廉价和通用的微藻生物质生产培养基

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引用次数: 15

摘要

如何提高微藻的生长效率,降低微藻的培养成本,是藻类工业微生物学和生物技术面临的新挑战。藻类既可以在淡水中培养,也可以在含盐的海水或废水中培养。微藻生物量可用作吸附剂去除废水中的微量污染物(如重金属、生物原)。结果表明,在普通肥料的基础上,可以使用Bristol或BG-11等便宜的通用培养基(Bf)来栽培小球藻和小木条。混合营养条件可用于培养小球藻和木犀草。在自养和混合营养条件下,两种藻类生物量浓度均以Bf培养基最高,BG-11培养基最低,Br培养基最低。在混合营养条件下,黄颡鱼的细胞数量高于黄颡鱼。廉价培养基的利用将大幅度降低藻类生物量的生产成本。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Inexpensive and universal growth media for biomass production of microalgae
New challenges for industrial microbiology and biotechnology of algae are to increase the efficiency of microalgae growth rates and decrease the cultivation costs. Algae could be cultivated in fresh water as well as in salty sea water or wastewater. Microalgae biomass can be used as a sorbent to remove microcontaminants (e.g. heavy metals, biogens) from wastewater. The obtained results showed that there is a possibility of application of a cheap and universal growing medium (Bf) despite common fertilizers: Bristol or BG-11 to cultivate Chlorella vulgaris and Scenedesmus armatus. The mixotrophic condition can be useful for cultivation of Chlorella vulgaris and Scenedesmus armatus. The highest concentrations of algal biomass for both species were determined after the application of the Bf medium, lower after the BG-11 medium and the lowest after the Br medium in autotrophic as well as mixotrophic conditions. The number of C. vulgaris cells in mixotrophic conditions was higher than S. armatus. The utilization of cheap growing media will lowering the production costs of algal biomass on a large scale.
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