Li Jiapeng, Chen Yanxi, Qi Ji, Zuo Xiaotian, Meng Fangang
School of Environmental Science and Engineering, Sun Yat-sen University, Guangzhou 510275, PR China.
Guangdong Provincial Key Laboratory of Environmental Pollution Control and Remediation Technology (Sun Yat-sen University), Guangzhou 510275, PR China.
Water Res X. 2024 Aug 27;24:100250. doi: 10.1016/j.wroa.2024.100250. eCollection 2024 Sep 1.
Extracellular polymeric substances (EPS) play a crucial role in the aggregation of partial denitrification (PD) consortia, as EPS is closely linked to bioreactor performance. However, the structural and compositional properties of EPS from PD consortia have not yet been investigated. In this study, photometric measurements indicated that PD consortia contained significantly more EPS (168.81 ± 2.10 mg/g VSS) compared to conventional activated sludge (79.79 mg/g VSS). The EPS of PD consortia exhibited a significant predominance of proteins over polysaccharides, with a protein/polysaccharide ratio of 1.43 ± 0.10. FTIR analysis revealed that the EPS of PD consortia contained fewer hydrophilic functional groups, particularly carboxyl and carbonyl groups, indicating a high aggregation potential. The content comparison of EPS and functional groups across three stratified EPS subfractions from PD consortia consistently followed the sequence: TB-EPS > LB-EPS > S-EPS. XPS results corroborated the FTIR findings and the protein/polysaccharide ratio determined by photometric measurements, all of which suggested that the EPS of PD consortia exhibited a higher abundance of hydrophobic functional groups. However, the higher -helix/(-sheet + random coil) ratio (0.99) suggested that the proteins in PD consortia had a compact structure, making inner hydrophobic groups difficult to expose. This compact protein structure could limit aggregation among bacterial cells, indicating the need for process optimization to enhance sludge aggregation in PD-related processes. Overall, understanding the aggregation characteristics of PD consortia could improve the application of PD-based processes.
胞外聚合物(EPS)在部分反硝化(PD)菌群的聚集中起着关键作用,因为EPS与生物反应器性能密切相关。然而,PD菌群中EPS的结构和组成特性尚未得到研究。在本研究中,光度测量表明,与传统活性污泥(79.79 mg/g VSS)相比,PD菌群含有显著更多的EPS(168.81±2.10 mg/g VSS)。PD菌群的EPS表现出蛋白质相对于多糖的显著优势,蛋白质/多糖比为1.43±0.10。傅里叶变换红外光谱(FTIR)分析表明,PD菌群的EPS含有较少的亲水性官能团,特别是羧基和羰基,表明其具有较高的聚集潜力。PD菌群三个分层EPS亚组分中EPS和官能团的含量比较始终遵循以下顺序:TB-EPS>LB-EPS>S-EPS。X射线光电子能谱(XPS)结果证实了FTIR的发现以及光度测量确定的蛋白质/多糖比,所有这些都表明PD菌群的EPS表现出更高丰度的疏水官能团。然而,较高的α-螺旋/(β-折叠+无规卷曲)比(0.99)表明,PD菌群中的蛋白质具有紧密的结构,使得内部疏水基团难以暴露。这种紧密的蛋白质结构可能会限制细菌细胞之间的聚集,这表明需要进行工艺优化以增强与PD相关过程中的污泥聚集。总体而言,了解PD菌群的聚集特性可以改善基于PD的工艺的应用。