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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >High productivity cultivation of a heat-resistant microalga Chlorella sorokiniana for biofuel production
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High productivity cultivation of a heat-resistant microalga Chlorella sorokiniana for biofuel production

机译:耐热微藻小球藻的高产栽培,可用于生产生物燃料

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摘要

To augment biomass and lipid productivities of heterotrophic cultured microalgae Chlorella sorokiniana, the influence of environmental temperature and medium factors, such as carbon source, nitrogen source, and their initial concentrations was investigated in this study. The microalga C. sorokiniana could tolerate up to 42°C and showed the highest growth rate of 1.60d~(-1) at 37°C. The maximum dry cell weight (DCW) and corresponding lipid concentration was obtained with 80gL~(-1) of initial glucose and 4gL~(-1) of initial KNO_3 at 37°C. In 5-L batch fermentation, the DCW increased dramatically from 0.9gL~(-1) to 37.6gL~(-1) in the first 72h cultivation, with the DCW productivity of 12.2gL~(-1)d~(-1). The maximum lipid content of 31.5% was achieved in 96h and the lipid productivity was 2.9gL~(-1)d~(-1). The results showed C. sorokiniana could be a promising strain for biofuel production.
机译:为了提高异养微藻小球藻小球藻的生物量和脂质生产力,研究了环境温度和培养基因素(如碳源,氮源及其初始浓度)的影响。微藻C. sorokiniana可以耐受高达42°C的温度,并在37°C时表现出最高的1.60d〜(-1)生长速率。在37℃下用初始葡萄糖80gL〜(-1)和初始KNO_3 4gL〜(-1)获得最大干细胞重量(DCW)和相应的脂质浓度。在5升分批发酵中,最初72小时的培养中DCW从0.9gL〜(-1)急剧增加到37.6gL〜(-1),DCW产量为12.2gL〜(-1)d〜(-1) )。 96h最大脂质含量达到31.5%,脂质生产率为2.9gL〜(-1)d〜(-1)。结果表明,C。sorokiniana可能是一种有前途的生物燃料生产菌株。

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