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Autotrophic Biodiesel Production from the Thermotolerant Microalga Chlorella sorokiniana by Enhancing the Carbon Availability with Temperature Adjustment

机译:通过提高温度调节的碳利用率从耐热微藻小球藻产生自养生物柴油

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摘要

Chlorella sorokiniana is a thermo-resistant microalga that is widely used for production of biofuel such as biodiesel. When cultured at 37 degrees C under autotrophic conditions, C. sorokiniana showed the highest production of biomass, whereas the cells exhibited the highest production of fatty acids at 30 degrees C. Herein, culture temperature shift was applied to improve autotrophic biodiesel production via the two-stage strategy. In addition, in order to increase biomass production, dissolved inorganic carbon source (mainly bicarbonate ion species), which is essential for photosynthesis, was supplied in the cultures by dissolving the CO2 in alkaline solution. As a result, cell growth increased up to 22% compared to that of the control cells by supplying constant inorganic carbon source into the cultures. The cells cultured under the condition of temperature shift (37 degrees C to 30 degrees C) and bicarbonate solution showed an increase in biodiesel productivity by 31% when compared to the cells that were cultured without such temperature adjustment (37 degrees C to 37 degrees C). In brief, our temperature shift method with bicarbonate buffer system (inorganic carbon supply) will improve biofuel production including biodiesel from C. sorokiniana under autotrophic conditions.
机译:Sorokiniana小球藻是一种耐热微藻,广泛用于生产生物燃料(如生物柴油)。当在自养条件下于37摄氏度下培养时,梭菌衣原体显示出最高的生物量产量,而细胞在30摄氏度下显示出最高的脂肪酸产量。在此,通过两个培养温度转移来提高自养生物柴油的产量。阶段策略。另外,为了增加生物量的生产,通过将CO 2溶解在碱性溶液中,向培养物中提供了对光合作用至关重要的溶解的无机碳源(主要是碳酸氢根离子物质)。结果,通过向培养物中提供恒定的无机碳源,与对照细胞相比,细胞生长增加了22%。与未进行温度调节(37℃至37℃)的细胞相比,在温度变化(37℃至30℃)和碳酸氢盐溶液下培养的细胞的生物柴油生产率提高了31%。 )。简而言之,我们的具有碳酸氢盐缓冲系统(无机碳供应)的温度变化方法将改善自养条件下生物燃料的生产,包括来自索氏梭菌的生物柴油。

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