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Importance of exopolysaccharide branched chains in determining the aggregation ability of anammox sludge.

Authors :
Wang, Shuai
Li, Hanxiang
Zhang, Aiyu
Fang, Fang
Chen, Youpeng
Yan, Peng
Guo, Jinsong
Ma, Tengfei
Shen, Yu
Source :
Science of the Total Environment. Sep2020, Vol. 734, pN.PAG-N.PAG. 1p.
Publication Year :
2020

Abstract

The high aggregation ability of anammox granular sludge is an issue of wide concern; however, the mechanism needs to be further clarified. In this study, selective hydrolysis experiments were performed to determine the role of exopolysaccharide (PS) branched chains and proteins for the aggregation mechanism of anammox granular sludge. The results revealed that selective hydrolysis of proteins hardly affected the granular aggregation while the hydrolysis of PS branched chains led to a decrease in the sludge zeta potential by 17.3% (β-amylase group) and 24.1% (isoamylase group), a decrease of hydrophobicity by 11.6% (β-amylase group) and 17.7% (isoamylase group), an increase of surface free energy by 36.8% (β-amylase group) and 55.1% (isoamylase group) and the deterioration of the PS self-assembly ability. In addition, FTIR and XPS spectra analysis showed that the disruption of PS branched chains resulted in a higher proportion of hydrophilic and electronegative groups, which hindered bacterial aggregation, which was further confirmed by XDLVO theory. The key role of the PS chain structure in sludge aggregation is a critical finding of this work that provides helpful insights for the application of anammox process. Unlabelled Image • Role of polysaccharide branched chains in granular aggregation was first proven. • Polysaccharide branched chains favour aggregation of granules via self-assembly. • Destruction of PS branches reduces the zeta potential and hydrophobicity of sludge. • Hydrolysis of PS branches leads to a higher repulsive barrier for sludge aggregation. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00489697
Volume :
734
Database :
Academic Search Index
Journal :
Science of the Total Environment
Publication Type :
Academic Journal
Accession number :
143685149
Full Text :
https://doi.org/10.1016/j.scitotenv.2020.139470