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S. Papanikolaou, S. Fakas, M. Fick, I. Chevalot, M. Galiotou-Panayotou, M. Komaitis, I. Marc and G. Aggelis, “Biotechnological Valorisation of Raw Glycerol Discharged after Bio-Diesel (Fatty Acid Methyl Esters) Manufacturing Process: Production of 1,3-Propanediol, Citric Acid and Single Cell Oil,” Biomass and Bioenergy, Vol. 32, No. 1, 2008, pp. 60-71.
doi:10.1016/j.biombioe.2007.06.007
has been cited by the following article:
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TITLE:
Isolation of New Strains of Bacteria Able to Synthesize 1,3-Propanediol from Glycerol
AUTHORS:
Daria Szymanowska-Powałowska, Agnieszka Drożdżyńska, Natalia Remszel
KEYWORDS:
Clostridium spp.; Bacteria Isolation; 1, 3-Propanediol; Glycerol Conversion; Microflora of Natural Environment
JOURNAL NAME:
Advances in Microbiology,
Vol.3 No.2,
May
31,
2013
ABSTRACT: The natural environment is inhabited by many species that exhibit very specific metabolic activities that may find industrial applications. The aim of the study was to select non-pathogenic cultures of bacteria of the genus Clostridium and lactic acid bacteria able to convert glycerol into 1,3-propanediol (1,3-PD). Another aim of this study was to identify the isolates that best produced 1,3-propanediol both from pure and crude glycerol. The most efficient strains identified (Cl. butyricum) were analysed on a bioreactor scale. The aim was to determine temperature conditions on the efficiency and duration of 1,3-PD synthesis. The species Clostridium were identified using amplification of the 16S rRNA coding sequence. A total of 123 isolates (of the genus Clostridium and lactic acid bacteria) were isolated; a vast majority of these were able to synthesize 1,3-PD. The best results were obtained for Cl. butyricum strain DSP1, which was isolated from the rumen of a cow fed with glycerol. The strain efficiency using pure glycerol on bioreactor scale 0.65 mol/mol of glycerol at a temperature of 38℃ and a constant pH of 7.0.