Model-based intensification of a fed-batch microbial process for the maximization of polyhydroxybutyrate (PHB) production rate

被引:0
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作者
Giannis Penloglou
Athina Vasileiadou
Christos Chatzidoukas
Costas Kiparissides
机构
[1] Centre for Research and Technology Hellas (CERTH),Chemical Process and Energy Resources Institute (CPERI)
[2] Aristotle University of Thessaloniki (AUTH),Department of Chemical Engineering
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Polyhydroxybutyrate; Mathematical model; Optimization; Molecular weight; Polyhydroxyalkanoates;
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摘要
An integrated metabolic–polymerization–macroscopic model, describing the microbial production of polyhydroxybutyrate (PHB) in Azohydromonas lata bacteria, was developed and validated using a comprehensive series of experimental measurements. The model accounted for biomass growth, biopolymer accumulation, carbon and nitrogen sources utilization, oxygen mass transfer and uptake rates and average molecular weights of the accumulated PHB, produced under batch and fed-batch cultivation conditions. Model predictions were in excellent agreement with experimental measurements. The validated model was subsequently utilized to calculate optimal operating conditions and feeding policies for maximizing PHB productivity for desired PHB molecular properties. More specifically, two optimal fed-batch strategies were calculated and experimentally tested: (1) a nitrogen-limited fed-batch policy and (2) a nitrogen sufficient one. The calculated optimal operating policies resulted in a maximum PHB content (94% g/g) in the cultivated bacteria and a biopolymer productivity of 4.2 g/(l h), respectively. Moreover, it was demonstrated that different PHB grades with weight average molecular weights of up to 1513 kg/mol could be produced via the optimal selection of bioprocess operating conditions.
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页码:1247 / 1260
页数:13
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