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重新审视微藻在废水处理中的碳、氮、磷代谢。

Revisiting carbon, nitrogen, and phosphorus metabolisms in microalgae for wastewater treatment.

机构信息

Carlsberg Research Laboratory, Bjerregaardsvej 5, 2500 Valby, Denmark.

出版信息

Sci Total Environ. 2021 Mar 25;762:144590. doi: 10.1016/j.scitotenv.2020.144590. Epub 2020 Dec 18.

Abstract

Threats posed to humans - including environmental pollution, water scarcity, food shortages, and resource crises drive a new concept to think about wastewater and its treatment. Wastewater is not only a waste but also a source of energy, renewable and/or non-renewable resources, including water itself. The nutrient in wastewater should not only be removed but also need to be upcycled. Microalgae based wastewater treatment has attracted considerable interests because algae have the potential to efficiently redirect nutrients from wastewater to the accumulated algal biomass. Additionally, microalgae are commercialized in human consumption and animal feed owing to their high content of essential amino and fatty acids, vitamins, and pigments. The whole process establishes a circular economy, totally relying on the ability of microalgae to uptake and store nutrients in wastewater, such as carbon (C), nitrogen (N), and phosphorus (P). It makes the study of the mechanisms underlying the uptake and storage of nutrients in microalgae of great interest. This review specifically aims to summarize C, N, and P metabolisms in microalgae for a better understanding of the microalgae-based wastewater treatment from the nutrient uptake pathway, and examine the key physiological factors or the operating conditions related to nutrient metabolisms that may affect the treatment efficiency. At last, I discuss the potential approaches to enhance the overall treatment performance by adjusting the critical parameters for C, N, and P metabolisms.

摘要

人类面临的威胁——包括环境污染、水资源短缺、粮食短缺和资源危机——促使人们产生了一种新概念,即思考废水及其处理问题。废水不仅是一种废物,而且还是能源、可再生和/或不可再生资源的来源,包括水本身。废水中的营养物质不仅要去除,还需要进行升级利用。基于微藻的废水处理引起了相当大的兴趣,因为藻类有潜力将废水中的营养物质有效地从废水中转移到积累的藻生物质中。此外,由于微藻富含必需氨基酸和脂肪酸、维生素和色素,因此已被商业化应用于人类消费和动物饲料。整个过程建立了循环经济,完全依赖于微藻从废水中吸收和储存营养物质(如碳(C)、氮(N)和磷(P))的能力。这使得研究微藻吸收和储存营养物质的机制变得非常有意义。本综述旨在总结微藻中的 C、N 和 P 代谢,以便从营养吸收途径更好地了解基于微藻的废水处理,并研究与营养代谢相关的关键生理因素或操作条件,这些因素可能会影响处理效率。最后,我讨论了通过调整 C、N 和 P 代谢的关键参数来提高整体处理性能的潜在方法。

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