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Insight into enhanced acetic acid production from food waste in anaerobic hydrolysis/acidification with Fe3O4 supplementation
被引:14
作者:
Wang, Lanting
[1
]
Lei, Zhongfang
[2
]
Zhang, Zhenya
[2
]
Shimizu, Kazuya
[2
]
Yuan, Tian
[2
]
Li, Shengnan
[1
]
Liu, Siting
[1
]
机构:
[1] Univ Tsukuba, Grad Sch Life & Environm Sci, 1-1-1 Tennodai, Tsukuba, Ibaraki 3058572, Japan
[2] Univ Tsukuba, Fac Life & Environm Sci, 1-1-1 Tennodai, Tsukuba, Ibaraki 3058572, Japan
来源:
关键词:
Anaerobic digestion;
Fe3O4;
Food waste;
Propionic acid;
Acetic acid;
VOLATILE FATTY-ACIDS;
INTERSPECIES ELECTRON-TRANSFER;
BIOLOGICAL PHOSPHORUS REMOVAL;
ZERO-VALENT IRON;
ACTIVATED-SLUDGE;
CO-DIGESTION;
PROPIONATE;
FERMENTATION;
DEGRADATION;
OPTIMIZATION;
D O I:
10.1016/j.wasman.2022.07.019
中图分类号:
X [环境科学、安全科学];
学科分类号:
08 ;
0830 ;
摘要:
Fe3O4 supplementation has been reported as a high-efficient approach to enhance biogas production in anaerobic digestion (AD). Volatile fatty acids (VFAs), especially acetic acid (HAc), are considered as important products in acidification process of AD. However, the possible mechanisms involved in promotion effect of Fe3O4 on HAc production in hydrolysis and acidification processes of AD have not been comprehensively studied. This study first investigated the promotion effect of Fe3O4 on hydrolysis, acidogenesis and acetogenesis stages of AD and proposed the underlying mechanisms, using food waste (FW) as the feedstock, which is considered as the most suitable substrate for VFAs production. Results indicated that the HAc production (77.38 g-C/kg-VS) was enhanced by 79 % in AD of FW with addition of 10 g/L Fe3O4. The duration to reach the maximum HAc pro-duction was also shortened from 14 days to 10 days. The AD tests using model substrates revealed that Fe3O4 enhanced hydrolysis, acidogenesis, and degradation of propionic acid, thus resulting in enhanced HAc production. The enhanced activities of hydrolytic and acid-forming enzymes, and electron transport system (ETS) with Fe3O4 addition further demonstrated its function as an electron acceptor to stimulate electron transfer and accelerate microbial metabolisms in AD, which contributed to the enhanced HAc production from FW.
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页码:310 / 319
页数:10
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