期刊
BIORESOURCE TECHNOLOGY
卷 252, 期 -, 页码 118-126出版社
ELSEVIER SCI LTD
DOI: 10.1016/j.biortech.2017.12.096
关键词
Carotenoids; Light emitting diode; Microalgae; Nannochloropsis; Omega-3 fatty acids
资金
- China Scholarship Council
The microalga Nannochloropsis produces high-value omega-3-rich fatty acids and carotenoids. In this study the effects of light intensity and wavelength on biomass, fatty acid, and carotenoid production with respect to light output efficiency were investigated. Similar biomass and fatty acid yields were obtained at high light intensity (150 mu molm(-2) s(-1)) LEDs on day 7 and low light intensity (50 mu molm(-2) s(-1)) LEDs on day 11 during cultivation, but the power efficiencies of biomass and fatty acid (specifically eicosapentaenoic acid) production were higher for low light intensity. Interestingly, low light intensity enhanced both, carotenoid power efficiency of carotenoid biosynthesis and yield. White LEDs were neither advantageous for biomass and fatty acid yields, nor the power efficiency of biomass, fatty acid, and carotenoid production. Noticeably, red LED resulted in the highest biomass and fatty acid power efficiency, suggesting that LEDs can be fine-tuned to grow Nannochloropsis algae more energy-efficiently.
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