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Harvesting microalgal biomass using crossflow membrane filtration: critical flux, filtration performance, and fouling characterization

机译:使用错流膜过滤收集微藻生物质:临界通量,过滤性能和结垢特性

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摘要

The purpose of this study was to investigate the efficient harvesting of microalgal biomass through crossflow membrane filtration. The microalgal biomass harvesting experiments were performed using one microfiltration membrane (pore size: 0.2 mu m, made from polyvinylidene fluoride) and three ultrafiltration membranes (molecular weight cut-off: 150, 50, and 30kDa, made from polyethersulfone, hydrophilic polyethersulfone, and regenerated cellulose, respectively). Initially, to minimize membrane fouling caused by microalgal cells, experiments with the objective of determining the critical flux were performed. Based on the critical flux calculations, the best performing membrane was confirmed to be the UH050 membrane, produced from hydrophilic polyethersulfone material. Furthermore, we also evaluated the effect of transmembrane pressure (TMP) and crossflow velocity (CFV) on filtration flux. It was observed that membrane fouling was affected not only by the membrane characteristics, but also by the TMP and CFV. In all the membranes, it was observed that increasing CFV was associated with increasing filtration flux, independent of the TMP.
机译:这项研究的目的是研究通过错流膜过滤有效收集微藻生物质的方法。使用一个微滤膜(孔径:0.2微米,由聚偏二氟乙烯制成)和三个超滤膜(截留分子量:150、50和30kDa,由聚醚砜,亲水性聚醚砜和四氟乙烯制成)进行微藻生物质收获实验。再生纤维素)。最初,为了最小化由微藻细胞引起的膜污染,进行了旨在确定临界通量的实验。根据临界通量计算,可以确定性能最好的膜是由亲水性聚醚砜材料制成的UH050膜。此外,我们还评估了跨膜压(TMP)和错流速度(CFV)对过滤通量的影响。观察到膜污染不仅受到膜特性的影响,还受到TMP和CFV的影响。在所有膜中,观察到CFV的增加与过滤通量的增加相关,而与TMP无关。

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