Are adding carbon sources and activated sludge helpful to the full-scale packing-reinforced multistage biological contact oxidation process?

IF 8.4 2区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES
Yonglan Tian , Wenjing Chen , Hongwei Liu , Liangfeng Su , Shaoxia Yang , Wang Tian , Huayong Zhang , Tian Zhang , Junfeng Niu
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Abstract

The performance of wastewater treatment plants (WWTPs) is closely related to the structure and function of microbial communities which are frequently regulated by inoculating carbon source or new microbes. However, the status of microbial communities may be determined by the homeostasis of the bioreactors or properties of the influent especially in full-scale wastewater treatment plants. In this study, a full-scale packing-reinforced multistage biological contact oxidation process (PMBCOP) was used for investigating the durative impacts of carbon source addition and new sludge inoculation on the structure, stability and metabolic pathways of microbial communities. The results showed that inoculation of carbon sources or new sludge significantly increased the diversity (Chao1 and Shannon index) and reciprocal cooperations among microorganisms which further improved the stability of microbial communities and the COD (by 15%) and NH3-N (by 3%) removal efficiencies. Proteobacteria and Bacteroidota were two dominant phyla in the system and were responsible for the main metabolic pathway, i.e. amino acid metabolism. Nevertheless, the modifications of key genera, stability, up-regulated metabolites and enriched metabolic pathways as well as the improved removal efficiencies were not able to persist. The resistant ability of microbial community declined after stopping adding carbon source and new sludge which resulted in the instability and low removal efficiencies of the PMBCOP and aroused the requirements on exploring deep homeostatic mechanism of microbial communities and new promoting strategies. This study provided new insights on the durative effects on the succession and metabolism of microbial communities combing with the performances of the full-scale wastewater treatment plant which is helpful for the management of full-scale WWTPs.

Abstract Image

添加碳源和活性污泥对全尺寸填料强化多级生物接触氧化工艺有帮助吗?
污水处理厂的性能与微生物群落的结构和功能密切相关,而微生物群落的结构和功能往往通过接种碳源或新微生物来调节。然而,微生物群落的状态可能取决于生物反应器的稳态或进水特性,特别是在大规模的污水处理厂。本研究采用全尺寸填料强化多级生物接触氧化工艺(PMBCOP),研究了碳源添加和新污泥接种对微生物群落结构、稳定性和代谢途径的持续影响。结果表明,接种碳源或新污泥可显著提高微生物多样性(Chao1指数和Shannon指数)和微生物间的互惠合作,进一步提高微生物群落的稳定性,提高COD(15%)和NH3-N(3%)的去除效率。变形菌门和拟杆菌门是该系统中的两个优势门,它们负责主要的代谢途径,即氨基酸代谢。然而,关键属的改变、稳定性、代谢产物的上调和代谢途径的丰富以及去除效率的提高并不能持续下去。停止添加碳源和新污泥后,微生物群落的抗性能力下降,导致PMBCOP的不稳定和去除效率低,引起了对微生物群落深层稳态机制和新的促进策略的探索。本研究结合规模化污水处理厂的性能,对微生物群落演替和代谢的持续影响提供了新的认识,有助于规模化污水处理厂的管理。
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来源期刊
Journal of Environmental Management
Journal of Environmental Management 环境科学-环境科学
CiteScore
13.70
自引率
5.70%
发文量
2477
审稿时长
84 days
期刊介绍: The Journal of Environmental Management is a journal for the publication of peer reviewed, original research for all aspects of management and the managed use of the environment, both natural and man-made.Critical review articles are also welcome; submission of these is strongly encouraged.
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