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在配备离心泵的管式光生物反应器中培养对剪切应力敏感和耐受的微藻物种。

Cultivation of shear stress sensitive and tolerant microalgal species in a tubular photobioreactor equipped with a centrifugal pump.

作者信息

Michels Michiel H A, van der Goot Atze Jan, Vermuë Marian H, Wijffels René H

机构信息

Bioprocess Engineering, AlgaePARC, Wageningen University, P.O. Box 16, 6700 AA Wageningen, The Netherlands.

HZ University of Applied Sciences, P.O. Box 364, 4380 AJ Vlissingen, The Netherlands.

出版信息

J Appl Phycol. 2016;28(1):53-62. doi: 10.1007/s10811-015-0559-8. Epub 2015 Mar 20.

Abstract

The tolerance to shear stress of , , , and was determined in shear cylinders. The shear tolerance of the microalgae species strongly depends on the strain. , , and exposed to shear stress between 1.2 and 5.4 Pa resulted in severe cell damage. is not sensitive to stresses up to 80 Pa. The possibility to grow these algae in a tubular photobioreactor (PBR) using a centrifugal pump for recirculation of the algae suspension was studied. The shear stresses imposed on the algae in the circulation tubes and at the pressure side of the pump were 0.57 and 1.82 Pa, respectively. The shear stress tolerant was successfully cultivated in the PBR. Growth of , , and in the tubular PBR was not observed, not even at the lowest pumping speed. For the latter shear sensitive strains, the encountered shear stress levels were in the order of magnitude of the determined maximum shear tolerance of the algae. An equation was used to simulate the effect of possible damage of microalgae caused by passages through local high shear zones in centrifugal pumps on the total algae culture in the PBR. This simulation shows that a culture of shear stress sensitive species is bound to collapse after only limited number of passages, confirming the importance of considering shear stress as a process parameter in future design of closed PBRs for microalgal cultivation.

摘要

在剪切柱中测定了[具体藻类名称1]、[具体藻类名称2]、[具体藻类名称3]和[具体藻类名称4]对剪切应力的耐受性。微藻物种的剪切耐受性很大程度上取决于菌株。暴露于1.2至5.4帕剪切应力下的[具体藻类名称1]、[具体藻类名称2]和[具体藻类名称3]会导致严重的细胞损伤。[具体藻类名称4]对高达80帕的应力不敏感。研究了使用离心泵使藻类悬浮液再循环,从而在管式光生物反应器(PBR)中培养这些藻类的可能性。在循环管和泵的压力侧施加于藻类的剪切应力分别为0.57帕和1.82帕。耐剪切的[具体藻类名称4]在PBR中成功培养。未观察到[具体藻类名称1]、[具体藻类名称2]和[具体藻类名称3]在管式PBR中生长,即使在最低泵送速度下也未生长。对于后几种剪切敏感菌株,所遇到的剪切应力水平在藻类所确定的最大剪切耐受性的数量级范围内。使用一个方程来模拟离心泵中局部高剪切区对微藻造成的可能损伤对PBR中藻类总培养物的影响。该模拟表明,剪切应力敏感物种的培养在仅经过有限次数的通过后必然会崩溃,这证实了在未来用于微藻培养的封闭式PBR设计中,将剪切应力作为一个工艺参数加以考虑的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/35bc/4735255/df1054cb0b84/10811_2015_559_Fig1_HTML.jpg

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