Print Email Facebook Twitter Influence of environmental conditions on accumulated polyhydroxybutyrate in municipal activated sludge Title Influence of environmental conditions on accumulated polyhydroxybutyrate in municipal activated sludge Author Pei, R. (TU Delft BT/Environmental Biotechnology; Wetsus, Centre for Sustainable Water Technology) Tarek-Bahgat, N. (Wetsus, Centre for Sustainable Water Technology) van Loosdrecht, Mark C.M. (TU Delft BT/Environmental Biotechnology) Kleerebezem, R. (TU Delft BT/Environmental Biotechnology) Werker, A. (Wetsus, Centre for Sustainable Water Technology) Date 2023 Abstract Poly(3-hydroxybutyrate) (PHB) was accumulated in full-scale municipal waste activated sludge at pilot scale. After accumulation, the fate of the PHB-rich biomass was evaluated over two weeks as a function of initial pH (5.5, 7.0 and 10), and incubation temperature (25, 37 and 55 °C), with or without aeration. PHB became consumed under aerobic conditions as expected with first order rate constants in the range of 0.19 to 0.55 d−1. Under anaerobic conditions, up to 63 percent of the PHB became consumed within the first day (initial pH 7, 55 °C). Subsequently, with continued anaerobic conditions, the polymer content remained stable in the biomass. Degradation rates were lower for acidic anaerobic incubation conditions at a lower temperature (25 °C). Polymer thermal properties were measured in the dried PHB-rich biomass and for the polymer recovered by solvent extraction using dimethyl carbonate. PHB quality changes in dried biomass, indicated by differences in polymer melt enthalpy, correlated to differences in the extent of PHB extractability. Differences in the expressed PHB-in-biomass melt enthalpy that correlated to the polymer extractability suggested that yields of polymer recovery by extraction can be influenced by the state or quality of the polymer generated during downstream processing. Different post-accumulation process biomass management environments were found to influence the polymer quality and can also influence the extraction of non-polymer biomass. An acidic post-accumulation environment resulted in higher melt enthalpies in the biomass and, consequently, higher extraction efficiencies. Overall, acidic environmental conditions were found to be favourable for preserving both quantity and quality after PHB accumulation in activated sludge. Subject BiopolymerDownstream processingPoly(3-hydroxybutyrate)(PHB)Polyhydroxyalkanoate (PHA)Polymer propertiesWaste activated sludge To reference this document use: http://resolver.tudelft.nl/uuid:118b8b7d-c127-405c-a915-963aeaf90525 DOI https://doi.org/10.1016/j.watres.2023.119653 ISSN 0043-1354 Source Water Research, 232 Part of collection Institutional Repository Document type journal article Rights © 2023 R. Pei, N. Tarek-Bahgat, Mark C.M. van Loosdrecht, R. Kleerebezem, A. Werker Files PDF 1_s2.0_S004313542300088X_main.pdf 1.26 MB Close viewer /islandora/object/uuid:118b8b7d-c127-405c-a915-963aeaf90525/datastream/OBJ/view