A critical review of improving mainstream anammox systems: Based on macroscopic process regulation and microscopic enhancement mechanisms

厌氧氨氧化菌 主流 生化工程 化学 氮气 工程类 反硝化 神学 哲学 有机化学 反硝化细菌
作者
Xiaonong Zhang,Xingxing Zhang,Junjiang Chen,Peng Wu,Zhiqiu Yang,Li Zhou,Zixuan Zhu,Zhiqiang Wu,Kangyu Zhang,Yiwen Wang,Guerra Ruth
出处
期刊:Environmental Research [Elsevier BV]
卷期号:236 (Pt 1): 116770-116770 被引量:56
标识
DOI:10.1016/j.envres.2023.116770
摘要

Full-scale anaerobic ammonium oxidation (anammox) engineering applications are vastly limited by the sensitivity of anammox bacteria to the complex mainstream ambience factors. Therefore, it is of great necessity to comprehensively summarize and overcome performance-related challenges in mainstream anammox process at the macro/micro level, including the macroscopic process variable regulation and microscopic biological metabolic enhancement. This article systematically reviewed the recent important advances in the enrichment and retention of anammox bacteria and main factors affecting metabolic regulation under mainstream conditions, and proposed key strategies for the related performance optimization. The characteristics and behavior mechanism of anammox consortia in response to mainstream environment were then discussed in details, and we revealed that the synergistic nitrogen metabolism of multi-functional bacterial genera based on anammox microbiome was conducive to mainstream anammox nitrogen removal processes. Finally, the critical outcomes of anammox extracellular electron transfer (EET) at the micro level were well presented, carbon-based conductive materials or exogenous electron shuttles can stimulate and mediate anammox EET in mainstream environments to optimize system performance from a micro perspective. Overall, this review advances the extensive implementation of mainstream anammox practice in future as well as shedding new light on the related EET and microbial mechanisms.
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