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Additive-free harvesting of oleaginous phagotrophic microalga by oil and air flotation

机译:通过油和气浮法无添加剂地收获油性吞噬营养微藻

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摘要

A unique oleaginous phagotrophic microalga Ochromonas danica is poised for effective lipid production from waste. Cell harvesting and dewatering are major costs in making algae-based products. In this work an effective additive-free harvesting method was developed, taking advantage of O. danica's comparatively more hydrophobic surface and larger size. The algal cells' partitioning to oil/ water interface was evaluated. Recovery by flotation with waste cooking oil was optimized using an L-9 Taguchi orthogonal-array design. Further, additive-free cell collection and concentrating by air flotation was studied for the effects of both physical factors (column dimension, air-stone pore size, sample-to-column volume ratio) and culture properties (pH, culture growth stage, cell concentration, and pure versus impure cultures). The optimized process consistently achieved >90 % recovery in a single stage. 98+ % recovery could be achieved when starting concentrations were >10(8) cells/ml, or potentially using a two-or multi-stage process for diluter cultures.
机译:独特的油性吞噬营养微藻Ochromonas danica可以有效地从废物中产生脂质。细胞收获和脱水是制造藻类产品的主要成本。在这项工作中,开发了一种有效的,无添加剂的收获方法,该方法利用了O. danica相对较多的疏水表面和较大的尺寸。评估藻细胞在油/水界面上的分配。使用L-9 Taguchi正交阵列设计优化了用废食用油浮选回收的方法。此外,研究了无添加剂细胞收集和气浮浓缩对物理因素(柱尺寸,气石孔径,样品与柱体积比)和培养特性(pH,培养生长阶段,细胞)的影响。浓度,以及纯净与不纯净的文化)。经过优化的过程可在一个阶段中始终实现> 90%的回收率。当起始浓度> 10(8)细胞/ ml时,或潜在地使用两步法或多步法进行稀释培养时,回收率可达到98%以上。

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