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A rapid method for harvesting and immobilization of oleaginous microalgae using pellet-forming filamentous fungi and the application in phytoremediation of secondary effluent

机译:使用颗粒形成丝状真菌的收获和固定含油微藻的快速方法及其在二级流出物的植物中的应用

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摘要

A rapid method for harvesting and immobilization of oleaginous microalgae using pellet-forming filamentous fungi was developed. The suitable conditions for pellet formation by filamentous fungi were determined. Among the strains tested, Trichoderma reesei QM 9414 showed superior pellet forming ability. Its pellets were used to harvest oleaginous microalga Scenedesmus sp. With increasing volume ratio of fungal pellets to microalgae culture up to 1:2, &94% of microalgal cells were rapidly harvested within 10 min. The ratio of fungal pellets could manipulate both harvesting time and initial concentration of microalgal cells in the pellets. The microalgae-fungal pellets were successfully used as immobilized cells for effective phytoremediation of secondary effluent from seafood processing plants under nonsterile condition. The chemical oxygen demand, total nitrogen, and total phosphorus removal were &74%, &44%, and &93%, respectively. The scanning electron microscopy showed that the microalgal cells were not only entrapped in the pellets but also got attached to the fungal hyphae with sticky exopolysaccharides, possibly secreted by the fungi. The extracted lipids from the pellets were mainly composed of C16-C18 (&83%) with their suitability as biodiesel feedstocks. This study has shown the promising strategy to rapidly harvest and immobilize microalgal cells and the possible application in phytoremediation of industrial effluent.
机译:开发了一种快速利用颗粒形成丝状真菌收获和固定含有溶脂微藻的方法。确定了通过丝状真菌的颗粒形成的合适条件。在测试的菌株中,Trichoderma Reesei QM 9414显示出优异的颗粒形成能力。它的颗粒用于收获oferapics microalga scenedesmus sp。随着真菌颗粒的体积比增加至1:2,& 在10分钟内快速收获94%的微藻细胞。真菌颗粒的比例可以操纵颗粒中的收获时间和微藻细胞的初始浓度。微藻 - 真菌颗粒成功用作异固化的细胞,用于在非物质条件下从海产品加工厂的二级流出物有效植物化。化学需氧量,总氮气和总磷除去& 74%,& 44%,和& 93%。扫描电子显微镜表明,微藻细胞不仅捕获在颗粒中,而且还用粘性的脱冬糖附着于真菌菌丝,可能被真菌分泌。来自粒料的提取物脂质主要由C16-C18(& 83%)组成,其适用于生物柴油原料。本研究表明了快速收获和固定微藻细胞的有希望的策略及可能在工业流出物的植物中的应用。

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