Literature DB >> 32791863

Solid-phase denitrification for water remediation: processes, limitations, and new aspects.

Hua Zhong1,2, Ying Cheng3, Zulfiqar Ahmad2, Yalu Shao2, Hongwei Zhang2, Qihong Lu1, Hojae Shim1.   

Abstract

Nitrate pollution in water environments is a ubiquitous problem. Solid-phase denitrification (SPD) is a technology that has attracted in recent years increasing attention due to its significant advantage suitability over the aqueous-based denitrification for in situ water remediation. This paper provides a view of new aspects of the application of SPD for water remediation. The processes and mechanisms for nitrogen transformation in SPD, for example, direct denitrification, dissimilatory nitrate reduction to ammonium, and anammox are presented. The main processes of the transformation of the carbon substrate in SPD are also discussed. The major limitations of SPD, including low carbon availability, NO2 - and N2O accumulation, dissolved organic carbon release, and NH4 + production, are summarized and the factors associated with such limitations are also discussed. In addition, some novel measures to mitigate these limitations, such as applying a biodegradable polymer substrate and heterotrophic-autotrophic denitrification (HAD) process, are described. Finally, simultaneous removal of nitrate and some typical concurrent contaminants for expanded application of SPD are discussed. This review attempts to advance our understanding of engineered denitrification processes for wastewater treatment or water remediation.

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Keywords:  Nitrate; anammox; biodegradable polymers; concurrent contaminants; heterotrophic-autotrophic denitrification; solid-phase denitrification

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Year:  2020        PMID: 32791863     DOI: 10.1080/07388551.2020.1805720

Source DB:  PubMed          Journal:  Crit Rev Biotechnol        ISSN: 0738-8551            Impact factor:   8.429


  2 in total

1.  Manganese oxidation and prokaryotic community analysis in a polycaprolactone-packed aerated biofilm reactor operated under seawater conditions.

Authors:  Masataka Aoki; Yukina Miyashita; Toru Miwa; Takahiro Watari; Takashi Yamaguchi; Kazuaki Syutsubo; Kazuyuki Hayashi
Journal:  3 Biotech       Date:  2022-07-21       Impact factor: 2.893

2.  The intrinsic relevance of nitrogen removal pathway to varying nitrate loading rate in a polycaprolactone-supported denitrification system.

Authors:  Shiyang Zhang; Zhiwei Tang; Shibin Xia; Yinghe Jiang; Meng Li; Bing Wang
Journal:  Biodegradation       Date:  2022-05-06       Impact factor: 3.731

  2 in total

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