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Toward an Ecologically Optimized N:P Recovery from Wastewater by Microalgae

机译:实现微藻从废水中生态优化的氮磷回收率

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摘要

Global stores of important resources such as phosphorus (P) are being rapidly depleted, while the excessive use of nutrients has led to the enrichment of surface waters worldwide. Ideally, nutrients would be recovered from wastewater, which will not only prevent eutrophication but also provide access to alternative nutrient stores. Current state-of-the-art wastewater treatment technologies are effective in removing these nutrients from wastewater, yet they can only recover P and often in an insufficient way. Microalgae, however, can effectively assimilate P and nitrogen (N), as well as other macro- and micronutrients, allowing these nutrients to be recovered into valuable products that can be used to close nutrient cycles (e.g. fertilizer, bioplastics, colour dyes, bulk chemicals). Here, we show that the green alga Chlorella sorokiniana is able to remove all inorganic N and P present in concentrated toilet wastewater (i.e. black water) with N:P ratios ranging between 15 and 26. However, the N and P uptake by the algae is imbalanced relative to the wastewater N:P stoichiometry, resulting in a rapid removal of P but relatively slower removal of N. Here, we discuss how ecological principles such as ecological stoichiometry and resource-ratio theory may help optimize N:P removal and allow for more effective recovery of N and P from black water.
机译:诸如磷(P)之类的重要资源的全球储存正在迅速枯竭,而养分的过度使用导致全世界地表水的丰富化。理想情况下,可以从废水中回收养分,这不仅可以防止富营养化,还可以提供其他养分库。当前最先进的废水处理技术可以有效地从废水中去除这些养分,但它们只能回收磷,而且回收的方式往往不充分。但是,微藻可以有效吸收磷和氮(N),以及其他大量和微量营养素,使这些营养素可以回收成有价值的产品,可以用来封闭营养素循环(例如肥料,生物塑料,彩色染料,散装食品)。化学品)。在这里,我们显示绿藻小球藻能够去除浓缩厕所废水(即黑水)中存在的所有无机氮和磷,其氮:磷比率为15至26。但是,藻类对氮和磷的吸收相对于废水N:P的化学计量是不平衡的,导致P的快速去除,但N的去除相对较慢。在这里,我们讨论生态原理(例如生态化学计量和资源比理论)如何帮助优化N:P的去除并允许从黑水中更有效地回收N和P。

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