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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Bioprocess development on microalgae-based CO_2 fixation and bioethanol production using Scenedesmus obliquus CNW-N
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Bioprocess development on microalgae-based CO_2 fixation and bioethanol production using Scenedesmus obliquus CNW-N

机译:利用斜生藻CNW-N进行基于微藻的CO_2固定和生物乙醇生产的生物工艺开发

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摘要

A two-stage cultivation strategy was applied to achieve greater CO_2 fixation and carbohydrate productivity with an indigenous microalga Scenedesmus obliquus CNW-N, which was first cultivated using a nutrient-rich medium to promote cell growth, and was then switched to a nutrient-deficient condition to trigger carbohydrate accumulation. The optimal biomass productivity, carbohydrate productivity, and CO_2 fixation rate were 681.4, 352.9, and 1192.5mgL~(-1)d~(-1), respectively, with a 51.8% carbohydrate content (based on dry weight). This performance is better than the results in most related studies. The microalgal carbohydrate was mainly composed of glucose, which accounts for nearly 80% of total sugars. Dilute acid hydrolysis with 2% H_2SO_ 4 can saccharify the wet microalgal biomass effectively, achieving a glucose yield of 96-98%. Using the acidic hydrolysate of the microalga as feedstock, the separate hydrolysis and fermentation (SHF) process gave an ethanol concentration of 8.55gL~(-1), representing a theoretical yield of nearly 99.8%.
机译:采用两步培养策略,利用本地微藻斜生藻CNW-N来实现更高的CO_2固定率和碳水化合物生产力,该方法首先使用营养丰富的培养基进行培养以促进细胞生长,然后转换为营养缺乏的触发碳水化合物积累的条件。最佳生物量生产率,碳水化合物生产率和CO_2固定率分别为681.4、352.9和1192.5mgL〜(-1)d〜(-1),其中碳水化合物含量为51.8%(基于干重)。该性能优于大多数相关研究的结果。微藻碳水化合物主要由葡萄糖组成,占糖总量的近80%。用2%H_2SO_4稀酸水解可以有效地糖化湿的微藻生物质,实现96-98%的葡萄糖产率。以微藻类的酸性水解产物为原料,单独的水解和发酵(SHF)过程得到的乙醇浓度为8.55gL〜(-1),理论产率接近99.8%。

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