Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
679387 | Bioresource Technology | 2016 | 9 Pages |
Abstract
In a waste into resource strategy, a selection of polyhydroxybutyrate (PHB)-accumulating organisms from activated sludge was achieved in an open continuous culture under acetic acid and phosphorus limitation. Once the microbial population was selected at a dilution rate (D), an increase in phosphorus limitation degree was applied in order to study the intracellular phosphorus plasticity of selected bacteria and the resulting capacity to produce PHB. Whatever D, all selected populations were able to produce PHB. At a D, the phosphorus availability determined the phosphorus-cell content which in turn fixed the amount of cell. All the remaining carbon was thus directed toward PHB. By decreasing D, microorganisms adapted more easily to higher phosphorus limitation leading to higher PHB content. A one-stage continuous reactor operated at DÂ =Â 0.023Â hâ1 gave reliable high PHB productivity with PHB content up to 80%. A two-stage reactor could ensure better productivity while allowing tuning product quality.
Keywords
Related Topics
Physical Sciences and Engineering
Chemical Engineering
Process Chemistry and Technology
Authors
Laëtitia Cavaillé, Maria Albuquerque, Estelle Grousseau, Anne-Sophie Lepeuple, Jean-Louis Uribelarrea, Guillermina Hernandez-Raquet, Etienne Paul,