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Strategies to improve oil/lipid production of microalgae in outdoor cultivation using vertical tubular-type photobioreactors

机译:使用垂直管式光生物反应器改善户外培养中微藻油/脂质生产的策略

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The indoor laboratory-scale micro algae culture was elevated to 50 liter in outdoor photobioreactors for the cultivation of an oil-rich microalga, Chlorella vulgaris ESP-31. Under phototrophic and photoheterotrophic conditions using CO2 and acetic acid as carbon source, respectively, the lipid productivity and lipid content obtained were 30-31 mg/L/d and 35-44%, respectively. The effect of inoculum sizes on the performance of biomass and lipid production under phototrophic cultivation was also investigated. The lipid productivity of C. vulgaris ESP-31 was further improved to 47.6 mg/L/d when a higher inoculum size of 0.70 g/L was used. Finally, to avoid severe contamination problem during outdoor cultivation in the summer time, a two-stage lipid accumulation strategy was employed. The results show that the proposed two-stage process was able to avoid the bacterial contamination and enhanced the lipid content and lipid productivity of Chlorella vulgaris ESP-31.
机译:室内实验室规模的微藻培养物升高到50升的室外光生物生物反应器中,用于培养富含石油的微藻,小球藻紫花率ESP-31。在使用CO 2和乙酸作为碳源的光营养和光检查条件下,获得的脂质生产率和获得的脂质含量分别为30-31mg / L / d和35-44%。还研究了接种尺寸对光养殖下生物质和脂质产量的性能的影响。当使用较高的接种尺寸为0.70g / L时,C.Vulgaris ESP-31的脂质生产率进一步改善至47.6mg / L / d。最后,为了避免在夏季户外种植过程中避免严重的污染问题,采用了两级脂质累积策略。结果表明,该提出的两级过程能够避免细菌污染,增强小黄紫穗病蛋白酶esp-31的脂质含量和脂质生产率。

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