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High-pH-induced flocculation-flotation of the hypersaline microalga Dunaliella salina

机译:高pH诱导的超盐微藻藻盐藻的絮凝-浮选

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摘要

Natural autoflocculation was not observed in a Dunaliella salina hypersaline culture and the microalgae did not float without destabilization of the algal suspension. High-pH-induced flocculation by sodium hydroxide addition was chosen to induce flotation. Recovery efficiencies greater than 90% and concentration factors of around 20 were reached. An autoflocculation mechanism, with precipitation of magnesium hydroxide, is proposed to explain a sweeping flotation of D. salina cells. The influence of the flow rate of sodium hydroxide addition was also studied to anticipate the constraints related to the industrialization of this process. The flow rate of sodium hydroxide addition had no effect on the recovery efficiency and reduced the concentration factor only for abrupt injections. Natural increase of culture pH by photosynthetic activity could reduce the amount of base consumed. Non-harvested cells remained viable during pH increase and could be used as inoculum for a new culture.
机译:在杜氏盐藻高盐培养物中未观察到自然自絮凝作用,并且微藻类在没有使藻类悬浮液不稳定的情况下不会漂浮。选择通过添加氢氧化钠的高pH诱导的絮凝来诱导浮选。回收率大于90%,浓缩系数达到20。提出了一种自絮凝机理,伴随着氢氧化镁的沉淀,可以解释盐藻的广泛漂浮。还研究了氢氧化钠添加流速的影响,以预期与该方法的工业化有关的限制。加入氢氧化钠的流速对回收效率没有影响,仅在突然进样时降低了浓缩系数。通过光合作用自然增加培养液pH值可以减少消耗的碱量。未收获的细胞在pH升高期间仍保持活力,可用作新培养物的接种物。

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