混合营养体
普通小球藻
自养
木糖
生物量(生态学)
糖
生物燃料
化学
发酵
异养
食品科学
原材料
碳水化合物
植物
藻类
生物
生物化学
农学
生物技术
细菌
有机化学
遗传学
作者
Chieh-Lun Cheng,Yung‐Chung Lo,Kai-Lou Huang,Dillirani Nagarajan,Chun‐Yen Chen,Duu‐Jong Lee,Jo‐Shu Chang
标识
DOI:10.1016/j.biortech.2022.127021
摘要
Microalgal biomass, known as the third generation feedstock for biofuels production, is currently being explored mainly for lipids and functional components. However, the potential of microalgal carbohydrates has not been evaluated. In this investigation, Chlorella vulgaris JSC-6 was used for carbohydrates production from CO2 and fatty acids under different cultivation strategies to meet the requirements of a CO2-neutral and clean fermentation system for biofuel production. Autotrophic cultivation resulted in better carbon assimilation and carbohydrate accumulation; about 1.4 g CO2 could be converted to 1 g biomass, of which 50% are carbohydrates. Assimilation of fatty acids in photoheterotrophic and mixotrophic modes was influenced by pH, and pH 7-7.5 supported butyrate and acetate assimilation. The maximum carbohydrate content (49.86%) was attained in mixotrophic mode, and the ratio of the simple sugars glucose-xylose-arabinose was 1:0.11:0.02. The higher glucose content makes the microalgal biomass a suitable feedstock for sugar-based fermentations.
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