Abate Rediat, Oon Yoong-Sin, Oon Yoong-Ling, Bi Yonghong
Key Laboratory of Algal Biology, Institute of Hydrobiology, Chinese Academy of Sciences, Wuhan, 430072, China.
State Key Laboratory of Freshwater Ecology and Biotechnology, Institute of Hydrobiology, Chinese Academy of Sciences, Wuhan, Hubei, 430072, China.
Heliyon. 2024 May 14;10(10):e31170. doi: 10.1016/j.heliyon.2024.e31170. eCollection 2024 May 30.
Microalgae and bacteria, known for their resilience, rapid growth, and proximate ecological partnerships, play fundamental roles in environmental and biotechnological advancements. This comprehensive review explores the synergistic interactions between microalgae and bacteria as an innovative approach to address some of the most pressing environmental issues and the demands of clean and renewable freshwater and energy sources. Studies indicated that microalgae-bacteria consortia can considerably enhance the output of biotechnological applications; for instance, various reports showed during wastewater treatment the COD removal efficiency increased by 40%-90.5 % due to microalgae-bacteria consortia, suggesting its great potential amenability in biotechnology. This review critically synthesizes research works on the microalgae and bacteria nexus applied in the advancements of renewable energy generation, with a special focus on biohydrogen, reclamation of wastewater and desalination processes. The mechanisms of underlying interactions, the environmental factors influencing consortia performance, and the challenges and benefits of employing these bio-complexes over traditional methods are also discussed in detail. This paper also evaluates the biotechnological applications of these microorganism consortia for the augmentation of biomass production and the synthesis of valuable biochemicals. Furthermore, the review sheds light on the integration of microalgae-bacteria systems in microbial fuel cells for concurrent energy production, waste treatment, and resource recovery. This review postulates microalgae-bacteria consortia as a sustainable and efficient solution for clean water and energy, providing insights into future research directions and the potential for industrial-scale applications.
微藻和细菌以其适应力强、生长迅速以及密切的生态伙伴关系而闻名,在环境和生物技术进步中发挥着重要作用。这篇全面的综述探讨了微藻与细菌之间的协同相互作用,将其作为一种创新方法,以应对一些最紧迫的环境问题以及清洁可再生淡水和能源的需求。研究表明,微藻 - 细菌共生体可显著提高生物技术应用的产量;例如,各种报告显示,在废水处理过程中,由于微藻 - 细菌共生体,化学需氧量(COD)的去除效率提高了40% - 90.5%,这表明其在生物技术方面具有巨大的应用潜力。本综述批判性地综合了关于微藻与细菌关系在可再生能源生产进步中应用的研究工作,特别关注生物氢、废水回收和海水淡化过程。还详细讨论了潜在相互作用的机制、影响共生体性能的环境因素,以及采用这些生物复合体相对于传统方法的挑战和益处。本文还评估了这些微生物共生体在增加生物质产量和合成有价值生物化学品方面的生物技术应用。此外,该综述还阐述了微藻 - 细菌系统在微生物燃料电池中用于同时产生能源、处理废物和回收资源的整合情况。本综述假定微藻 - 细菌共生体是清洁水和能源的可持续且高效的解决方案,为未来的研究方向和工业规模应用潜力提供了见解。