Chemometric modeling and two-dimensional fluorescence analysis of bioprocess with a new strain of Klebsiella pneumoniae to convert residual glycerol into 1,3-propanediol

Author:

Rossi Daniele Misturini1,Solle Dörte2,Hitzmann Bernd3,Ayub Marco Antônio Záchia1

Affiliation:

1. grid.8532.c 0000000122007498 Biotechnology & Biochemical Engineering Laboratory (BiotecLab) Federal University of Rio Grande do Sul P.O. Box 15090 Av. Bento Gonçalves, 9500 91501-970 Porto Alegre RS Brazil

2. grid.9122.8 0000000121632777 Institut für Technische Chemie Universität Hannover Callinstr. 3, 30167 Hannover Germany

3. grid.9464.f 0000000122901502 Fachgebiet Prozessanalytik und Getreidetechnologie Universität Hohenheim Garbenstr. 23, 70599 Sttutgart Germany

Abstract

Abstract The goal of this study was to show that the metabolism of Klebsiella pneumoniae under different aeration strategies could be monitored and predicted by the application of chemometric models and fluorescence spectroscopy. Multi-wavelength fluorescence was applied to the on-line monitoring of process parameters for K. pneumoniae cultivations. Differences observed in spectra collected under aerobiosis and anaerobiosis can be explained by the different metabolic states of the cells. To predict process variables such as biomass, glycerol, and 1,3-propanediol (1,3-PD), chemometric models were developed on the basis of the acquired fluorescence spectra, which were measured continuously. Although glycerol and 1,3-PD are not fluorescent compounds, the results showed that this technique could be successfully applied to the on-line monitoring of variables in order to understand the process and thus improve 1,3-PD production. The root mean square errors of predictions were 0.78 units, 10 g/L, and 2.6 g/L for optical density, glycerol, and 1,3-PD, respectively.

Publisher

Oxford University Press (OUP)

Subject

Applied Microbiology and Biotechnology,Biotechnology,Bioengineering

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