化学
发酵
产甲烷
亚硫酸盐
活性污泥
水解
混合酸发酵
厌氧消化
乙酸钠
生物化学
新陈代谢
色谱法
食品科学
有机化学
细菌
污水处理
甲烷
废物管理
生物
乳酸发酵
乳酸
工程类
遗传学
作者
Lijuan Wu,Rui Zhu,Xiaoxia Han,Yuexi Chen,Zhen Long,Hao Dong,Xiaojiang Chen,Yang Wu,Yinglong Su,Zhengyong Zhang,Jingyang Luo
标识
DOI:10.1016/j.biortech.2023.128589
摘要
Anaerobic fermentation is a promising method for waste activated sludge (WAS) treatment, but ineffective solubilization and hydrolysis limit its application. The current study examined the function of sodium sulfite (SDS) in potassium permanganate (PP)-conditioned WAS fermentation for short-chain fatty acids (SCFAs) biosynthesis. The presence of SDS in the PP system (PP/SDS) reduced the positive effects of PP on total SCFAs yield (2755 versus 3471 mg COD/L), while effectively increasing the proportion of acetate (from 41 to 81 %). Not only did SDS decrease the promoting effects of PP on WAS solubilization and hydrolysis efficiency by 5-42 %, it also shifted microbial metabolic pathways to favor acetate production. In addition, the amino acid metabolism with acetate as end product was enhanced. Moreover, PP/SDS inhibited methanogenesis, resulting in an accumulation of acetate in high quantities. Thus, the current study a provided insight and direction for effective WAS treatment with acetate-enriched SCFAs production.
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