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微藻驱动的猪废水生物处理:营养物回收、关键微生物群落及当前挑战

Microalgae-driven swine wastewater biotreatment: Nutrient recovery, key microbial community and current challenges.

作者信息

Li Shengnan, Qu Wenying, Chang Haixing, Li Junfeng, Ho Shih-Hsin

机构信息

State Key Laboratory of Urban Water Resource and Environment, School of Environment, Harbin Institute of Technology, Harbin, Heilongjiang Province 150090, China.

State Key Laboratory of Urban Water Resource and Environment, School of Environment, Harbin Institute of Technology, Harbin, Heilongjiang Province 150090, China; College of Water Conservancy and Architecture Engineering, Shihezi University, Shihezi 832000, Xinjiang, China.

出版信息

J Hazard Mater. 2022 Oct 15;440:129785. doi: 10.1016/j.jhazmat.2022.129785. Epub 2022 Aug 20.

Abstract

As a promising technology, the microalgae-driven strategy can achieve environmentally sustainable and economically viable swine wastewater treatment. Currently, most microalgae-based research focuses on remediation improvement and biomass accumulation, while information on the removal mechanisms and dominant microorganisms is emerging but still limited. In this review, the major removal mechanisms of pollutants and pathogenic bacteria are systematically discussed. In addition, the bacterial and microalgal community during the swine wastewater treatment process are summarized. In general, Blastomonas, Flavobacterium, Skermanella, Calothrix and Sedimentibacter exhibit a high relative abundance. In contrast to the bacterial community, the microalgal community does not change much during swine wastewater treatment. Additionally, the effects of various parameters (characteristics of swine wastewater and cultivation conditions) on microalgal growth and current challenges in the microalgae-driven biotreatment process are comprehensively introduced. This review stresses the need to integrate bacterial and microalgal ecology information into the conventional design of full-scale swine wastewater treatment systems and operations. Herein, future research needs are also proposed, which will facilitate the development and operation of a more efficient microalgae-based swine wastewater treatment process.

摘要

作为一项有前景的技术,微藻驱动策略能够实现环境可持续且经济可行的猪废水处理。目前,大多数基于微藻的研究集中于修复改进和生物质积累,而关于去除机制和优势微生物的信息虽不断涌现但仍很有限。在本综述中,系统讨论了污染物和病原菌的主要去除机制。此外,总结了猪废水处理过程中的细菌和微藻群落。总体而言,芽单胞菌属、黄杆菌属、斯克尔曼氏菌属、眉藻属和沉积杆菌属表现出较高的相对丰度。与细菌群落不同,微藻群落在猪废水处理过程中变化不大。此外,全面介绍了各种参数(猪废水特性和培养条件)对微藻生长的影响以及微藻驱动生物处理过程中当前面临的挑战。本综述强调有必要将细菌和微藻生态信息整合到大规模猪废水处理系统的传统设计和运行中。在此,还提出了未来的研究需求,这将有助于开发和运行更高效的基于微藻的猪废水处理工艺。

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