绿色柴油来自微藻

Iago G. Costa, J. Vargas, W. Balmant, A. Z. Filho, L. Ramos, D. M. Taher, A. Mariano
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引用次数: 2

摘要

本研究开发了一种从微藻中提取原油用于生产碳氢化合物基燃料(绿色柴油)的工艺。在12 m3的紧凑光生物反应器(FBRS)中,以生物沼液为养料培养微藻Tetradesmus obliquus 15 d。以干生物质为原料,采用有机溶剂(己烷和乙醇)热萃取制得微藻油。萃取后的溶剂用蒸发法从样品中回收。经溶剂回收后,纯乙醇的原油收率仅为1.7% w/w,而正己烷与乙醇的混合物的原油收率为11.1% w/w。采用分馏法对化合物进行提纯,以分离不可灭菌部分。纯化后的第一种工艺(纯己烷)产量为0.4% w/w,第二种工艺(己烷和乙醇)产量为6.3% w/w。此外,采用气相色谱联用质谱联用(GC-MS)对样品进行了表征。在第一个实验条件下,C11 ~ C22的平均碳氢化合物含量为70.6% w/w,主要化合物为十一烷(8.1% w/w)和十五烷(10.62% w/w)。在第二种实验条件下,从C13到C23的烃类化合物的w/w为79.6%,主要化合物为十五烷(13.5% w/w)和十七烷(11.28% w/w)。微藻油的低热值为42,464.6 kJ·kg−1,而石油基柴油的低热值为42,5002 kJ·kg−1。总之,从技术角度来看,从微藻中提取的绿色柴油被证明有潜力成为替代柴油的具体替代品。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Green Diesel From Microalgae
This work developed a process of extraction of crude oil from microalgae for production of hydrocarbon based fuel (green diesel). The microalgae Tetradesmus obliquus were cultivated in 12 m3 compact photobioreactors (FBRS) for 15 days using biodigester effluent as nutrients. Microalgae oil was obtained from the dry biomass through hot extraction with organic solvents (hexane and ethanol). After extraction the solvents were recovered from the sample using evaporation methods. After solvent recovery, the results showed that with pure ethanol, only 1.7% w/w crude oil was obtained, whereas with a mixture of hexane and ethanol the yield was 11.1% w/w. Fractional distillation was used as purification methods of the compounds in order to separate the nonsterifiable portion. The first process (pure hexane) after purification delivered 0.4% w/w, and the second process (hexane and ethanol) yielded 6.3% w/w. In addition, the sample was characterized using gas chromatography coupled to a mass spectrometer (GC-MS). An average of 70.6% w/w hydrocarbons ranging from C11 to C22 was found in the first experimental condition, and the main compounds were undecane (8.1% w/w) and pentadecane (10.62% w/w). For the second experimental condition, about 79.6% w/w hydrocarbons were found that varied from C13 to C23 and the main compounds were pentadecane (13.5% w/w) and heptadecane (11.28% w/w). The lower heating value of the purified microalgae oil was measured as 42,464.6 kJ·kg−1, whereas petroleum-based diesel has a lower heating value of 42,500.2 kJ·kg−1. In sum, green diesel from microalgae was proven to have potential to be a concrete alternative to replace diesel from the technical point of view.
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