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Homogeneous Catalysis with Renewables (Hardcover, 1st ed. 2017): Arno Behr, Andreas J Vorholt Homogeneous Catalysis with Renewables (Hardcover, 1st ed. 2017)
Arno Behr, Andreas J Vorholt
R3,860 Discovery Miles 38 600 Ships in 18 - 22 working days

This volume gives a detailed account into how renewables can be transformed into value-added products via homogeneous catalysis, especially via transiton metal homogeneous catalysis. The most important catalytic reactions of oleochemicals, isoprenoids, carbohydrates, lignin, proteins and carbon dioxide are described. Special emphasis is placed on carbon-carbon linkage reactions (hydroformylations, dimerisations, telomerisations, metathesis, polymerisations etc.), hydrogenations, oxidations and other important homogeneous reactions (such as isomerisations, hydrosilylations etc.). Also, tandem reactions including isomerising hydroformylations are presented. Wherever possible, the authors have included mechanistic, kinetic, and technical aspects. The reader is therefore given a total overview of the status quo of homogeneous catalysis directed to the most important renewables.

Homogeneous Catalysis with Renewables (Paperback, Softcover reprint of the original 1st ed. 2017): Arno Behr, Andreas J Vorholt Homogeneous Catalysis with Renewables (Paperback, Softcover reprint of the original 1st ed. 2017)
Arno Behr, Andreas J Vorholt
R3,106 Discovery Miles 31 060 Ships in 18 - 22 working days

This volume gives a detailed account into how renewables can be transformed into value-added products via homogeneous catalysis, especially via transiton metal homogeneous catalysis. The most important catalytic reactions of oleochemicals, isoprenoids, carbohydrates, lignin, proteins and carbon dioxide are described. Special emphasis is placed on carbon-carbon linkage reactions (hydroformylations, dimerisations, telomerisations, metathesis, polymerisations etc.), hydrogenations, oxidations and other important homogeneous reactions (such as isomerisations, hydrosilylations etc.). Also, tandem reactions including isomerising hydroformylations are presented. Wherever possible, the authors have included mechanistic, kinetic, and technical aspects. The reader is therefore given a total overview of the status quo of homogeneous catalysis directed to the most important renewables.

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