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Nitrogen recovery from wastewater by microbial assimilation-A review

Journal

BIORESOURCE TECHNOLOGY
Volume 363, Issue -, Pages -

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.biortech.2022.127933

Keywords

Risks of reactive nitrogen; Nitrogen recovery; Nitrogen removal; Nitrogen conversion fluxes; Microbial assimilation

Funding

  1. National Natural Science Foundation of China [U1906221]
  2. Major Program of Shandong Province Technological Innovation Project [2020CXGC011403]
  3. Open Research Fund Program of Shandong Provincial Key Laboratory of Oilfield Produced Water Treatment and Environmental Pollution Control [SPE-P2021590]

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Efficient nitrogen recovery from wastewater is crucial for reducing nitrogen input and mitigating nitrogen pollution, but current technologies face challenges. Utilizing microbial nitrogen assimilation shows promise for synergistic nitrogen removal and recovery in wastewater treatment.
The increased nitrogen (N) input with low utilization rate in artificial N management has led to massive reactive N (Nr) flows, putting the Earth in a high-risk state. It is essential to recover and recycle Nr during or after Nr removal from wastewater to reduce N input while simultaneously mitigate Nr pollution in addressing the N stress. However, mechanisms for efficient Nr recovery during or after Nr removal remain unclear. Here, the occurrence of N risk and progress in wastewater treatment in recent years as well as challenges of the current technologies for N recovery from wastewater were reviewed. Through analyzing N conversion fluxes in biogeochemical N-cycling networks, microbial N assimilation through photosynthetic and heterotrophic microorganisms was highlighted as promising alternative for synergistic N removal and recovery in wastewater treatment. In addition, the prospects and gaps of Nr recovery from wastewater through microbial assimilation are discussed.

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