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Kinetic characteristics of long-term repeated fed-batch (LtRFb) l-lactic acid fermentation by a Bacillus coagulans strain.


ABSTRACT: Application of degradable plastics is the most critical solution to plastic pollution. As the precursor of biodegradable plastic PLA (polylactic acid), efficient production of l-lactic acid is vital for the commercial replacement of traditional plastics. Bacillus coagulans H-2, a robust strain, was investigated for effective production of l-lactic acid using long-term repeated fed-batch (LtRFb) fermentation. Kinetic characteristics of l-lactic acid fermentation were analyzed by two models, showing that cell-growth coupled production gradually replaces cell-maintenance coupled production during fermentation. With the LtRFb strategy, l-lactic acid was produced at a high final concentration of 192.7 g/L, on average, and a yield of up to 93.0% during 20 batches of repeated fermentation within 487.5 h. Thus, strain H-2 can be used in the industrial production of l-lactic acid with optimization based on kinetic modeling.

SUBMITTER: Zhang F 

PROVIDER: S-EPMC7708950 | biostudies-literature | 2020 Dec

REPOSITORIES: biostudies-literature

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Kinetic characteristics of long-term repeated fed-batch (LtRFb) l-lactic acid fermentation by a <i>Bacillus coagulans</i> strain.

Zhang Fan F   Liu Jiongqin J   Han Xiao X   Gao Chao C   Ma Cuiqing C   Tao Fei F   Xu Ping P  

Engineering in life sciences 20200921 12


Application of degradable plastics is the most critical solution to plastic pollution. As the precursor of biodegradable plastic PLA (polylactic acid), efficient production of l-lactic acid is vital for the commercial replacement of traditional plastics. <i>Bacillus coagulans</i> H-2, a robust strain, was investigated for effective production of l-lactic acid using long-term repeated fed-batch (LtRFb) fermentation. Kinetic characteristics of l-lactic acid fermentation were analyzed by two models  ...[more]

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