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Xiaoming Zhang

Researcher at National Institute of Advanced Industrial Science and Technology

Publications -  6
Citations -  527

Xiaoming Zhang is an academic researcher from National Institute of Advanced Industrial Science and Technology. The author has contributed to research in topics: Catalysis & Propylene oxide. The author has an hindex of 4, co-authored 6 publications receiving 451 citations. Previous affiliations of Xiaoming Zhang include Chinese Academy of Sciences.

Papers
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Epoxidation of propylene with H2 and O2 in the explosive regime in a packed-bed catalytic membrane reactor

TL;DR: In this paper, the vapor phase epoxidation of propylene with H2 and O2 over a highly dispersed Au/TS-1 catalyst was carried out in a packed-bed catalytic membrane reactor.
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Direct propylene epoxidation over barium-promoted Au/Ti-TUD catalysts with H2 and O2: Effect of Au particle size

TL;DR: In this paper, a catalyst consisting of gold supported on a Ti-containing silicate mesoporous material (TUD) with 13-nm pores was used for the epoxidation of propylene with mixtures of H 2 and O 2.
Journal ArticleDOI

Effect of composition and promoters in Au/TS-1 catalysts for direct propylene epoxidation using H2 and O2

TL;DR: A series of Au/titanium silicalite-1 (TS-1) catalysts with different Si/Ti ratios and promoted with alkali and alkaline earth cations were prepared by deposition-precipitation (DP) and tested for direct propylene epoxidation as mentioned in this paper.
Journal ArticleDOI

Kinetics of propylene epoxidation using H2 and O2 over a gold/mesoporous titanosilicate catalyst

TL;DR: In this paper, the kinetics of propylene oxidation to propylene oxide (PO) with H2/O2 mixtures on gold supported on the mesoporous titanium silicate, Ti-TUD, was investigated using Langmuir−Hinshelwood (L−H) models and power−rate law (PRL) models.
Patent

Process for producing oxygenic organic compound by oxidation of hydrocarbon and oxidation catalyst for use therein

TL;DR: In this article, a process for producing an oxygenic organic compound in which not only high catalyst stability but also high raw-material conversion can be attained is presented. But the process is not suitable for the use of catalysts.