首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Harvesting Chlorella vulgaris by magnetic flocculation using Fe3O4 coating with polyaluminium chloride and polyacrylamide
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Harvesting Chlorella vulgaris by magnetic flocculation using Fe3O4 coating with polyaluminium chloride and polyacrylamide

机译:使用聚氯化铝和聚丙烯酰胺的Fe3O4涂层通过电磁絮凝法收获小球藻

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The harvesting of Chlorella vulgaris was investigated by magnetic flocculation, where the natural magnetite was used as magnetic seeds and the polyaluminium chloride (PACl) and polyacrylamide (PAM) were used as the coating polymer on the Fe3O4 surface. The composite modes of PACl, PAM, and Fe3O4 and their effects on harvesting were studied. The results showed that adding the composite PACl/Fe3O4 first (at (0.625 mmol Al/L)/(10 g/L)) followed by the addition PAM (at 3 mg/L) was the optimum dosing strategy. Following this strategy, 99% of cells could be harvested in less than 0.5 min, and it could overcome negative impacts from pH and algal organic matter. Compared to PACl, zeta-potentials of PACl/Fe3O4 were found to be increased substantially from -4.9-8.5 mV to 1.5-19.5 mV at pH range 2.1-12.3. The charge neutralization of PACl/Fe3O4 and sweeping of PAM play an important role in magnetic harvesting of microalgal cells. (C) 2015 Elsevier Ltd. All rights reserved.
机译:通过磁絮凝法研究了小球藻的收获,其中天然磁铁矿用作磁性种子,聚氯化铝(PACl)和聚丙烯酰胺(PAM)用作Fe3O4表面的涂层聚合物。研究了PACl,PAM和Fe3O4的复合模式及其对收获的影响。结果表明,先添加复合PACl / Fe3O4(浓度为(0.625 mmol Al / L)/(10 g / L)),然后添加PAM(浓度为3 mg / L)是最佳的添加策略。按照这种策略,可以在不到0.5分钟的时间内收获99%的细胞,并且可以克服pH和藻类有机物的负面影响。与PACl相比,发现在pH范围2.1-12.3中,PACl / Fe 3 O 4的ζ电位从-4.9-8.5mV大幅增加至1.5-19.5mV。 PACl / Fe3O4的电荷中和和PAM的清除在微藻细胞的磁性收集中起着重要作用。 (C)2015 Elsevier Ltd.保留所有权利。

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