Microalgae Shed Light on Interconnected Nitrogen Transformation in Microalgal-Bacterial Consortia

IF 4.8 Q1 ENVIRONMENTAL SCIENCES ACS ES&T water Pub Date : 2024-07-31 DOI:10.1021/acsestwater.4c0033910.1021/acsestwater.4c00339
Shengnan Li, Shiyu Zhang, Yun Bai, Xue Li and Shih-Hsin Ho*, 
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Abstract

Nitrogen is a component of many fundamental biomolecules and also participates in environmental redox chemistry. Nitrogen pollution is a serious environmental problem. Biological nitrogen removal is one of the most significant issues in wastewater treatment. Microbial-driven nitrogen transformations are carried out through metabolic pathways. Wastewater treatment systems using microalgal-bacterial cocultures can improve nutrient removal efficiency through interspecies synergistic interactions. However, relevant studies on the nitrogen metabolism and microbial characteristics of microalgal-bacterial systems have not been systematically reviewed and discussed. This Review comprehensively analyzes nitrogen contaminants in various biological nitrogen removal microalgal-bacterial composite systems and summarizes the microbial characteristics and nitrogen-metabolizing enzymes present. Nitrogen metabolism regulation methods involving quorum sensing and genetic regulation are described, and methods of enhancing microbial nitrogen removal through microbial community interactions, enhancing enzyme activity, and promoting electron transfer are introduced in detail. This Review provides a perspective on the improvement and optimization of microalgal-bacterial wastewater treatment technology through analyzing the nitrogen metabolism and increasing process performance.

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微藻揭示了微藻-细菌联合体中相互关联的氮转化过程
氮是许多基本生物分子的组成部分,也参与环境氧化还原化学。氮污染是一个严重的环境问题。生物脱氮是废水处理中最重要的问题之一。微生物驱动的氮转化是通过代谢途径进行的。使用微藻-细菌共培养物的废水处理系统可通过种间协同作用提高营养物去除效率。然而,关于微藻-细菌系统的氮代谢和微生物特性的相关研究尚未得到系统的回顾和讨论。本综述全面分析了各种生物脱氮微藻-细菌复合系统中的氮污染物,并总结了存在的微生物特征和氮代谢酶。介绍了涉及法定量感应和遗传调控的氮代谢调控方法,并详细介绍了通过微生物群落相互作用、增强酶活性和促进电子传递来提高微生物脱氮能力的方法。本综述为通过分析氮代谢和提高工艺性能来改进和优化微藻-细菌废水处理技术提供了一个视角。
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