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聚磷菌、脱氯菌和聚硫菌的研究进展:代谢机制、应用及影响因素。

Research advances of the phosphorus-accumulating organisms of Candidatus Accumulibacter, Dechloromonas and Tetrasphaera: Metabolic mechanisms, applications and influencing factors.

机构信息

State and Local Joint Engineering Research Center of Municipal Wastewater Treatment and Resource Recycling, Qingdao University of Technology, Qingdao, 266033, PR China; National Engineering Laboratory for Advanced Municipal Wastewater Treatment and Reuse Technology, Engineering Research Center of Beijing, Beijing University of Technology, Beijing, 100124, China.

State and Local Joint Engineering Research Center of Municipal Wastewater Treatment and Resource Recycling, Qingdao University of Technology, Qingdao, 266033, PR China.

出版信息

Chemosphere. 2022 Nov;307(Pt 1):135675. doi: 10.1016/j.chemosphere.2022.135675. Epub 2022 Jul 13.

Abstract

Phosphorus-accumulating organisms (PAOs), which harbor metabolic mechanisms for phosphorus removal, are widely applied in wastewater treatment. Recently, novel PAOs and phosphorus removal metabolic pathways have been identified and studied. Specifically, Dechloromonas and Tetrasphaera can remove phosphorus via the denitrifying phosphorus removal and fermentation phosphorus removal pathways, respectively. As the main PAOs in biological phosphorus removal systems, the conventional PAO Candidatus Accumulibacter and the novel PAOs Dechloromonas and Tetrasphaera are thoroughly discussed in this paper, with a specific focus on their phosphorus removal metabolic mechanisms, process applications, community abundance and influencing factors. Dechloromonas can achieve simultaneous nitrogen and phosphorus removal in an anoxic environment through the denitrifying phosphorus removal metabolic pathway, which can further reduce carbon source requirements and aeration energy consumption. The metabolic pathways of Tetrasphaera are diverse, with phosphorus removal occurring in conjunction with macromolecular organics degradation through anaerobic fermentation. A collaborative oxic phosphorus removal pathway between Tetrasphaera and Ca. Accumulibacter, or a collaborative anoxic denitrifying phosphorus removal pathway between Tetrasphaera and Dechloromonas are future development directions for biological phosphorus removal technologies, which can further reduce carbon source and energy consumption while achieving enhanced phosphorus removal.

摘要

聚磷菌(PAOs)具有除磷的代谢机制,被广泛应用于污水处理中。近年来,新型的 PAOs 和除磷代谢途径已经被鉴定和研究。具体来说,脱氯菌和四氢呋喃通过反硝化除磷和发酵除磷途径去除磷。作为生物除磷系统中的主要 PAOs,传统的 PAO 假单胞菌和新型的 PAO 脱氯菌和四氢呋喃被本文深入讨论,特别关注它们的除磷代谢机制、工艺应用、群落丰度和影响因素。脱氯菌可以通过反硝化除磷代谢途径在缺氧环境中同时去除氮和磷,这可以进一步降低碳源需求和曝气能耗。四氢呋喃的代谢途径多样,通过厌氧发酵与大分子有机物降解同时除磷。四氢呋喃与 Ca. Accumulibacter 之间的协同好氧除磷途径,或四氢呋喃与脱氯菌之间的协同缺氧反硝化除磷途径是生物除磷技术的未来发展方向,这可以进一步降低碳源和能源消耗,同时实现增强的除磷效果。

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