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超声强化与微波辅助提取杜氏盐藻脂质及脂肪酸谱分析

Ultrasound-enhanced and microwave-assisted extraction of lipid from Dunaliella tertiolecta and fatty acid profile analysis.

作者信息

Qv Xiao-Ying, Zhou Qin-Fan, Jiang Jian-Guo

机构信息

College of Food and Bioengineering, South China University of Technology, Guangzhou, China.

出版信息

J Sep Sci. 2014 Oct;37(20):2991-9. doi: 10.1002/jssc.201400458. Epub 2014 Sep 18.

Abstract

Microalgal lipid is considered as a potential biodiesel resource due to its advantages compared to other bioresources. The production of biofuel from microalgae includes several stages like microalgae cultivation, biomass harvest, biomass treatment, lipid extraction, and the ultimate biodiesel synthesis. Lipid extraction is closely associated with the productivity and cost of energy production. In the present study, lipid of green algae Dunaliella tertiolecta was extracted by chemical agents with involvement of ultrasound and microwave. The optimization of experimental conditions was carried out by response surface methodology and orthogonal test design. Using the ultrasonic technique, an extraction rate of 45.94% was obtained under the optimum conditions of ultrasonic power 370 W, extraction time 5 min and liquid/solid ratio 125 mL/g. The extraction rate of 57.02% was obtained by the means of microwave assistance under the optimized conditions of extraction time 160 s, microwave power 490 W and liquid/solid ratio 100 mL/g. The comparison of the two results indicated microwave was more effective than ultrasound in extracting process. When the two techniques were utilized in combination, the optimized condition was ultrasonic power 320 W, ultrasonic time 4 min, microwave power 280 W, microwave time 120 s and liquid/solid ratio 100 mL/g, and the extraction rate was 49.97%.

摘要

由于微藻脂质与其他生物资源相比具有优势,因此被视为一种潜在的生物柴油资源。利用微藻生产生物燃料包括几个阶段,如微藻培养、生物质收获、生物质处理、脂质提取以及最终的生物柴油合成。脂质提取与能源生产的生产率和成本密切相关。在本研究中,采用化学试剂并结合超声和微波提取绿藻杜氏盐藻的脂质。通过响应面法和正交试验设计对实验条件进行优化。采用超声技术,在超声功率370W、提取时间5min、液固比125mL/g的最佳条件下,提取率为45.94%。在提取时间160s、微波功率490W、液固比100mL/g的优化条件下,通过微波辅助提取,提取率为57.02%。两种结果的比较表明,微波在提取过程中比超声更有效。当两种技术联合使用时,优化条件为超声功率320W、超声时间4min、微波功率280W、微波时间120s、液固比100mL/g,提取率为49.97%。

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