89 89
© Springer-Verlag GmbH Germany, part of Springer Nature 2020
A. Behr and T. Seidensticker, Chemistry of Renewables,
https://doi.org/10.1007/978-3-662-61430-3_5
The Coproduct of
Oleochemistry - Glycerol
5
5.1
Properties and Use of Glycerol – 90
5.2
Glyceryl Esters – 94
5.3
Glycerol Ether – 98
5.3.1
Glycerol Oligomers – 98
5.3.2
Glycerol Polymers – 99
5.3.3
Glycerol Alkyl Ether – 99
5.3.4
Glycerol Alkenyl Ether – 100
5.4
Glycerol Acetals and Ketals – 100
5.5
From Glycerol to Propanediols – 101
5.6
From Glycerol to Epichlorohydrin – 103
5.7
Glycerol Oxidation – 104
5.8
Dehydration of Glycerol to Acrolein – 104
5.9
From Glycerol to Synthesis Gas – 105
References – 108
© Springer-Verlag GmbH Germany, part of Springer Nature 2020
A. Behr and T. Seidensticker, Chemistry of Renewables,
https://doi.org/10.1007/978-3-662-61430-3_5
The Coproduct of
Oleochemistry - Glycerol
5
5.1
Properties and Use of Glycerol – 90
5.2
Glyceryl Esters – 94
5.3
Glycerol Ether – 98
5.3.1
Glycerol Oligomers – 98
5.3.2
Glycerol Polymers – 99
5.3.3
Glycerol Alkyl Ether – 99
5.3.4
Glycerol Alkenyl Ether – 100
5.4
Glycerol Acetals and Ketals – 100
5.5
From Glycerol to Propanediols – 101
5.6
From Glycerol to Epichlorohydrin – 103
5.7
Glycerol Oxidation – 104
5.8
Dehydration of Glycerol to Acrolein – 104
5.9
From Glycerol to Synthesis Gas – 105
References – 108
