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Dual-mode cultivation of Chlorella protothecoides applying inter-reactors gas transfer improves microalgae biodiesel production

机译:采用反应器间气体转移的原球藻小球藻双模式培养可改善微藻生物柴油的生产

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Chlorella protothecoides, a lipid-producing microalga, was grown heterotrophically and autotrophically in separate reactors, the off-gases exiting the former being used to aerate the latter. Autotrophic biomass productivity with the two-reactor association, 0.0249 g L-1 h(-1), was 2.2-fold the value obtained in a control autotrophic culture, aerated with ambient air. Fatty acid productivity was 1.7-fold the control value. C. protothecoides heterotrophic biomass productivity was 0.229 g L-1 h(-1). This biomass' fatty acid content was 34.5% (w/w) with a profile suitable for biodiesel production, according to European Standards. The carbon dioxide fixed by the autotrophic biomass was 45 mg CO2 L-1 h(-1) in the symbiotic arrangement, 2.1 times the control reactor value. The avoided CO2 atmospheric emission represented 30% of the CO2 produced in the heterotrophic stage, while the released O-2 represented 49% of the oxygen demand in that stage. Thus, an increased efficiency in the glucose carbon source use and a higher environmental sustainability were achieved in microalgal biodiesel production using the proposed assembly
机译:原产小球藻小球藻,一种产生脂质的微藻,在不同的反应器中异养和自养生长,从前者排出的废气用于给后者充气。具有两个反应器关联的自养生物量生产力为0.0249 g L-1 h(-1),是用环境空气充气的对照自养培养物获得的2.2倍。脂肪酸生产率是对照值的1.7倍。 C. protothecoides异养生物质生产力为0.229 g L-1 h(-1)。根据欧洲标准,该生物质的脂肪酸含量为34.5%(w / w),具有适合生物柴油生产的特性。自养生物质固定的二氧化碳在共生布置中为45 mg CO2 L-1 h(-1),是对照反应堆值的2.1倍。避免的CO2大气排放量代表了在异养阶段产生的CO2的30%,而释放的O-2代表了该阶段氧气需求的49%。因此,使用建议的组件在微藻生物柴油生产中实现了葡萄糖碳源利用效率的提高和更高的环境可持续性。

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