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Microalgal Cultivation in Secondary Effluent: Recent Developments and Future Work

机译:次生废水中微藻的培养:最新进展和未来工作

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摘要

Eutrophication of water catchments and the greenhouse effect are major challenges in developing the global economy in the near future. Secondary effluents, containing high amounts of nitrogen and phosphorus, need further treatment before being discharged into receiving water bodies. At the same time, new environmentally friendly energy sources need to be developed. Integrating microalgal cultivation for the production of biodiesel feedstock with the treatment of secondary effluent is one way of addressing both issues. This article provides a comprehensive review of the latest progress in microalgal cultivation in secondary effluent to remove pollutants and accumulate lipids. Researchers have discovered that microalgae remove nitrogen and phosphorus effectively from secondary effluent, accumulating biomass and lipids in the process. Immobilization of appropriate microalgae, and establishing a consortium of microalgae and/or bacteria, were both found to be feasible ways to enhance pollutant removal and lipid production. Demonstrations of pilot-scale microalgal cultures in secondary effluent have also taken place. However there is still much work to be done in improving pollutants removal, biomass production, and lipid accumulation in secondary effluent. This includes screening microalgae, constructing the consortium, making use of flue gas and nitrogen, developing technologies related to microalgal harvesting, and using lipid-extracted algal residues (LEA).
机译:集水区的富营养化和温室效应是在不久的将来发展全球经济的主要挑战。含有大量氮和磷的二次污水在排放到接收水体之前需要进一步处理。同时,需要开发新的环保能源。解决微问题的一种方法是将微藻栽培与生物柴油原料生产相结合,并将其与次级废水的处理相结合。本文全面综述了二级废水中微藻培养的最新进展,以去除污染物和积累脂质。研究人员已经发现,微藻类可以有效地从次级废水中去除氮和磷,并在此过程中积累生物量和脂质。发现合适的微藻类的固定化,以及建立微藻类和/或细菌的联合体都是增加污染物去除和脂质生产的可行方法。在次要废水中也进行了中试规模微藻培养的示范。但是,在改善污染物的去除,生物量的产生以及次级废水中脂质的积累方面,还有许多工作要做。这包括筛选微藻类,构建财团,利用烟气和氮气,开发与微藻类收获有关的技术以及使用脂质提取的藻类残留物(LEA)。

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