Sustainable energy via biodiesel production from autotrophic and mixotrophic growth of the microalga Phaeodactylum tricornutum in compact photobioreactors

K. C. C. Morais, J. Vargas, A. Mariano, J. Ordonez, V. Kava
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引用次数: 3

Abstract

The conditions for cultivation of microalgae Phaeodactylum tricornutum were studied with the objective of increasing algae lipid content for the production of biodiesel aiming at renewable energy generation. The variables investigated in the experiments were: salinity, carbon source (glycerol and glucose) and photoperiod. From the growth kinetics, and the analysis of biomass and lipid production, it was possible to determine the productivity of the studied microalgae species. The lipids production increased due to the addition of a carbon source to the culture medium. Furthermore, the carbon source addition in the beginning of the cultivation provided the best result. Among the tested salinity values in the experiments, the one that resulted in the highest microalgae growth was 15 ‰. The best assimilated carbon source by the microalgae was glycerol at a concentration of 0.1 M, providing cultures with up to 1.3 g/L of biomass. Mixotrophic cultivation with a photoperiod of 24 h of light in the presence of glycerol resulted in 338.97 mg/L of lipids, which was ∼80% higher than the autotrophic one.
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在紧凑型光生物反应器中由自养和混合营养生长的三角褐藻生产生物柴油的可持续能源
研究了微藻三角褐指藻的培养条件,以提高藻脂含量,用于生产可再生能源生物柴油。实验研究的变量为:盐度、碳源(甘油和葡萄糖)和光周期。从生长动力学、生物量和脂质产量分析,可以确定所研究的微藻物种的生产力。由于在培养基中添加了碳源,脂质产量增加。以栽培初期添加碳源效果最好。在实验测试的盐度值中,微藻生长最高的盐度值为15‰。微藻吸收的最佳碳源是浓度为0.1 M的甘油,可提供高达1.3 g/L的生物量。在有甘油存在的情况下,光周期为24 h的混合营养培养产生了338.97 mg/L的脂质,比自养培养高出约80%。
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