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微藻-细菌共生体用于废水处理和生物量生产。

Microalgae-bacteria consortium for wastewater treatment and biomass production.

机构信息

Center for Technology in Water and Wastewater, School of Civil and Environmental Engineering, University of Technology Sydney, NSW 2007, Australia.

Center for Technology in Water and Wastewater, School of Civil and Environmental Engineering, University of Technology Sydney, NSW 2007, Australia.

出版信息

Sci Total Environ. 2022 Sep 10;838(Pt 1):155871. doi: 10.1016/j.scitotenv.2022.155871. Epub 2022 May 11.

Abstract

The diversity of microalgae and bacteria allows them to form a complementary consortium for efficient wastewater treatment and nutrient recovery. This review highlights the potential of wastewater-derived microalgal biomass as a renewable feedstock for producing animal feed, biofertilisers, biofuel, and many valuable biochemicals. Data corroborated from this review shows that microalgae and bacteria can thrive in many environments. Microalgae are especially effective at utilising nutrients from the water as they grow. This review also consolidates the current understanding of microalgae characteristics and their interactions with bacteria in a consortium system. Recent studies on the performance of only microalgae and microalgae-bacteria wastewater treatment are compared and discussed to establish a research roadmap for practical implementation of the consortium systems for various wastewaters (domestic, industrial, agro-industrial, and landfill leachate wastewater). In comparison to the pure microalgae system, the consortium system has a higher removal efficiency of up to 15% and shorter treatment time. Additionally, this review addresses a variety of possibilities for biomass application after wastewater treatment.

摘要

微藻和细菌的多样性使它们能够形成互补的联合体,从而实现高效的废水处理和养分回收。本综述强调了废水衍生的微藻生物质作为生产动物饲料、生物肥料、生物燃料和许多有价值的生化物质的可再生原料的潜力。本综述中的数据证实,微藻和细菌可以在许多环境中茁壮成长。微藻在生长过程中特别有效地利用水中的养分。本综述还总结了目前对微藻特征及其在联合体系统中与细菌相互作用的理解。最近对仅微藻和微藻-细菌废水处理性能的研究进行了比较和讨论,以为各种废水(生活污水、工业污水、农业工业污水和垃圾渗滤液)联合体系统的实际应用建立研究路线图。与纯微藻系统相比,联合体系统的去除效率更高,可达 15%,处理时间更短。此外,本综述还探讨了废水处理后生物质应用的各种可能性。

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