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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Bioprospecting for oil producing microalgal strains: Evaluation of oil and biomass production for ten microalgal strains
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Bioprospecting for oil producing microalgal strains: Evaluation of oil and biomass production for ten microalgal strains

机译:产油微藻菌株的生物勘探:评估十种微藻菌株的石油和生物质生产

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摘要

Microalgae have the ability to grow rapidly, synthesize and accumulate large amounts (approximately 20-50% of dry weight) of lipids. A successful and economically viable algae based oil industry depends on the selection of appropriate algal strains. In this study ten species of microalgae were prospected to determine their suitability for oil production: Chaetoceros gracilis, Chaetoceros mulleri, Chlorella vulgaris, Dunaliella sp., Isochrysis sp., Nannochloropsis oculata, Tetraselmis sp., Tetraselmis chui, Tetraselmis tetrathele and Thalassiosira weissflogii. The study was carried out in 3. L glass flasks subjected to constant aeration and controlled artificial illumination and temperature at two different salinities. After harvesting, the extraction of oil was carried out using the Bligh and Dyer method assisted by ultrasound. Results showed that C. gracilis presented the highest oil content and that C. vulgaris presented the highest oil production.
机译:微藻具有迅速生长,合成和积累大量脂质(约占干重的20%至50%)的能力。一个成功且在经济上可行的基于藻类的石油工业取决于选择合适的藻类。在这项研究中,预期将确定十种微藻以确定其对石油生产的适合性:细小锥藻,毛线藻,小球藻,杜氏藻,等鞭藻,纳氏绿藻,特氏菌,特氏菌,翠氏菌和四倍体。该研究是在3. L玻璃烧瓶中进行的,这些玻璃烧瓶在两种不同的盐度下经受恒定的通气,受控的人工光照和温度。收获后,在超声波辅助下使用Bligh和Dyer方法提取油。结果表明,细角梭菌的含油量最高,而寻常梭菌的产油量最高。

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