首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Enhanced growth and lipid production of microalgae under mixotrophic culture condition: Effect of light intensity, glucose concentration and fed-batch cultivation
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Enhanced growth and lipid production of microalgae under mixotrophic culture condition: Effect of light intensity, glucose concentration and fed-batch cultivation

机译:混合营养培养条件下微藻生长和脂质产生的增强:光强度,葡萄糖浓度和分批补料培养的影响

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摘要

Microalgae capable of accumulating high lipid content were screened in photoautotrophic, heterotrophic and mixotrophic cultures. The biomass and lipid production of all tested strains in mixotrophic culture were notably enhanced in comparison with photoautotrophic and heterotrophic cultures. Among the tested strains, marine Chlorella sp. and Nannochloropsis sp. were ideal candidates for biodiesel production because of their high lipid production. The influence of light intensity and initial glucose concentration on growth and lipid content of both strains were investigated. Although increasing light intensity and initial glucose concentration enhanced the growth of both strains, it reduced their lipid content. To produce a high amount of biomass with high lipid content, a fed-batch cultivation with stepwise increasing light intensity was performed. The lipid production by this strategy was approximately twice that of conventional batch cultivation. The main fatty acid compositions of the two microalgae were C16-C18 (>80%) which are appropriate for biodiesel production.
机译:在光合自养,异养和混养培养物中筛选了能够积累高脂质含量的微藻。与光合自养和异养培养相比,混养培养中所有测试菌株的生物量和脂质产量均得到显着提高。在测试的菌株中,海洋小球藻属。和Nannochloropsis sp。由于其高脂质生产,因此是生物柴油生产的理想候选者。研究了光照强度和初始葡萄糖浓度对两种菌株生长和脂质含量的影响。尽管增加光照强度和初始葡萄糖浓度可增强两个菌株的生长,但可降低它们的脂质含量。为了产生具有高脂质含量的大量生物质,进行了逐步增加光强度的分批补料培养。通过这种策略产生的脂质约为常规分批培养的两倍。两种微藻的主要脂肪酸组成为C16-C18(> 80%),适合于生产生物柴油。

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