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以其他电子受体进行厌氧氨氧化:从废水中去除氮的展望。

Anammox with alternative electron acceptors: perspectives for nitrogen removal from wastewaters.

机构信息

Laboratory for Research on Advanced Processes for Water Treatment, Engineering Institute, Campus Juriquilla, Universidad Nacional Autónoma de México (UNAM), Blvd. Juriquilla 3001, 76230, Querétaro, Mexico.

Centro de Investigación y Desarrollo Tecnológico en Electroquímica S.C., Parque Tecnológico Querétaro Sanfandila, Querétaro, 76703, Pedro Escobedo, Mexico.

出版信息

Biodegradation. 2024 Feb;35(1):47-70. doi: 10.1007/s10532-023-10044-3. Epub 2023 Jul 12.

Abstract

In the context of the anaerobic ammonium oxidation process (anammox), great scientific advances have been made over the past two decades, making anammox a consolidated technology widely used worldwide for nitrogen removal from wastewaters. This review provides a detailed and comprehensive description of the anammox process, the microorganisms involved and their metabolism. In addition, recent research on the application of the anammox process with alternative electron acceptors is described, highlighting the biochemical reactions involved, its advantages and potential applications for specific wastewaters. An updated description is also given of studies reporting the ability of microorganisms to couple the anammox process to extracellular electron transfer to insoluble electron acceptors; particularly iron, carbon-based materials and electrodes in bioelectrochemical systems (BES). The latter, also referred to as anodic anammox, is a promising strategy to combine the ammonium removal from wastewater with bioelectricity production, which is discussed here in terms of its efficiency, economic feasibility, and energetic aspects. Therefore, the information provided in this review is relevant for future applications.

摘要

在厌氧氨氧化(anammox)过程的背景下,过去二十年取得了重大的科学进展,使 anammox 成为一种广泛应用于世界各地从废水中去除氮的成熟技术。本综述详细全面地描述了 anammox 工艺、涉及的微生物及其代谢。此外,还描述了最近关于使用替代电子受体的 anammox 工艺的应用研究,强调了所涉及的生化反应、其优势以及对特定废水的潜在应用。还更新了描述微生物能够将 anammox 过程与向不溶性电子受体的细胞外电子传递相偶联的研究报告;特别是在生物电化学系统(BES)中与铁、基于碳的材料和电极偶联。后者也称为阳极厌氧氨氧化,是将废水脱氨与生物电能生产相结合的一种很有前途的策略,本文从其效率、经济可行性和能量方面对此进行了讨论。因此,本综述提供的信息与未来的应用相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4817/10774155/f38927cd56a9/10532_2023_10044_Fig1_HTML.jpg

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