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首页> 外文期刊>Energy Conversion & Management >A novel native bioenergy green alga can stably grow on waste molasses under variable temperature conditions
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A novel native bioenergy green alga can stably grow on waste molasses under variable temperature conditions

机译:一种新型的天然生物能源绿藻可以在可变温度条件下在废糖蜜上稳定生长

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A novel bioenergy-producing green alga (lab ID.: XNY8011) was isolated from a local mountain in Beijing, China, and was identified as a strain belonging to the genus of Coelastrum on the basis of morphological and molecular characterization. Physiological analyses of photobiological H-2 and lipid production suggested that XNY8011 could be a candidate for biofuels production. This strain could accumulate considerable biomass and produce massive chlorophylls in water diluted waste molasses. Three concentrations of molasses (0.1, 0.2 and 0.5%, w/v) were studied to optimize the cell growth and chlorophylls synthesis of XNY8011, and 0.2% was proved to be the optimum, in which XNY8011 could reach A600 of 1.55 +/- 0.06 and produce 11.35 +/- 0.93 mu g/mL of chlorophylls. It was found that 25 degrees C is the most preferable temperature for the cell growth of XNY8011 in molasses. Interestingly, the strain XNY8011 exhibited significant low temperature adaptability when growing in waste molasses compared to typical bioenergy green algae. It produced 5.73 and 3.05 folds of cell densities in molasses than that Chlamydomonas reinhardtii CC503 and Chlorella vulgaris did under 20 degrees C, respectively, and even obtained 13.51 and 2.72 folds of cell densities under 15 degrees C, respectively. The dynamic analysis suggested that the sugar in waste molasses was utilized as carbon source for cell growth and biomass accumulation. The present study isolated a novel bioenergy-producing green alga from the native environment which could convert waste molasses to biomass and bioenergy with significant temperature adaptability.
机译:从中国北京的一座山中分离出一种新型的产生生物能的绿藻(实验室编号:XNY8011),并根据形态和分子特征将其鉴定为属于腔皮动物属的一种菌株。对光生物H-2和脂质产生的生理分析表明,XNY8011可以成为生物燃料生产的候选者。该菌株可积累大量生物量,并在水稀释的废糖蜜中产生大量的叶绿素。研究了三种浓度的糖蜜(0.1%,0.2%和0.5%,w / v)以优化XNY8011的细胞生长和叶绿素合成,并证明0.2%是最佳的,其中XNY8011可以达到1.55 +/-的A600 0.06并产生11.35 +/- 0.93μg / mL的叶绿素。发现对于糖蜜中XNY8011的细胞生长,最优选的温度是25℃。有趣的是,与典型的生物能源绿藻相比,菌株XNY8011在废糖蜜中生长时表现出明显的低温适应性。它在糖蜜中的细胞密度比在20摄氏度下的莱茵衣藻CC503和寻常小球藻分别高5.73倍和3.05倍,甚至在15摄氏度下也分别获得13.51和2.72倍的细胞密度。动态分析表明,废糖蜜中的糖被用作细胞生长和生物量积累的碳源。本研究从自然环境中分离出了一种新型的生物能源生产绿藻,该绿藻可以将废糖蜜转化为具有显着温度适应性的生物质和生物能源。

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