Synergistic Co-digestion of microalgae and primary sludge to enhance methane yield from temperature-phased anaerobic digestion

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Abstract

A two-stage temperature-phased mesophilic anaerobic digestion assay was carried out to study the interaction between various biological pretreatment conditions and the possible synergistic co-digestion of microalgae and primary sludge. The study of growth kinetics of the biochemical methane potential test revealed that a maximum of 36% increase in methane yield was observed from co-digestion of a substrate pretreated by thermophilic aerobic conditions (55 ◦C and HRT = 2 days) and an 8.3% increase was obtained from the anaerobic pretreated substrate (55 ◦C and HRT = 3 days). Moreover, no synergistic effects on methane yields were observed in co-digesting the substrate pretreated with high temperature (85 ◦C). The study also identified specific conditions in which interaction between biological pretreatment and co-digestion might substantially reduce methane yield. Careful optimization of operating conditions, both aerobic and anaerobic pretreatment at moderate thermophilic conditions, can be used as a biological pretreatment to enhance methane yield from the co-digestion of microalgae and primary sludge.

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Damtie, M. M., Shin, J., Jang, H. M., & Kim, Y. M. (2020). Synergistic Co-digestion of microalgae and primary sludge to enhance methane yield from temperature-phased anaerobic digestion. Energies, 13(17). https://doi.org/10.3390/en13174547

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