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Catalysis and the Mechanism of Methane Conversion to Chemicals - C-C and C-O Bonds Formation Using Heterogeneous, Homogenous,... Catalysis and the Mechanism of Methane Conversion to Chemicals - C-C and C-O Bonds Formation Using Heterogeneous, Homogenous, and Biological Catalysts (Hardcover, 1st ed. 2020)
Toshihide Baba, Akimitsu Miyaji
R3,942 Discovery Miles 39 420 Ships in 12 - 17 working days

This book introduces various types of reactions to produce chemicals by the direct conversion of methane from the point of view of mechanistic and functional aspects. The chemicals produced from methane are aliphatic and aromatic hydrocarbons such as propylene and benzene, and methanol. These chemicals are created by using homogeneous catalysts, heterogeneous catalysts such as zeolites, and biocatalysts such as enzymes. Various examples of methane conversion reactions that are discussed have been chosen to illustrate how heterogeneous and homogenous catalysts and biocatalysts and/or their reaction environments control the formation of highly energetic species from methane contributing to C-C and C-O bond formation.

Catalysis - Volume 15 (Hardcover, Edition.): Burtron H. Davis, Yongqing Zhang, Toshihide Baba, Yoshio Ono, Robert J. Davis,... Catalysis - Volume 15 (Hardcover, Edition.)
Burtron H. Davis, Yongqing Zhang, Toshihide Baba, Yoshio Ono, Robert J. Davis, …
R10,192 Discovery Miles 101 920 Ships in 12 - 17 working days

There is an increasing challenge for chemical industry and research institutions to find cost-efficient and environmentally sound methods of converting natural resources into fuels chemicals and energy. Catalysts are essential to these processes and the Catalysis Specialist Periodical Report series serves to highlight major developments in this area. This series provides systematic and detailed reviews of topics of interest to scientists and engineers in the catalysis field. The coverage includes all major areas of heterogeneous and homogeneous catalysis and also specific applications of catalysis such as NOx control kinetics and experimental techniques such as microcalorimetry. Each chapter is compiled by recognised experts within their specialist fields and provides a summary of the current literature. This series will be of interest to all those in academia and industry who need an up-to-date critical analysis and summary of catalysis research and applications. Catalysis will be of interest to anyone working in academia and industry that needs an up-to-date critical analysis and summary of catalysis research and applications. Specialist Periodical Reports provide systematic and detailed review coverage in major areas of chemical research. Compiled by teams of leading experts in their specialist fields, this series is designed to help the chemistry community keep current with the latest developments in their field. Each volume in the series is published either annually or biennially and is a superb reference point for researchers. www.rsc.org/spr

Catalysis and the Mechanism of Methane Conversion to Chemicals - C-C and C-O Bonds Formation Using Heterogeneous, Homogenous,... Catalysis and the Mechanism of Methane Conversion to Chemicals - C-C and C-O Bonds Formation Using Heterogeneous, Homogenous, and Biological Catalysts (Paperback, 1st ed. 2020)
Toshihide Baba, Akimitsu Miyaji
R4,228 Discovery Miles 42 280 Ships in 10 - 15 working days

This book introduces various types of reactions to produce chemicals by the direct conversion of methane from the point of view of mechanistic and functional aspects. The chemicals produced from methane are aliphatic and aromatic hydrocarbons such as propylene and benzene, and methanol. These chemicals are created by using homogeneous catalysts, heterogeneous catalysts such as zeolites, and biocatalysts such as enzymes. Various examples of methane conversion reactions that are discussed have been chosen to illustrate how heterogeneous and homogenous catalysts and biocatalysts and/or their reaction environments control the formation of highly energetic species from methane contributing to C-C and C-O bond formation.

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