Natural sunlight induced rapid formation of water-born algal-bacterial granules in an aerobic bacterial granular photo-sequencing batch reactor

藻类 褐藻糖胶 序批式反应器 胞外聚合物 细菌 生物 造粒 绿藻科 绿藻门 植物 细菌生长 绿藻 分段丝状菌 食品科学 环境化学 废水 化学 生物膜 多糖 活性污泥 生物化学 环境工程 环境科学 遗传学 物理 经典力学
作者
Qiulai He,Li Chen,Shujia Zhang,Rongfan Chen,Hongyu Wang,Wei Zhang,Jianyang Song
出处
期刊:Journal of Hazardous Materials [Elsevier]
卷期号:359: 222-230 被引量:153
标识
DOI:10.1016/j.jhazmat.2018.07.051
摘要

Wastewater treatment by means of algal-bacterial granules has become a hot topic worldwide recently. Rapid granulation of algal-bacterial granules was achieved in an aerobic bacterial granular sequencing batch reactor (SBR) under natural sunlight exposure. Occurrence of abundant filamentous bacteria bridging the water-born algae, and overproduction of extracellular polymeric substances (EPS) (especially polysaccharides (PS), tryptophan & protein-like, and humic acid-like substances) were observed on the first 3 days, while the algae grew into the inner side of the granules and mature granules were obtained on day 7. The growth of the water-born algae slightly decreased the settleability, mean sizes of the granules, but stimulated the bioactivity significantly. Whereas, the biomass retention decreased before day 3, and got stable soon with the maturation period with symbiotic growth of algal-bacterial biomass. Illumina results revealed that the introduction of algae reduced the richness and diversity of bacterial community. Besides, few changes in structure and some compositions shifts in bacterial communities were found, while the predominant algae shifted from Diatomea to green algae Chlorophyceae. The possible mechanism for natural sunlight induced granulation of algal-bacterial granules was thus proposed based on the interactions between algae and bacteria.
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