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用于城市污水处理的极端嗜热微藻:现状、“POWER”系统案例及未来展望

Extremophilic Microalgae Gen. for Urban Wastewater Treatment: Current State, the Case of "POWER" System, and Future Prospects.

作者信息

di Cicco Maria Rosa, Iovinella Manuela, Palmieri Maria, Lubritto Carmine, Ciniglia Claudia

机构信息

Department of Environmental, Biological and Pharmaceutical Sciences and Technologies, University of Campania "Luigi Vanvitelli", Via Vivaldi 43, 81100 Caserta, Italy.

Department of Biology, University of York, Wentworth Way, York YO10 5DD, UK.

出版信息

Plants (Basel). 2021 Oct 29;10(11):2343. doi: 10.3390/plants10112343.

Abstract

Over the past decades, wastewater research has increasingly focused on the use of microalgae as a tool to remove contaminants, entrapping nutrients, and whose biomass could provide both material and energy resources. This review covers the advances in the emerging research on the use in wastewater sector of thermoacidophilic, low-lipid microalgae of the genus , which exhibit high content of protein, reserve carbohydrates, and other potentially extractable high-value compounds. The natural tolerance of for high toxic environments and hot climates recently made it a key player in a single-step process for municipal wastewater treatment, biomass cultivation and production of energetic compounds using hydrothermal liquefaction. In this system developed in New Mexico, proved to be a highly performing organism, able to restore the composition of the effluent to the standards required by the current legislation for the discharge of treated wastewater. Future research efforts should focus on the implementation, in the context of wastewater treatment, of more energetically efficient cultivation systems, potentially capable of generating water with increasingly higher purity levels.

摘要

在过去几十年里,废水研究越来越关注利用微藻作为去除污染物、截留养分的工具,并且微藻生物质可提供物质和能源资源。本综述涵盖了关于在废水处理领域使用嗜热嗜酸、低脂质的属微藻的新兴研究进展,这些微藻含有高含量的蛋白质、储备碳水化合物和其他潜在可提取的高价值化合物。对高毒性环境和炎热气候的天然耐受性,最近使其成为城市废水处理、生物质培养以及利用水热液化生产含能化合物的单步过程中的关键角色。在新墨西哥州开发的这个系统中,被证明是一种高性能生物,能够将出水成分恢复到当前立法要求的处理后废水排放标准。未来的研究工作应聚焦于在废水处理背景下实施更具能源效率的培养系统,有可能生产出纯度越来越高的水。

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