Han Fei, Pei Haiyan, Hu Wenrong, Han Lin, Zhang Shuo, Ma Guixia
a School of Environmental Science and Engineering , Shandong University , Jinan , People's Republic of China.
b Shandong Provincial Engineering Centre on Environmental Science and Technology , Jinan , People's Republic of China.
Environ Technol. 2016 Oct;37(20):2649-57. doi: 10.1080/09593330.2016.1158867. Epub 2016 Mar 28.
Efficient production of microalgae lipid is significant for the production of renewable biodiesel. In the present study, the high temperature of 40°C as stress environment was tested for stimulating lipid accumulation after the microalgae (Scenedesmus quadricauda) cells in suitable conditions grew to the end of the logarithmic phase. Different stress cultivation times of 1, 2, 3, 4, 5 and 6 days were studied. Interestingly, the lipid content and productivity reached 33.5% and 23.2 mg/L d after one day stress cultivation, showing substantial improvements of 39.6% and 33.3% compared with that in the untreated (day 0) microalgae cells, respectively. Longer stress time led to the decrease of biomass and lipid content compared with the untreated microalgae. However, a maximum protein content of 58.7% was obtained after six days. The stress cultivation at the end of the microalgae exponential phase for one day at a high temperature of 40°C could be a very useful industrial approach for efficiently promoting lipid content and biodiesel production.
高效生产微藻脂质对于可再生生物柴油的生产具有重要意义。在本研究中,在适宜条件下生长至对数期末期的微藻(四尾栅藻)细胞后,以40°C的高温作为胁迫环境来刺激脂质积累。研究了1、2、3、4、5和6天的不同胁迫培养时间。有趣的是,胁迫培养一天后,脂质含量和生产率分别达到33.5%和23.2 mg/L d,与未处理(第0天)的微藻细胞相比,分别显著提高了39.6%和33.3%。与未处理的微藻相比,更长的胁迫时间导致生物量和脂质含量下降。然而,六天后获得了最高58.7%的蛋白质含量。在微藻指数期末期于40°C高温下胁迫培养一天可能是一种非常有用的工业方法,可有效提高脂质含量和生物柴油产量。