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Using resonant ultrasound field-incorporated dynamic photobioreactor system to enhance medium replacement process for concentrated microalgae cultivation in continuous mode

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논문

Using resonant ultrasound field-incorporated dynamic photobioreactor system to enhance medium replacement process for concentrated microalgae cultivation in continuous mode

학술지

Chemical engineering research & design : transactions of the Institution of Chemical Engineers

저자명

Lee, Y.H.; Li, P.H.

초록

Holding cells in the cultivation broth for subsequent medium replacement is often considered as one of the most difficult procedures during perfusion cell culture. Although a number of harvest approaches have been reported in the past decades, their drawbacks such as high cost, increased contamination, and/or labor consuming remain obstacles for practical application. To overcome these challenges, a novel resonant ultrasound field-incorporated dynamic photobioreactor system (RUF-DPBS) was developed in which the cell retention and medium replacement are carried out by acoustic radiation forces and gravity, respectively. Based on the collection efficiency of microalgae, the RUF operation was optimized by 1MHz and output intensity of 8W/cm<SUP>2</SUP> with circulating velocity of 2mL/min whereby 93% of Nannochloropsis oculata in 30mL can be collected within 2-h operation. Moreover, the cells cultured with RUF-DPBS in which the medium was changed every three days exhibited increased volumetric productivity that the yields of biomass, total lipid, and eicosapentaenoic acid of the N. oculata after 12-days cultivation significantly enhanced 2.6, 2.1, and 2.5 folds (P<0.05 for each), respectively, as compared to the group without medium replacement. In summary, the semiautomatic RUF-DPBS offers a non-fouling, labor-efficient, and cost-effective means for high-density microalgae culture in continuous mode.

발행연도

2017

발행기관

The Institution ; distributed by Pergamon

ISSN

0263-8762

ISSN

1744-3563

118

페이지

pp.112-120

주제어

Ultrasound; Photobioreactor; Microalgae; Biomass; Lipid; Cell separation

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논문; 2017-02-01

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