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Synergy of flocculation and flotation for microalgae harvesting using aluminium electrolysis

机译:铝电解絮凝与浮选协同捕捞微藻

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摘要

Microalgae are often used as feedstock for renewable biofuel production and as pollutant up-takers for wastewater treatment; however, biomass harvesting still remains a challenge in field applications. In this study, electro-flocculation using aluminium electrolysis was tested as a method to collect Chlorella vulgaris. The electrolysis products were positively charged over a wide pH range below 9.5, which gave them a flocculation potential for negatively charged microalgae. As flocculants were in-situ generated and gradually released, microalgae flocs formed in a snowballing mode, resulting in the compaction of large flocs. When higher current density was applied, microalgae could be harvested more rapidly, although there was a trade-off between a higher energy use and more residual aluminium in the culture medium. Benefits of this flocculation method are two-fold: the phosphate decrease in post-harvesting could improve nutrient removal in microalgae based wastewater treatment, while the ammonium increase may favor microalgae recovery for medium recycling.
机译:微藻经常被用作可再生生物燃料生产的原料和废水处理的污染物吸收者。然而,生物量收集在现场应用中仍然是一个挑战。在这项研究中,使用铝电解进行电絮凝测试是一种收集小球藻的方法。电解产物在低于9.5的宽pH范围内带正电,这使它们具有絮凝潜力,带负电的微藻类。当絮凝剂在原位产生并逐渐释放时,微藻絮凝物以滚雪球的形式形成,导致大型絮凝物的致密化。当施加较高的电流密度时,尽管在培养基中较高的能量消耗和更多的残留铝之间进行了权衡,但微藻的收获速度更快。这种絮凝方法的好处有两方面:捕捞后磷酸盐的减少可以改善基于微藻的废水处理中的营养去除,而铵的增加则可能有利于微藻的回收,以进行培养基循环利用。

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