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Improvement of sludge digestate biodegradability by thermophilic bioaugmentation
Authors:Fan Lü  Tianshui Li  Tianfeng Wang  Liming Shao  Pinjing He
Institution:1. State Key Laboratory of Pollution Control and Resource Reuse, Tongji University, Shanghai, 200092, People’s Republic of China
3. Center for the Technology Research and Training on Household Waste in Small Towns and Rural Area, Ministry of Housing and Urban–rural Development of People’s Republic of China (MOHURD), Shanghai, People’s Republic of China
2. Institute of Waste Treatment and Reclamation, Tongji University, Shanghai, 200092, People’s Republic of China
Abstract:The sludge digestate stabilized by mesophilic anaerobic digestion was further degraded through thermophilic anaerobic digestion using 0–10 % (v/v) of thermophilic, proteolytic Coprothermobacter proteolyticus, and/or methanogenic granular sludge. The results demonstrated that the temperature shift to thermophilic condition promoted abiotic solubilization of proteins and reactivated the fermentative bacteria and methanogens indigenous in the sludge digestate, resulting in a final methane yield of 6.25 mmol-CH4/g-volatile suspended solid (VSS) digestate. The addition of C. proteolyticus accelerated the hydrolysis and fermentation of proteins and polysaccharides in the digestate during the early stage of thermophilic anaerobic digestion and stimulated methane production by syntrophic cooperation with methanogenic granular sludge. In the treatment with granular sludge and inoculated with 10 % (v/v) of C. proteolyticus, a final methane yield of 7 mmol-CH4/g-VSS digestate was obtained, and 48.4 % proteins and 27.0 % polysaccharides were degraded. The dissolved proteins were contributed by abiotic factor, C. proteolyticus, and indigenous digestate bacteria, respectively, by around 16, 28, and 56 %.
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