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Title
Downstream processing of biotechnological produced succinic acid
Authors
Keywords
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Journal
APPLIED MICROBIOLOGY AND BIOTECHNOLOGY
Volume 95, Issue 4, Pages 841-850
Publisher
Springer Nature
Online
2012-06-20
DOI
10.1007/s00253-012-4214-x
References
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Related references
Note: Only part of the references are listed.- Biotechnological production of succinic acid: current state and perspectives
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- New reactive extraction systems for separation of bio-succinic acid
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- Separation of succinic acid from its salts on a high-silica zeolite bed
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- Mechanisms and kinetics of thermal degradation of poly(butylene succinate-co-propylene succinate)s
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- Adsorption Equilibria of Succinic Acid and Lactic Acid on Amberchrom CG300C Resin
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- Investigation of Adsorption Equilibrium and Kinetics of Propionic Acid and Glyoxylic Acid from Aqueous Solution by Alumina
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- LSER modeling of extraction of succinic acid by tridodecylamine dissolved in 2-octanone and 1-octanol
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- Extraction of succinic acid from simulated media by emulsion liquid membranes
- (2011) Sang Cheol Lee JOURNAL OF MEMBRANE SCIENCE
- A novel strategy for salts recovery from 1,3-propanediol fermentation broth by bipolar membrane electrodialysis
- (2011) Ru Chun Wu et al. SEPARATION AND PURIFICATION TECHNOLOGY
- A novel process for recovery of fermentation-derived succinic acid
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- A novel strategy for succinate and polyhydroxybutyrate co-production in Escherichia coli
- (2010) Zhen Kang et al. BIORESOURCE TECHNOLOGY
- Poly(butylene succinate) and its copolymers: Research, development and industrialization
- (2010) Jun Xu et al. Biotechnology Journal
- Novel resin-based vacuum distillation-crystallisation method for recovery of succinic acid crystals from fermentation broths
- (2010) Sze Ki Carol Lin et al. GREEN CHEMISTRY
- Investigation on isothermal crystallization, melting behaviors, and spherulitic morphologies of multiblock copolymers containing poly(butylene succinate) and poly(1,2-propylene succinate)
- (2010) Liuchun Zheng et al. JOURNAL OF APPLIED POLYMER SCIENCE
- Fermentation and recovery of bio-based fumaric and succinic acid
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- Microbial succinic acid production: Natural versus metabolic engineered producers
- (2010) Joeri J. Beauprez et al. PROCESS BIOCHEMISTRY
- Efficient production of succinic acid from corn stalk hydrolysates by a recombinant Escherichia coli with ptsG mutation
- (2010) Dan Wang et al. PROCESS BIOCHEMISTRY
- One step recovery of succinic acid from fermentation broths by crystallization
- (2010) Qiang Li et al. SEPARATION AND PURIFICATION TECHNOLOGY
- Metabolism in 1,3-propanediol fed-batch fermentation by a D-lactate deficient mutant ofKlebsiella pneumoniae
- (2009) Yun-Zhen Xu et al. BIOTECHNOLOGY AND BIOENGINEERING
- Recovery of succinic acid from fermentation broth
- (2009) Tanja Kurzrock et al. BIOTECHNOLOGY LETTERS
- Metabolic engineering of the anaerobic central metabolic pathway in Escherichia coli for the simultaneous anaerobic production of isoamyl acetate and succinic acid
- (2009) Cheryl R. Dittrich et al. BIOTECHNOLOGY PROGRESS
- pH Neutralization while Succinic Acid Adsorption onto Anion-Exchange Resins
- (2008) Qiang Li et al. APPLIED BIOCHEMISTRY AND BIOTECHNOLOGY
- An efficient succinic acid production process in a metabolically engineered Corynebacterium glutamicum strain
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- Feasibility of production methods for succinic acid derivatives: a marriage of renewable resources and chemical technology
- (2008) Ana Cukalovic et al. Biofuels Bioproducts & Biorefining-Biofpr
- Succinic Acid: A New Platform Chemical for Biobased Polymers from Renewable Resources
- (2008) I. Bechthold et al. CHEMICAL ENGINEERING & TECHNOLOGY
- Chemical transformations of succinic acid recovered from fermentation broths by a novel direct vacuum distillation-crystallisation method
- (2008) Rafael Luque et al. GREEN CHEMISTRY
- Succinic acid from renewable resources as a C4building-block chemical—a review of the catalytic possibilities in aqueous media
- (2008) Clara Delhomme et al. GREEN CHEMISTRY
- Combining metabolic engineering and metabolic evolution to develop nonrecombinant strains ofEscherichia coli C that produce succinate and malate
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