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Effective flocculation of Chlorella vulgaris using chitosan with zeta potential measurement

机译:使用壳聚糖具有Zeta潜在测量的壳聚糖的生命絮凝

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Microalgae are considered as one promising source of third-generation biofuels due to their fast growth rates, potentially higher yield rates and wide ranges of growth conditions. However, the extremely low biomass concentration in microalgae cultures presents a great challenge to the harvesting of microalgae because a large volume of water needs to be removed to obtain dry microalgal cells for the subsequent oil extraction process. In this study, the fresh water microalgae Chlorella vulgaris (C. vulgaris) was effectively harvested using both low molecular weight (MW) and high MW chitosan flocculants. The flocculation efficiency was evaluated by physical appearance, supernatant absorbance, zeta potential and solids content after centrifugal dewatering. High flocculation efficiency of 98.0-99.0% was achieved at the optimal dosage of 30-40 mg/g with formation of large microalgae flocs. This study suggests that the polymer bridging mechanism was governing the flocculation behaviour of C. vulgaris using high MW chitosan. Besides, charge patch neutralisation mechanism prevailed at low MW chitosan where lower dosage was sufficient to reach near-zero zeta potential compared with the high MW chitosan. The amount of chitosan polymer present in the culture may also affect the mechanism of flocculation.
机译:由于它们的快速增长率,潜在较高的产量和生长条件范围广,微藻被认为是第三代生物燃料的一个有前途的来源。然而,微藻培养物中的极低生物量浓度对微藻的收获具有巨大的挑战,因为需要除去大量的水以获得随后的油提取过程的干细胞。在这项研究中,使用低分子量(MW)和高MW壳聚糖絮凝剂有效地收获了淡水微藻小球藻(C.Ventgaris)。通过对离心脱水后的物理外观,上清液吸光度,ζ电位和固体含量评价絮凝效率。高絮凝效率为98.0-99.0%,在30-40mg / g的最佳剂量下实现,形成大型微藻絮凝物。该研究表明,聚合物桥接机制使用高MW壳聚糖来控制C. Ventgaris的絮凝行为。此外,与高MW壳聚糖相比,低MW壳聚糖在低MW壳聚糖处持续的电荷贴片中和机制足以达到零Zeta电位。存在于培养物中存在的壳聚糖聚合物的量也可能影响絮凝的机制。

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