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Increasing content of lipid in tropical microalgae Chlorella sorokiniana and Closterium sp. with variation of nitrogen content and extraction temperature

机译:脂质在热带微藻小黄菌羊索洛尼亚纳和枸杞子中含量增加。具有氮含量和提取温度的变化

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This research was aimed to obtain algae biofuels as an alternative energy which comes from tropical microalgae biomass Chlorella sorokiniana and Closterium sp. The cultivation was performed at a controlled room in batch culture photobioreactor, temperature 27°C, pH 6, aeration with air flow rate of 150 mL/sec, and light intensity at 2400 lux. These nutrient sources used artificial PHM with KNO3 variation as a nitrogen source of 0 grams; 0.25 grams; 0.5 grams; 1 gram. The research involved microalgae lipid extraction with Blight & Dyer method and also carried out support of alcohol, chloroform and distilled water (1:1:1) with optimum temperature 30°C. Oil yields that obtained were analyzed with Gas Chromatography Mass Spectrometry (GC-MS) method, dry weight with a gravimetric method and cell density with spectrophotometry. The result showed that the reduction of KNO3 materials (0,25 gr) can produce biomass and highest total lipid content at 0,41 g/L and 20,31 %/(w/w). The results showed that KNO3 decreased the amount of biomass which was not significant but the total lipid content of microalgae was increased. Lipid content and fatty acids extracted from Blight & Dyer showed oil content that could potentially be the raw material of biodiesel.
机译:该研究旨在获得藻类生物燃料作为替代能源,来自热带微藻生物量生物花球菌索洛尼亚纳和枸杞子。在受控室的批量培养光生物反应器中进行培养,温度27℃,pH6,通气,空气流速为150毫升/秒,2400勒克斯的光强度。这些营养源使用KNO3变异作为0克的氮源的人工pHM; 0.25克; 0.5克; 1克。该研究涉及微藻脂肪萃取,枯竭和染色方法,还具有醇,氯仿和蒸馏水(1:1:1)的载体,最佳温度30℃。用气相色谱质谱法(GC-MS)法分析所得的油产率,用分光光度法的重量法和细胞密度干重。结果表明,KNO3材料(0.25gr)的还原可以在0,41g / L和20,31%/(w / w)下产生生物质和最高总脂质含量。结果表明,KNO3降低了不显着但微藻的总脂质含量增加的生物质量。从枯萎和染料中提取的脂质含量和脂肪酸显示出油含量可能是生物柴油的原料。

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