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首页> 外文期刊>Food Technology and Biotechnology >Production of Microalgal Lipids as Biodiesel Feedstock with Fixation of CO2 by Chlorella vulgaris
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Production of Microalgal Lipids as Biodiesel Feedstock with Fixation of CO2 by Chlorella vulgaris

机译:通过小球藻固定CO2生产微藻脂质作为生物柴油原料

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摘要

The global warming and shortage of energy are two critical problems for human social development. CO2 mitigation and replacing conventional diesel with biodiesel are effective routes to reduce these problems. Production of microalgal lipids as biodiesel feedstock by a freshwater microalga, Chlorella vulgaris, with the ability to fixate CO2 is studied in this work. The results show that nitrogen deficiency, CO2 volume fraction and photoperiod are the key factors responsible for the lipid accumulation in C. vulgaris. With 5 % CO2, 0.75 g/L of NaNO3 and 18:6 h of light/dark cycle, the lipid content and overall lipid productivity reached 14.5 % and 33.2 mg/(L.day), respectively. Furthermore, we proposed a technique to enhance the microalgal lipid productivity by activating acetyl-CoA carboxylase (ACCase) with an enzyme activator. Citric acid and Mg2+ were found to be efficient enzyme activators of ACCase. With the addition of 150 mg/L of citric acid or 1.5 mmol/L of MgCl2, the lipid productivity reached 39.1 and 38.0 mg/(L.day), respectively, which was almost twofold of the control. This work shows that it is practicable to produce lipids by freshwater microalgae that can fixate CO2, and provides a potential route to solving the global warming and energy shortage problems.
机译:全球变暖和能源短缺是人类社会发展的两个关键问题。减少二氧化碳排放并用生物柴油代替传统柴油是减少这些问题的有效途径。在这项工作中,研究了淡水微藻小球藻(Chlorella vulgaris)作为生物柴油原料的微藻脂质的生产,它具有固定二氧化碳的能力。结果表明,氮缺乏,CO2体积分数和光周期是导致寻常棒状藻类脂质积累的关键因素。在5%的CO2、0.75 g / L的NaNO3和18:6 h的明/暗循环下,脂质含量和总脂质生产率分别达到14.5%和33.2 mg /(L.day)。此外,我们提出了一种通过使用酶激活剂激活乙酰辅酶A羧化酶(ACCase)来提高微藻脂质生产率的技术。发现柠檬酸和Mg2 +是ACCase的有效酶激活剂。加入150 mg / L柠檬酸或1.5 mmol / L MgCl2,脂质生产率分别达到39.1和38.0 mg /(L.day),几乎是对照的两倍。这项工作表明,通过可以固定二氧化碳的淡水微藻生产脂质是可行的,并且为解决全球变暖和能源短缺问题提供了一条潜在途径。

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