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A mechanistic review on aerobic denitrification for nitrogen removal in water treatment. | LitMetric

A mechanistic review on aerobic denitrification for nitrogen removal in water treatment.

Sci Total Environ

School of Environmental and Municipal Engineering, Xi'an University of Architecture and Technology, Xi'an 710055, China; Shaanxi Key Laboratory of Environmental Engineering, Xi'an University of Architecture and Technology, Xi'an 710055, China.

Published: November 2022

AI Article Synopsis

  • Traditional nitrogen removal involves two steps: nitrification (aerobic) and denitrification (anaerobic), but requires significant space and strict conditions.
  • Aerobic denitrification, which occurs in aerobic conditions using aerobic denitrifying bacteria (ADB), offers a potential alternative that can simplify this process.
  • The article evaluates different theories explaining ADB functions, discusses factors affecting their performance, and highlights current challenges and future research directions, ultimately aiming to enhance wastewater treatment designs.

Article Abstract

The traditional biological nitrogen removal technology consists of two steps: nitrification by autotrophs in aerobic circumstances and denitrification by heterotrophs in anaerobic situations; however, this technology requires a huge area and stringent environmental conditions. Researchers reached the conclusion that the denitrification process could also be carried out in aerobic circumstances with the discovery of aerobic denitrification. The aerobic denitrification process is carried out by aerobic denitrifying bacteria (ADB), most of which are heterotrophic bacteria that can metabolize various forms of nitrogen compounds under aerobic conditions and directly convert ammonia nitrogen to N for discharge from the system. Despite the fact that there is no universal agreement on the mechanism of aerobic denitrification, this article reviewed four current explanations for the denitrification mechanism of ADB, including the microenvironment theory, theory of enzyme, electron transport bottlenecks theory, and omics study, and summarized the parameters affecting the denitrification efficiency of ADB in terms of carbon source, temperature, dissolved oxygen (DO), and pH. It also discussed the current status of the application of aerobic denitrification in practical processes. Following the review, the difficulties of present aerobic denitrification technology are outlined and future research options are highlighted. This review may help to improve the design of current wastewater treatment facilities by utilizing ADB for effective nitrogen removal and provide the engineers with relevant references.

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Source
http://dx.doi.org/10.1016/j.scitotenv.2022.157452DOI Listing

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