catalytic production of acrylonitrile

Sumio Umemura; Kyoji Ohdan; Taizo Uda; Tokuo Matsuzaki; Mikio Hidaka; Yasuo Nakamura; Masao Tsuruoka


Archive | 1985

Process for producing ethylene glycol, catalyst composition therefor and process for producing the catalyst composition

Koichi Hirai; Yasuo Nakamura; Taizo Uda


Archive | 1983

Process and catalyst composition to produce a lower alkylene glycol and method of preparing this composition

Haruhiko Miyazaki; Koichi Hirai; Taizo Uda; Yasuo Nakamura; Harumi Ikezawa; Takanori Tsuchie


Archive | 1983

Process for producing ethylene glycol and/or a glycolic acid ester from an oxalate diester, catalyst composition therefor and process for producing the catalyst composition

Haruhiko Miyazaki; Koichi Hirai; Harumi Ikezawa; Taizo Uda; Yasuo Nakamura; Takanori Tsuchie

Collaboration


Dive into the Taizo Uda's collaboration.

Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar

Tokuo Matsuzaki

University of Wisconsin–Milwaukee

View shared research outputs
Top Co-Authors

Avatar
Top Co-Authors

Avatar

George W. Keulks

University of Wisconsin–Milwaukee

View shared research outputs
Top Co-Authors

Avatar
Researchain Logo
Decentralizing Knowledge