State Key Laboratory of Urban Water Resource and Environment, School of Civil & Environmental Engineering, Harbin Institute of Technology, Shenzhen 518055, China.
State Key Laboratory of Urban Water Resource and Environment, School of Civil & Environmental Engineering, Harbin Institute of Technology, Shenzhen 518055, China.
Biotechnol Adv. 2024 Dec;77:108458. doi: 10.1016/j.biotechadv.2024.108458. Epub 2024 Sep 27.
Sustainable wastewater treatment is essential for attaining clean water and sanitation, aligning with UN Sustainable Development Goals. Wastewater treatment plants (WWTPs) have utilized environmental microbiomes in biological treatment processes in this effort for over a century. However, the inherent complexity and redundancy of microbial communities, and emerging chemical and biological contaminants, challenge the biotechnology applications. Over the past decades, understanding and utilization of microbial energy metabolism and interaction relationships have revolutionized the biological system. In this review, we discuss how microbiome regulation strategies are being used to generate actionable performance for low-carbon pollutant removal and resource recovery in WWTPs. The engineering application cases also highlight the real feasibility and promising prospects of the microbiome regulation approaches. In conclusion, we recommend identifying environmental risks associated with chemical and biological contaminants transformation as a prerequisite. We propose the integration of gene editing and enzyme design to precisely regulate microbiomes for the synergistic control of both chemical and biological risks. Additionally, the development of integrated technologies and engineering equipment is crucial in addressing the ongoing water crisis. This review advocates for the innovation of conventional wastewater treatment biotechnology to ensure sustainable wastewater treatment.
可持续废水处理对于实现清洁水和卫生设施至关重要,符合联合国可持续发展目标。在这方面,废水处理厂(WWTP)在一个多世纪的生物处理过程中利用了环境微生物组。然而,微生物群落固有的复杂性和冗余性,以及新兴的化学和生物污染物,给生物技术的应用带来了挑战。在过去的几十年中,对微生物能量代谢和相互关系的理解和利用彻底改变了生物系统。在这篇综述中,我们讨论了如何利用微生物组调控策略来提高 WWTP 中低碳污染物去除和资源回收的可操作性性能。工程应用案例也突出了微生物组调控方法的实际可行性和广阔前景。总之,我们建议首先确定与化学和生物污染物转化相关的环境风险。我们提出将基因编辑和酶设计相结合,以精确调控微生物组,协同控制化学和生物风险。此外,开发综合技术和工程设备对于应对当前的水危机至关重要。本综述主张对传统废水处理生物技术进行创新,以确保可持续的废水处理。