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从不同的废渣中提取的类似藻酸盐的胞外多糖具有不同的物理化学和材料特性。

Alginate-like exopolysaccharides extracted from different waste sludges exhibit varying physicochemical and material properties.

作者信息

Rehman Zahid Ur, Ghaani Masoud, Mohamed Ahmed Y A, Gallagher John, Saikaly Pascal E, Ali Muhammad

机构信息

Biological and Environmental Science and Engineering Division, Water Desalination and Reuse Research Center, King Abdullah University of Science and Technology, Thuwal, Saudi Arabia.

Research and Analytical Services Department, Saudi. Aramco, Dhahran, Saudi Arabia.

出版信息

Front Microbiol. 2024 Nov 5;15:1493782. doi: 10.3389/fmicb.2024.1493782. eCollection 2024.

Abstract

This study examined the influence of different wastewater treatment processes on the physicochemical properties of Alginate-Like Exopolymers (ALE) extracted from waste sludge. Sludge samples were collected from wastewater treatment plants (WWTPs) processing both combined industrial and domestic wastewater, as well as domestic wastewater alone. Among the processes studied, aerobic granular sludge (AGS) produced the highest ALE yield (352 ± 50 mg/g-VS), significantly exceeding that from membrane bioreactor (170 ± 41 mg/g-VS) and conventional activated sludge (<130 mg/g-VS). AGS-derived ALE also had the highest uronic acid content (224 ± 14.5 mg/g-VS), with mannuronic acids playing a critical role in enhancing hydrogel cohesion and stability. The results showed that the distinct microbial consortium in the AGS system, including the presence of , was strongly associated with increased ALE production. This establishes a novel link between microbial community composition and ALE yield. These insights are crucial for optimizing resource recovery in AGS systems and underscore the potential of ALE for various industrial applications.

摘要

本研究考察了不同废水处理工艺对从剩余污泥中提取的类藻酸盐胞外聚合物(ALE)理化性质的影响。污泥样本取自处理工业和生活混合废水以及仅处理生活废水的污水处理厂(WWTPs)。在所研究的工艺中,好氧颗粒污泥(AGS)产生的ALE产量最高(352±50mg/g-VS),显著高于膜生物反应器(170±41mg/g-VS)和传统活性污泥工艺(<130mg/g-VS)。AGS衍生的ALE还具有最高的糖醛酸含量(224±14.5mg/g-VS),其中甘露糖醛酸在增强水凝胶内聚力和稳定性方面起着关键作用。结果表明,AGS系统中独特的微生物群落,包括[此处原文缺失相关内容]的存在,与ALE产量的增加密切相关。这建立了微生物群落组成与ALE产量之间的新联系。这些见解对于优化AGS系统中的资源回收至关重要,并突出了ALE在各种工业应用中的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3a82/11573756/40e8b62f59cf/fmicb-15-1493782-g001.jpg

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