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盐度和添加甜菜碱对有机含盐废水厌氧颗粒污泥性质及微生物群落演替模式的影响

Effects of salinity and betaine addition on anaerobic granular sludge properties and microbial community succession patterns in organic saline wastewater.

作者信息

Zhang Zhifei, Wan Jinquan, Ye Gang, Wang Yan, Bai Yuwei, Yan Zhicheng

机构信息

College of Environment and Energy, South China University of Technology, Guangzhou 510006, China.

College of Environment and Energy, South China University of Technology, Guangzhou 510006, China.

出版信息

J Environ Sci (China). 2025 Jan;147:310-321. doi: 10.1016/j.jes.2023.10.027. Epub 2023 Oct 31.

Abstract

In this study, the effects of different salinity gradients and addition of compatible solutes on anaerobic treated effluent water qualities, sludge characteristics and microbial communities were investigated. The increase in salinity resulted in a decrease in particle size of the granular sludge, which was concentrated in the range of 0.5-1.0 mm. The content of EPS (extracellular polymeric substances) in the granular sludge gradually increased with increasing salinity and the addition of betaine (a typical compatible solute). Meanwhile, the microbial community structure was significantly affected by salinity, with high salinity reducing the diversity of bacteria. At higher salinity, Patescibacteria and Proteobacteria gradually became the dominant phylum, with relative abundance increasing to 13.53% and 12.16% at 20 g/L salinity. Desulfobacterota and its subordinate Desulfovibrio, which secrete EPS in large quantities, dominated significantly after betaine addition.Their relative abundance reached 13.65% and 7.86% at phylum level and genus level. The effect of these changes on the treated effluent was shown as the average chemical oxygen demand (COD) removal rate decreased from 82.10% to 79.71%, 78.01%, 68.51% and 64.55% when the salinity gradually increased from 2 g/L to 6, 10, 16 and 20 g/L. At the salinity of 20 g/L, average COD removal increased to 71.65% by the addition of 2 mmol/L betaine. The gradient elevated salinity and the exogenous addition of betaine played an important role in achieving stability of the anaerobic system in a highly saline environment, which provided a feasible strategy for anaerobic treatment of organic saline wastewater.

摘要

本研究考察了不同盐度梯度及添加相容性溶质对厌氧处理出水水质、污泥特性和微生物群落的影响。盐度升高导致颗粒污泥粒径减小,粒径集中在0.5 - 1.0 mm范围内。颗粒污泥中胞外聚合物(EPS)的含量随盐度升高和添加甜菜碱(一种典型的相容性溶质)而逐渐增加。同时,微生物群落结构受盐度显著影响,高盐度降低了细菌的多样性。在较高盐度下,Patescibacteria和变形菌门逐渐成为优势菌门,在20 g/L盐度下相对丰度分别增至13.53%和12.16%。添加甜菜碱后,大量分泌EPS的脱硫杆菌门及其下属的脱硫弧菌属占主导地位显著。它们在门水平和属水平的相对丰度分别达到13.65%和7.86%。这些变化对处理后出水的影响表现为,当盐度从2 g/L逐渐升高至6、10、16和20 g/L时,平均化学需氧量(COD)去除率从82.10%降至79.71%、78.01%、68.51%和64.55%。在20 g/L盐度下,添加2 mmol/L甜菜碱后平均COD去除率提高到71.65%。梯度升高盐度和外源添加甜菜碱对在高盐环境中实现厌氧系统的稳定性起重要作用,为有机含盐废水的厌氧处理提供了一种可行策略。

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