首页> 外文期刊>Environmental Research, Engineering and Management >Influences of Dissolved Inorganic Carbon and Nitrogen sources on Growth, Total Lipid Content and Calorific Value of Freshwater Oleaginous Microalga Ankistrodesmus falcatus (Corda) Ralfs
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Influences of Dissolved Inorganic Carbon and Nitrogen sources on Growth, Total Lipid Content and Calorific Value of Freshwater Oleaginous Microalga Ankistrodesmus falcatus (Corda) Ralfs

机译:溶解的无机碳和氮源对淡水含盐微藻类拟南芥生长,总脂质含量和热值的影响

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Biofuel potentiality of a native Indian strain of the freshwater oleaginous microalgae A.falcatus was studied owing to its inherently high lipid content. Influences of media constituents, pH and nitrogen sources on growth (μ), total lipid (TL) content and calorific value (CV) were compared in batch culture. Bold basal medium was superior (μ = 0.498 d-1, TL = 43.6% and CV = 23.6 kJ/g) than BG11 (μ = 0.385 d-1, TL = 38.5% and CV = 19.3 kJ/g). Medium pH (≈ 7.0) and NaHCO3 (30 mg/L), were found suitable for optimum growth at light intensity 35 μmol/m2/s, temperature 25 ± 2 0C and 16 hrs light and 8 hrs dark diurnal cycles. NO3- instead of NH4+ was preferred in the range KNO3 NaNO3 NH4NO3 Urea, for maximal biomass and lipid production. Maximum biomass, TL and CV (80 mg/L DCW and 42.4% and 20.6 kJ/g respectively) were determined in medium containing KNO3 (17.6 mM). A close correlation between increase in TL and CV was observed (r2 = 0.994). With further augmentations of TL and improved biomass yield the native microalga strain could be a potent candidate for biofuel production.DOI: http://dx.doi.org/10.5755/j01.erem.61.3.1423
机译:由于其固有的高脂质含量,研究了印度本地淡水含油微藻曲霉的生物燃料潜力。在分批培养中,比较了培养基成分,pH和氮源对生长(μ),总脂质(TL)含量和热值(CV)的影响。粗大的基础培养基(B = 11)(μ= 0.498 d-1,TL = 43.6%和CV = 23.6 kJ / g)优于BG11(μ= 0.385 d-1,TL = 38.5%和CV = 19.3 kJ / g)。发现中等pH(≈7.0)和NaHCO3(30 mg / L)适合在35μmol/ m2 / s的光照强度,25±2 0C的温度,16个小时的光照和8个小时的黑暗昼夜周期下最佳生长。为了最大程度地生产生物质和脂质,优选在KNO3> NaNO3> NH4NO3>尿素范围内使用NO3-代替NH4 +。在含有KNO3(17.6 mM)的培养基中测定了最大生物量,TL和CV(分别为80 mg / L DCW和42.4%和20.6 kJ / g)。观察到TL和CV的增加之间密切相关(r2 = 0.994)。随着TL的进一步增加和生物量产量的提高,天然微藻菌株可能成为生物燃料生产的有效候选者.DOI:http://dx.doi.org/10.5755/j01.erem.61.3.1423

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