Literature DB >> 21416273

Optimization of culture conditions in CO2 fixation for succinic acid production using Actinobacillus succinogenes.

Yong-lan Xi1, Ke-quan Chen, Jian Li, Xiao-jiang Fang, Xiao-yu Zheng, Shan-shan Sui, Min Jiang, Ping Wei.   

Abstract

The culture conditions in CO(2) fixation by Actinobacillus succinogenes for succinic acid production were investigated by a model of available CO(2) in a 3-l fermentor. The results from the model analysis showed that the available CO(2) for succinic acid production in the fermentation broth is the sum of HCO(3) (-), CO(3) (2-), and CO(2) influenced by external culture conditions such as medium components, CO(2) partial pressures, and temperature. The optimized conditions for CO(2) supply in a 3-l fermentor were determined as follows: CO(2) partial pressure and stirring speed were maintained at 0.1 MPa and 200 r min(-1), respectively, with a pH of 6.8 and a temperature of 37°C; 0.15 mol l(-1) NaHCO(3) was added. Under the optimized conditions, a CO(2) fixation rate of 0.57 g l(-1) h(-1) was obtained, and a succinic acid concentration of 51.6 g l(-1) with a yield of 75.8% was reached. These results suggest that optimized conditions of CO(2) supply are effective in high succinic acid production and thus have potential applications in succinic acid production and CO(2) fixation.

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Year:  2011        PMID: 21416273     DOI: 10.1007/s10295-011-0952-5

Source DB:  PubMed          Journal:  J Ind Microbiol Biotechnol        ISSN: 1367-5435            Impact factor:   3.346


  22 in total

1.  Influence of CO(2)-HCO(3) Levels and pH on Growth, Succinate Production, and Enzyme Activities of Anaerobiospirillum succiniciproducens.

Authors:  N S Samuelov; R Lamed; S Lowe; J G Zeikus
Journal:  Appl Environ Microbiol       Date:  1991-10       Impact factor: 4.792

2.  Actinobacillus succinogenes sp. nov., a novel succinic-acid-producing strain from the bovine rumen.

Authors:  M V Guettler; D Rumler; M K Jain
Journal:  Int J Syst Bacteriol       Date:  1999-01

3.  Optimized aeration by carbon dioxide gas for microalgal production and mass transfer characterization in a vertical flat-plate photobioreactor.

Authors:  Kai Zhang; Norihide Kurano; Shigetoh Miyachi
Journal:  Bioprocess Biosyst Eng       Date:  2002-03-26       Impact factor: 3.210

4.  Purification and characterization of phosphoenolpyruvate carboxykinase,a catabolic CO2-fixing enzyme, from Anaerobiospirillum succiniciproducens.

Authors:  S M Podkovyrov; J G Zeikus
Journal:  J Gen Microbiol       Date:  1993-02

5.  Production of succinic acid by Anaerobiospirillum succiniciproducens.

Authors:  N P Nghiem; B H Davison; B E Suttle; G R Richardson
Journal:  Appl Biochem Biotechnol       Date:  1997       Impact factor: 2.926

6.  Effect of CO2 on succinate production in dual-phase Escherichia coli fermentations.

Authors:  Shiying Lu; Mark A Eiteman; Elliot Altman
Journal:  J Biotechnol       Date:  2009-07-22       Impact factor: 3.307

7.  Succinic acid production from acid hydrolysate of corn fiber by Actinobacillus succinogenes.

Authors:  Kequan Chen; Min Jiang; Ping Wei; Jiaming Yao; Hao Wu
Journal:  Appl Biochem Biotechnol       Date:  2008-10-02       Impact factor: 2.926

8.  Succinic acid production from continuous fermentation process using Mannheimia succiniciproducens LPK7.

Authors:  In Jae Oh; Hye Won Lee; Chul Hwan Park; Sang Yup Lee; Jinwon Lee
Journal:  J Microbiol Biotechnol       Date:  2008-05       Impact factor: 2.351

9.  Inhibition of succinic acid production in metabolically engineered Escherichia coli by neutralizing agent, organic acids, and osmolarity.

Authors:  Christian Andersson; Jonas Helmerius; David Hodge; Kris A Berglund; Ulrika Rova
Journal:  Biotechnol Prog       Date:  2009 Jan-Feb

10.  Genetic reconstruction of the aerobic central metabolism in Escherichia coli for the absolute aerobic production of succinate.

Authors:  Henry Lin; George N Bennett; Ka-Yiu San
Journal:  Biotechnol Bioeng       Date:  2005-01-20       Impact factor: 4.530

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  4 in total

1.  Succinic acid fermentation in a stationary-basket bioreactor with a packed bed of immobilized Actinobacillus succinogenes: 1. Influence of internal diffusion on substrate mass transfer and consumption rate.

Authors:  Anca-Irina Galaction; Lenuta Kloetzer; Marius Turnea; Colin Webb; Anestis Vlysidis; Dan Caşcaval
Journal:  J Ind Microbiol Biotechnol       Date:  2012-02-15       Impact factor: 3.346

Review 2.  Fermentative succinate production: an emerging technology to replace the traditional petrochemical processes.

Authors:  Yujin Cao; Rubing Zhang; Chao Sun; Tao Cheng; Yuhua Liu; Mo Xian
Journal:  Biomed Res Int       Date:  2013-12-12       Impact factor: 3.411

3.  Microbial production of succinic acid using crude and purified glycerol from a Crotalaria juncea based biorefinery.

Authors:  Suvra Sadhukhan; Raffaella Villa; Ujjaini Sarkar
Journal:  Biotechnol Rep (Amst)       Date:  2016-04-02

4.  Reconstruction of a genome-scale metabolic model for Actinobacillus succinogenes 130Z.

Authors:  Bruno Pereira; Joana Miguel; Paulo Vilaça; Simão Soares; Isabel Rocha; Sónia Carneiro
Journal:  BMC Syst Biol       Date:  2018-05-30
  4 in total

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