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首页> 外文期刊>Renewable energy >Qualitative biodiesel production from a locally isolated chlorophycean microalga Scenedesmus obliquus (Turpin) Kuetzing GA 45 under closed raceway pond cultivation
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Qualitative biodiesel production from a locally isolated chlorophycean microalga Scenedesmus obliquus (Turpin) Kuetzing GA 45 under closed raceway pond cultivation

机译:在封闭的水道池塘养殖条件下,从本地分离的绿藻微藻(Turpin)斜生(Turpin)Kuetzing GA 45定性生产生物柴油

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The energy security scenario in the world would remain at high risk until non-conventional, indigenously produced renewable biofuels replace/supplement petroleum-based conventional fossil fuels. In the present study, an indigenously isolated chlorophycean microalga, Scenedesmus obliquus (Turpin) Kiitzing GA 45, was explored under raceway pond cultivation to assess its potential for production of lipids for qualitative biodiesel purpose. Microalgal cultivation was carried out in closed raceway ponds (14 x 4 x 0.75 m) with a capacity of 40,000 L each. The maximum areal biomass and lipid productivities were recorded to be 13.12 and 1.39 g m(-2) day(-1) at 30 cm culture depth during winter season followed by summer and rainy seasons. Under biphasic nitrogen starvation strategy, the maximum lipid productivity increased up to 2.29, 1.88, and 2.43 g m(-2) day(-1), respectively during summer, rainy, and winter seasons. The average lipid productivity was consequently calculated to be 2.2 g m(-2) day(-1), thus projecting an approximate annual lipid productivity of 7.04 t ha(-1) y(-1), assuming 10 cultivation cycles per year. Characterization of various fuel properties of the biodiesel produced, were found to be within the specified limits of national and international biodiesel standards, thus signifying the potential of the new isolate S. obliquus GA 45 for qualitative biodiesel production. (C) 2019 Elsevier Ltd. All rights reserved.
机译:除非非传统的本地生产的可再生生物燃料替代/补充石油基常规化石燃料,否则世界上的能源安全情景将仍然处于高风险之中。在本研究中,在水道池塘养殖中探索了一种本地分离的叶绿藻微藻,斜角场景藻(Turpin)Kiitzing GA 45,以评估其用于定性生物柴油的脂质生产潜力。微藻的培养是在封闭的水道池塘(14 x 4 x 0.75 m)中进行的,每个池塘的容量为40,000L。在冬季随后是夏季和雨季的30 cm养殖深度处,最大面积生物量和脂质生产力记录为13.12和1.39 g m(-2)day(-1)。在双相氮饥饿策略下,在夏季,雨季和冬季,最大脂质生产力分别提高到2.29、1.88和2.43 g m(-2)day(-1)。因此,平均脂质生产率经计算为2.2 g m(-2)天(-1),因此假设每年10个培养周期,则预计年脂质生产率约为7.04 t ha(-1)y(-1)。发现所生产的生物柴油的各种燃料特性的表征均在国家和国际生物柴油标准的规定范围内,从而表明新分离株S. obliquus GA 45具有定性生物柴油生产的潜力。 (C)2019 Elsevier Ltd.保留所有权利。

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