dehydrogenation
Sign in to saveIn chemistry, dehydrogenation is a chemical reaction that involves the removal of hydrogen, usually from an organic molecule. It is the reverse of hydrogenation. Dehydrogenation is important, both as a useful reaction and a serious problem. At its simplest, it is a useful way of converting alkanes, which are relatively inert and thus low-valued, to olefins, which are reactive and thus more valuable. Alkenes are precursors to aldehydes (), alcohols (), polymers, and aromatics. As a problematic reaction, the fouling and inactivation of many catalysts arises via coking, which is the dehydrogenati
Wikidata facts
Show 1 more fact
- Commons category
- Dehydrogenation
via Wikidata · CC0
~4 min read
Article
9 sectionsContents
- Heterogeneous catalytic routes
- Styrene
- Other alkenes
- Alcohols to aldehydes
- Oxidative dehydrogenation
- Homogeneous catalytic routes
- Stoichiometric processes
- Main group hydrides
- References
In chemistry, dehydrogenation is a chemical reaction that involves the removal of hydrogen, usually from an organic molecule. It is the reverse of hydrogenation. Dehydrogenation is important, both as a useful reaction and a serious problem. At its simplest, it is a useful way of converting alkanes, which are relatively inert and thus low-valued, to olefins, which are reactive and thus more valuable. Alkenes are precursors to aldehydes (), alcohols (), polymers, and aromatics. As a problematic reaction, the fouling and inactivation of many catalysts arises via coking, which is the dehydrogenative polymerization of organic substrates.
Enzymes that catalyze dehydrogenation are called dehydrogenases.