Wang Ning, Wang Aifang, Sun Hejia, Zhang Luohong, Liu Yonghong
School of Environmental and Chemical Engineering, Key Laboratory of Functional Textile Material and Product of the Ministry of Education, Xi'an Polytechnic University, Xi'an, 710048, P. R. China.
Center of Biological Resources Development and Pollution Control Universities of Shaanxi Province, Xi'an Polytechnic University, Xi'an, 710048, P. R. China.
World J Microbiol Biotechnol. 2025 Apr 28;41(5):145. doi: 10.1007/s11274-025-04358-y.
The anaerobic ammonium oxidation (Anammox) process has revolutionized nitrogen removal in wastewater treatment with its exceptional cost-effectiveness and carbon-neutral characteristics. Nevertheless, the intrinsic psychrophilic sensitivity of anaerobic ammonium-oxidizing bacteria (AnAOB), particularly their rapid metabolic suppression below 15 °C, poses a critical bottleneck for sustainable implementation in cold-climate regions. Recent advancements in exogenous stimulation strategies offer promising solutions to this challenge, with particular emphasis on iron supplementation and cryogenic activity regulators (CARs) due to their non-invasive operational compatibility and mechanistic versatility. This review provides a comprehensive analysis of the operational performance, functional enzyme activity, and microbial abundance associated with the use of iron and CARs as exogenous promoters in low-temperature Anammox system. Building upon current limitations in single-factor approaches, the dual-modulation strategy integrating iron-chelated CARs complexes are proposed, which leverages the complementary benefits of iron-mediated metabolic activation and CARs-induced cryoprotection, potentially enabling year-round Anammox operation under low temperatures. This mechanistic-to-applied review provides critical insights for advancing Anammox implementation in circular economy-driven wastewater infrastructures under climate change scenarios.
厌氧氨氧化(Anammox)工艺凭借其卓越的成本效益和碳中和特性,彻底改变了废水处理中的氮去除方式。然而,厌氧氨氧化细菌(AnAOB)固有的嗜冷敏感性,尤其是它们在15°C以下会迅速抑制代谢,这成为在寒冷气候地区可持续应用的关键瓶颈。近期外源刺激策略的进展为这一挑战提供了有前景的解决方案,由于其非侵入性的操作兼容性和机制多样性,特别强调了铁补充和低温活性调节剂(CARs)。本综述全面分析了在低温Anammox系统中使用铁和CARs作为外源促进剂时的运行性能、功能酶活性和微生物丰度。基于单因素方法目前的局限性,提出了整合铁螯合CARs复合物的双调制策略,该策略利用了铁介导的代谢激活和CARs诱导的低温保护的互补优势,有可能实现低温下全年的Anammox运行。这篇从机理到应用的综述为在气候变化情景下推进循环经济驱动的废水基础设施中的Anammox实施提供了关键见解。