2023•Chemie Ingenieur TechnikOpen access

From Microbial Succinic Acid Production to Polybutylene Bio‐Succinate Synthesis

Niklas Tenhaef, Alina Hermann, Moritz‐Fabian Müller, Jonas Görtz, Jan Marienhagen, Marco Oldiges, Wolfgang Wiechert, Michael H. Bott, Andreas Jupke, Laura Helena Hartmann, Sonja Herres‐Pawlis, Stephan Noack

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Abstract

Abstract A simplified and scalable one‐pot process for the anaerobic production of succinic acid using a metabolically engineered Corynebacterium glutamicum strain is demonstrated. With targeted bioprocess optimization, succinic acid titer of 78 g L −1 and yield of 1.41 mol SA mol GLC −1 were achieved. Succinic acid was recovered from the neutral fermentation broth by electrochemically induced crystallization and applied for polybutylene bio‐succinate synthesis using a biocompatible zinc catalyst. Except for a slight color change, the final biopolymer was comparable to the polymer from commercial precursors.

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Abstract A simplified and scalable one‐pot process for the anaerobic production of succinic acid using a metabolically engineered Corynebacterium glutamicum strain is demonstrated. With targeted bioprocess optimization, succinic acid titer of 78 g L −1 and yield of 1.41 mol SA mol GLC −1 were achieved. Succinic acid was recovered from the neutral fermentation broth by electrochemically induced crystallization and applied for polybutylene bio‐succinate synthesis using a biocompatible zinc catalyst. Except for a slight color change, the final biopolymer was comparable to the polymer from commercial precursors.

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Available abstract

Abstract A simplified and scalable one‐pot process for the anaerobic production of succinic acid using a metabolically engineered Corynebacterium glutamicum strain is demonstrated. With targeted bioprocess optimization, succinic acid titer of 78 g L −1 and yield of 1.41 mol SA mol GLC −1 were achieved. Succinic acid was recovered from the neutral fermentation broth by electrochemically induced crystallization and applied for polybutylene bio‐succinate synthesis using a biocompatible zinc catalyst. Except for a slight color change, the final biopolymer was comparable to the polymer from commercial precursors.

Key concepts: Succinic acid, Polybutylene succinate, Corynebacterium glutamicum, Bioprocess, Rhizopus oryzae, Chemistry, Biopolymer, Fermentation

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