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微藻介导的废水处理用于生物燃料生产:全面综述。

Microalgae-mediated wastewater treatment for biofuels production: A comprehensive review.

机构信息

Biofuels Institute, School of the Environment and Safety Engineering, Jiangsu University, Zhenjiang 212013, China; Botany Department, Faculty of Science, Tanta University, Tanta 31527, Egypt.

Botany Department, Faculty of Science, Tanta University, Tanta 31527, Egypt.

出版信息

Microbiol Res. 2022 Dec;265:127187. doi: 10.1016/j.micres.2022.127187. Epub 2022 Sep 13.

Abstract

The growing world population, rapid industrialization, and intensive agriculture have increased environmental impacts such as wastewater discharge and global warming. These threats coupled the deficiency of fossil fuel and the rise in crude oil prices globally cause serious social, environmental and economic problems. Microalgae strains can withstand the harsh environments of modern industrial and municipal wastes. The shift toward a circular bio-economy that relies on resource diversification has also prompted the reorganization of traditional wastewater treatment (WWT) processes into a low-carbon, integrated biorefinery model that can accommodate multiple waste streams. Therefore, microalgae-based WWT is now a serious competitor to conventional WWT since the major bottlenecks of nutrient assimilation and high microalgae population have been partially mitigated. This review paper aims to collate advances and new knowledge emerged in recent years for microalgae-based WWT and related biofuel technologies.

摘要

不断增长的世界人口、快速工业化和集约化农业增加了环境影响,如废水排放和全球变暖。这些威胁加上化石燃料的短缺和全球原油价格的上涨,导致了严重的社会、环境和经济问题。微藻菌株能够承受现代工业和城市废物的恶劣环境。向依赖资源多样化的循环生物经济的转变也促使人们将传统的废水处理 (WWT) 工艺重新组合成一个低碳、综合的生物炼制模式,可以容纳多种废水流。因此,基于微藻的 WWT 现在是传统 WWT 的有力竞争者,因为营养物质吸收和高微藻种群的主要瓶颈已经得到部分缓解。本文旨在整理近年来在基于微藻的 WWT 和相关生物燃料技术方面取得的进展和新知识。

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