TY - JOUR
T1 - Free ammonia pretreatment deteriorates sludge dewaterability during anaerobic fermentation of waste activated sludge
T2 - An overlooked concern
AU - Zhang, Jiamin
AU - Cao, Zhiren
AU - Wong, Jonathan W.C.
AU - Zhang, Wei
AU - Wang, Dongbo
AU - Ma, Yingqun
AU - Pan, Min
AU - Xu, Qiuxiang
AU - Li, Xiaoming
N1 - Publisher Copyright:
© 2025 Elsevier Ltd.
PY - 2026/1
Y1 - 2026/1
N2 - Free ammonia (FA) pretreatment has been reported as an effective pretreatment method for waste activated sludge (WAS) fermentation to produce volatile fatty acid. However, its impact on sludge dewaterability, a critical factor determining the final WAS processing cost, remains unexplored. This study systematically evaluated fermented sludge dewatering performance with FA pretreatment through semi-continuous anaerobic fermentation (SCAF), overcoming batch test limitations. The results showed a significant deterioration of sludge dewatering performance after SCAF with FA pretreatment (180 mg/L), where capillary suction time (CST) and specific resistance to filtration (SRF) increased from 972.9 ± 28.9 s and 4.3 ± 0.1 × 1011 m/kg (blank) to 1687.9 ± 54.6 s and 9.4 ± 0.2 × 1011 m/kg ( p < 0.05), respectively. Mechanistic analyses displayed that FA pretreatment reduced the particle size distribution, Zeta potential and water contact angle, which decreased the relative hydrophobicity (70.5 ± 1.2 % to 61.8 ± 1.1 %, p < 0.05). FA pretreatment could also enhance the contents of PO43−, proteins, polysaccharides, and humic acid in the liquid phase through sludge disintegration, thereby raising the sludge hydrophilicity. Sludge pretreatment and conditioning tests demonstrated that FA pretreatment (including the roles of NH3 and pH) exerted significantly stronger deterioration impact on sludge dewaterability than pH alone, which should be considered as the complete contributor. This study helps to fill the research gap of FA pretreatment in sludge dewatering during SCAF and provide data support and guidance for the further improvement of FA pretreatment technology before practical application.
AB - Free ammonia (FA) pretreatment has been reported as an effective pretreatment method for waste activated sludge (WAS) fermentation to produce volatile fatty acid. However, its impact on sludge dewaterability, a critical factor determining the final WAS processing cost, remains unexplored. This study systematically evaluated fermented sludge dewatering performance with FA pretreatment through semi-continuous anaerobic fermentation (SCAF), overcoming batch test limitations. The results showed a significant deterioration of sludge dewatering performance after SCAF with FA pretreatment (180 mg/L), where capillary suction time (CST) and specific resistance to filtration (SRF) increased from 972.9 ± 28.9 s and 4.3 ± 0.1 × 1011 m/kg (blank) to 1687.9 ± 54.6 s and 9.4 ± 0.2 × 1011 m/kg ( p < 0.05), respectively. Mechanistic analyses displayed that FA pretreatment reduced the particle size distribution, Zeta potential and water contact angle, which decreased the relative hydrophobicity (70.5 ± 1.2 % to 61.8 ± 1.1 %, p < 0.05). FA pretreatment could also enhance the contents of PO43−, proteins, polysaccharides, and humic acid in the liquid phase through sludge disintegration, thereby raising the sludge hydrophilicity. Sludge pretreatment and conditioning tests demonstrated that FA pretreatment (including the roles of NH3 and pH) exerted significantly stronger deterioration impact on sludge dewaterability than pH alone, which should be considered as the complete contributor. This study helps to fill the research gap of FA pretreatment in sludge dewatering during SCAF and provide data support and guidance for the further improvement of FA pretreatment technology before practical application.
KW - Dewaterability
KW - Fermented sludge
KW - Free ammonia pretreatment
KW - Mechanisms
KW - Semi-continuous anaerobic fermentation
UR - https://www.scopus.com/pages/publications/105026195613
U2 - 10.1016/j.jwpe.2025.109401
DO - 10.1016/j.jwpe.2025.109401
M3 - 文章
AN - SCOPUS:105026195613
SN - 2214-7144
VL - 81
JO - Journal of Water Process Engineering
JF - Journal of Water Process Engineering
M1 - 109401
ER -