首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Buoy-bead flotation harvesting of the microalgae Chlorella vulgaris using surface-layered polymeric microspheres: A novel approach
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Buoy-bead flotation harvesting of the microalgae Chlorella vulgaris using surface-layered polymeric microspheres: A novel approach

机译:Microalgae的浮标浮浮浮选收获小黄紫藤使用表面层状聚合物微球:一种新方法

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摘要

To improve microalgae harvesting efficiency and to reduce the addition of chemicals in the buoy-bead flotation process, a novel buoy-bead flotation approach has been developed for harvestingChlorella vulgaris, using surface-layered polymeric microspheres (SLPMs). Next, the detachment of microalgae cell-SLPM aggregates and the reusability of SLPMs were investigated. The experimental results showed that a maximum harvesting efficiency of 98.43% was achieved at a SLPM dosage of 0.7?g/L and a pH of 9, and harvesting efficiency quickly decreased with increasing ionic strength. A detachment efficiency of 78.46% and a concentration factor of 19.56 were achieved at an ionic strength of 700?mM and a mixing speed of 3000?rpm without changing the pH. Reused SLPMs can still reach an efficiency of 72.13% after five cycles. The presented results show that this method can potentially be applied for large-scale microalgae harvesting.
机译:为了改善微藻收获效率并减少浮标浮浮法过程中的化学品,采用表面层状聚合物微球(SLPMS)为HarvestingChlosella寻常开发了一种新的Buoy-Bead浮选方法。 接下来,研究了微藻细胞 - SLPM聚集体的分离和SLPMS的可重用性。 实验结果表明,在0.7μg/ L的SLPM剂量和pH为9的SLPM剂量下实现了98.43%的最大收获效率,并随着离子强度的增加,收获效率迅速降低。 在离子强度为700Ωmm的离子强度和3000℃的混合速度的情况下,实现了78.46%的脱离效率和19.56的浓度因子。 重复使用的SLPMS仍可在五个周期后达到72.13%的效率。 所提出的结果表明,该方法可能适用于大规模的微藻收获。

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