Catalytic biofilms in membrane reactors: continuous asymmetric epoxidation of styrene and regioselective hydroxylation of alkanes
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The performance of biocatalytic reactions is often hampered by product and/or substrate toxicity and relatively short reaction times, due to unstable biocatalysts. Microbial biofilms show a remarkable resistance against biocides and form physically stable communities. I nature, especially in environments characterized by harsh conditions such as heavily contaminated sites, cells grow predominantly in biofilms, which enable them to cope with physiological stress. This robustness was utilized to design a bioprocess concept based on catalytic biofilms for stable long-term transformations of toxic reactants.
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Catalytic biofilms in membrane reactors: continuous asymmetric epoxidation of styrene and regioselective hydroxylation of alkanes, Rainer Gross
- Sprache
- Erscheinungsdatum
- 2011
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- Titel
- Catalytic biofilms in membrane reactors: continuous asymmetric epoxidation of styrene and regioselective hydroxylation of alkanes
- Sprache
- Englisch
- Autor*innen
- Rainer Gross
- Verlag
- Shaker
- Erscheinungsdatum
- 2011
- ISBN10
- 3844001603
- ISBN13
- 9783844001600
- Reihe
- Chemical biotechnology
- Kategorie
- Skripten & Universitätslehrbücher
- Beschreibung
- The performance of biocatalytic reactions is often hampered by product and/or substrate toxicity and relatively short reaction times, due to unstable biocatalysts. Microbial biofilms show a remarkable resistance against biocides and form physically stable communities. I nature, especially in environments characterized by harsh conditions such as heavily contaminated sites, cells grow predominantly in biofilms, which enable them to cope with physiological stress. This robustness was utilized to design a bioprocess concept based on catalytic biofilms for stable long-term transformations of toxic reactants.