Aldehydes, Aliphatic

Christian Kohlpaintner

Christian Kohlpaintner

Oxea GmbH, formerly Celanese GmbH, Werk Ruhrchemie, Oberhausen, Germany

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Markus Schulte

Markus Schulte

Oxea GmbH, formerly Celanese GmbH, Werk Ruhrchemie, Oberhausen, Germany

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Jürgen Falbe

Jürgen Falbe

Henkel KGaA, Düsseldorf, Germany

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Peter Lappe

Peter Lappe

Oxea GmbH, formerly Celanese GmbH, Werk Ruhrchemie, Oberhausen, Germany

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Jürgen Weber

Jürgen Weber

Oxea GmbH, formerly Hoechst Aktiengesellschaft, Werk Ruhrchemie, Oberhausen, Germany

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Guido D. Frey

Guido D. Frey

Oxea GmbH, Oberhausen, Germany

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First published: 15 January 2013
Citations: 15

Abstract

The article contains sections titled:

1.

Introduction

2.

Saturated Aldehydes

2.1.

Physical Properties

2.2.

Chemical Properties

2.3.

Production

2.4.

Individual Saturated C5–C13 Aldehydes

2.4.1.

C5 Aldehydes

2.4.2.

C6 Aldehydes

2.4.3.

C7 Aldehydes

2.4.4.

C8 Aldehydes

2.4.5.

C9 Aldehydes

2.4.6.

C10 Aldehydes

2.4.7.

C11 Aldehydes

2.4.8.

C12 Aldehydes

2.4.9.

C13 Aldehydes

3.

Unsaturated Aldehydes

3.1.

Physical Properties

3.2.

Chemical Properties

3.3.

Production

3.4.

Individual Unsaturated C5–C11 Aldehydes

3.4.1.

C5 Alkenals

3.4.2.

C6 Alkenals

3.4.3.

C8 Alkenals

3.4.4.

C10 Alkenals

3.4.5.

C11 Alkenals

4.

Hydroxyaldehydes

4.1.

Properties

4.2.

Production

4.3.

Individual Hydroxyaldehydes

4.3.1.

3-Hydroxypropanal

4.3.2.

3-Hydroxybutanal (Acetaldol)

4.3.3.

4-Hydroxybutanal

4.3.4.

2,2-Dimethyl-3-hydroxypropanal (Hydroxypivaldehyde)

4.3.5.

2-Ethyl-3-hydroxyhexanal (Butyraldol)

4.3.6.

3,7-Dimethyl-7-hydroxyoctanal (Hydroxycitronellal)

5.

Dialdehydes

5.1.

Properties

5.2.

Production

5.3.

Individual Dialdehydes

5.3.1.

Succinaldehyde (1,4-Butanedial)

5.3.2.

Glutardialdehyde (1,5-Pentanedial)

5.3.3.

TCD Dialdehyde

6.

Acetals

6.1.

Properties

6.2.

Production

6.3.

Uses

7.

Quality Control

8.

Analysis

9.

Storage, Transportation, and Environmental Regulations

10.

Economic Aspects

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