TY - JOUR
T1 - The role of biochar in the psychrophilic anaerobic digestion
T2 - Effects on kinetics, acids metabolism, and microbial population
AU - Jaimes-Estévez, Jaime
AU - Martí-Herrero, Jaime
AU - Poggio, Davide
AU - Zafra, German
AU - Gómez, Karen
AU - Escalante, Humberto
AU - Castro, Liliana
N1 - Publisher Copyright:
© 2023 Elsevier Ltd
PY - 2023/9
Y1 - 2023/9
N2 - This study investigated the effect of biochar in the psychrophilic anaerobic co-digestion regarding biomethane production potential (BMP), metabolic efficiencies, and microbial population. BMP tests of cheese whey and cattle manure as substrates were conducted at different gasified pine wood biochar concentrations (Bc) (10 g/L, 30 g/L, 50 g/L); and particle sizes (Ps) (~0.15 mm, ~0.575 mm, ~1 mm). The most favourable conditions of Ps = 0.575 mm and Bc of 30 g/L, allowed BMP values to go from 0.23 m3 CH4/kg VSadd to 0.34 m3 CH4/kg VSadd. The study of metabolic stages showed how the biochar modulates hydrolysis and methanogenesis and favours the acetoclastic metabolism to improve methane yield even at 15 °C. The biochar's positive effect is reinforced by its addition boosting the growth of methanogen psychrotrophs populations up to 520 % compared with a BMP with no biochar added at 15 °C. The study showed that psychrophilic AD + biochar might overcome mesophilia's energy needs by improving yields with no extra energetic requirements.
AB - This study investigated the effect of biochar in the psychrophilic anaerobic co-digestion regarding biomethane production potential (BMP), metabolic efficiencies, and microbial population. BMP tests of cheese whey and cattle manure as substrates were conducted at different gasified pine wood biochar concentrations (Bc) (10 g/L, 30 g/L, 50 g/L); and particle sizes (Ps) (~0.15 mm, ~0.575 mm, ~1 mm). The most favourable conditions of Ps = 0.575 mm and Bc of 30 g/L, allowed BMP values to go from 0.23 m3 CH4/kg VSadd to 0.34 m3 CH4/kg VSadd. The study of metabolic stages showed how the biochar modulates hydrolysis and methanogenesis and favours the acetoclastic metabolism to improve methane yield even at 15 °C. The biochar's positive effect is reinforced by its addition boosting the growth of methanogen psychrotrophs populations up to 520 % compared with a BMP with no biochar added at 15 °C. The study showed that psychrophilic AD + biochar might overcome mesophilia's energy needs by improving yields with no extra energetic requirements.
KW - Biochemical methane potential
KW - Biofilm
KW - Co-digestion feasibility
KW - Microbial communities
UR - http://www.scopus.com/inward/record.url?scp=85166020541&partnerID=8YFLogxK
U2 - 10.1016/j.biteb.2023.101566
DO - 10.1016/j.biteb.2023.101566
M3 - Artículo
AN - SCOPUS:85166020541
SN - 2589-014X
VL - 23
JO - Bioresource Technology Reports
JF - Bioresource Technology Reports
M1 - 101566
ER -