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提高[生物量和叶黄素产量]:二氧化碳浓度和培养基再利用的影响。 注:原文中“From”后内容缺失,此处括号内为补充示意。

Enhancing Biomass and Lutein Production From : Effect of Carbon Dioxide Concentration and Culture Medium Reuse.

作者信息

Molino Antonio, Mehariya Sanjeet, Iovine Angela, Casella Patrizia, Marino Tiziana, Karatza Despina, Chianese Simeone, Musmarra Dino

机构信息

Department of Sustainability-CR Portici, ENEA Italian National Agency for New Technologies, Energy and Sustainable Economic Development, Portici, Italy.

Department of Engineering, University of Campania "Luigi Vanvitelli", Aversa, Italy.

出版信息

Front Plant Sci. 2020 Apr 21;11:415. doi: 10.3389/fpls.2020.00415. eCollection 2020.

Abstract

The main purpose of this study is to investigate the effects of operative parameters and bioprocess strategies on the photo-autotrophic cultivation of the microalgae for lutein production. was cultivated in a vertical bubble column photobioreactor (VBC-PBR) in batch mode and the bioactive compounds were extracted by accelerated solvent extraction with ethanol at 67°C and 10 MPa. The cultivation with a volume fraction of CO in the range 0-3.0%v/v showed that the highest biomass and lutein concentrations - 3.7 g/L and 5.71 mg/g, respectively - were measured at the highest CO concentration and using fresh growth medium. Recycling the cultivation medium from harvested microalgae resulted in decreased biomass and lutein content. The nutrient chemical composition analysis showed the highest consumption rates for nitrogen and phosphorus, with values higher than 80%, while sulfate and chloride were less consumed.

摘要

本研究的主要目的是研究操作参数和生物工艺策略对用于叶黄素生产的微藻光合自养培养的影响。微藻在垂直鼓泡柱光生物反应器(VBC-PBR)中以分批模式培养,生物活性化合物通过在67°C和10 MPa下用乙醇进行加速溶剂萃取来提取。在0-3.0%v/v范围内的CO体积分数培养表明,在最高CO浓度和使用新鲜生长培养基的情况下,测得的最高生物量和叶黄素浓度分别为3.7 g/L和5.71 mg/g。回收收获微藻后的培养基导致生物量和叶黄素含量降低。营养化学成分分析表明,氮和磷的消耗率最高,高于80%,而硫酸盐和氯化物的消耗较少。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4e39/7186383/df67f7243da9/fpls-11-00415-g001.jpg

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