The production of aliphatic and aromatic aldehydes by oxidation of primary alcohols was achieved with Gluconobacter oxydans DSM 2343. The biotransformation was optimised studying the oxidation of 2-phenyl-1-ethanol to 2-phenylacetaldehyde. A high molar conversion (95% chromatographic conversion, 83% of isolated yield) was obtained using cells grown on glycerol as the main carbon source and directly used in the cultural medium after 24 h at 28°C, pH 4.5 and 5 g L−1 substrate concentration. The conversion of structurally different primary alcohols was performed under these conditions allowing the chemoselective production of aldehydes, sometimes with very good yields
This paper reports the production of 2-phenylacetaldehyde from 2-phenylethanol by acetic bacteria. S...
Xylonic acid is attractive as a potential product from D xylose because the five carbon structure of...
Methacrylic acid was produced in high yield by an integrated process involving bioconversion of 2-me...
The microbial oxidation of various primary alcohols to the corresponding aldehydes has been investig...
An easy and efficient methodology for obtaining aldehydes or carboxylic acids by oxidation of the co...
Bioconversions are generally low productivity processes when compared to chemical synthetic reaction...
Phenylacetaldehyde can be obtained by oxidation of 2-phenylethanol with acetic acid bacteria in two-...
The microbial oxidation of racemic 2-phenyl-1-propanol by Gluconobacter oxydans DSM 50049 was invest...
Acetobacter aceti MIM 2000/28 was employed for the oxidation of 2-phenyl-1-ethanol. Oxidation in aqu...
Chemoselective oxidations still represent a challenge for chemists. Lyophilized cells of Janibacter ...
Chemoselective oxidations still represent a challenge for chemists. Lyophilized cells of Janibacter ...
Chemoselective oxidations still represent a challenge for chemists. Lyophilized cells of Janibacter ...
Herein, we present a study on the oxidation of aldehydes to carboxylic acids using three recombinant...
A membrane bioreactor was developed to perform an extractive bioconversion aimed at the production o...
Abstract Background Whole cells of Gluconobacter oxydans are widely used in various biocatalytic pro...
This paper reports the production of 2-phenylacetaldehyde from 2-phenylethanol by acetic bacteria. S...
Xylonic acid is attractive as a potential product from D xylose because the five carbon structure of...
Methacrylic acid was produced in high yield by an integrated process involving bioconversion of 2-me...
The microbial oxidation of various primary alcohols to the corresponding aldehydes has been investig...
An easy and efficient methodology for obtaining aldehydes or carboxylic acids by oxidation of the co...
Bioconversions are generally low productivity processes when compared to chemical synthetic reaction...
Phenylacetaldehyde can be obtained by oxidation of 2-phenylethanol with acetic acid bacteria in two-...
The microbial oxidation of racemic 2-phenyl-1-propanol by Gluconobacter oxydans DSM 50049 was invest...
Acetobacter aceti MIM 2000/28 was employed for the oxidation of 2-phenyl-1-ethanol. Oxidation in aqu...
Chemoselective oxidations still represent a challenge for chemists. Lyophilized cells of Janibacter ...
Chemoselective oxidations still represent a challenge for chemists. Lyophilized cells of Janibacter ...
Chemoselective oxidations still represent a challenge for chemists. Lyophilized cells of Janibacter ...
Herein, we present a study on the oxidation of aldehydes to carboxylic acids using three recombinant...
A membrane bioreactor was developed to perform an extractive bioconversion aimed at the production o...
Abstract Background Whole cells of Gluconobacter oxydans are widely used in various biocatalytic pro...
This paper reports the production of 2-phenylacetaldehyde from 2-phenylethanol by acetic bacteria. S...
Xylonic acid is attractive as a potential product from D xylose because the five carbon structure of...
Methacrylic acid was produced in high yield by an integrated process involving bioconversion of 2-me...