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Strategies for improved induction of lipid in Leptolyngbya sp. BTA 287 for biodiesel production

机译:改善钩端螺旋体脂质诱导的策略。

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摘要

In the present study, cyanobacterium BTA 287 was isolated from the north eastern region of India and identified as Leptolyngbya sp. using 16S rDNA technique. The cellular components of BTA 287 were composed of 7.4% of ash, 23.59% of carbohydrate, 42.15% of protein, 25.38% of lipid, and 1.5% of moisture. The 13.8% enhancement of lipid production was achieved during cultivation of BTA 287 in BG 11 medium supplemented with 25 mM of NaCl for 15 days at 28 degrees C under 6 k Lux with 14:10 day night ratio. The ratio of unsaturated and saturated fatty acid was estimated as 1.84. The saponification value, iodine value, cetane number, degree of unsaturation, long-chain saturation factor and cold filter plugging point of lipid extracted from BTA 287 were calculated as 212.52, 86.69, 52.48, 89.56 (wt%), 3.49 (wt%) and - 5.51 degrees C respectively. This yield of biodiesel was found to be 82.54%. The density, kinematic viscosity, specific gravity, acid value, calorific value, flash point, pour point, water content, carbon residue and, copper strip corrosion of biodiesel were found to be 868 kg/m(3), 4.95 mm(2)/s, 0.873, 0.38 mg KOH/g, 40.95 MJ/kg, 130 degrees C, -17 degrees C 0.025%, 0.86% and 1 respectively. The above fuel properties were general agreement with a globally accepted standard of biodiesel, indicating the suitability of this cyanobacterium BTA 287 as a promising feedstock for biodiesel.
机译:在本研究中,从印度东北部分离出蓝细菌BTA 287,并将其鉴定为Leptolyngbya sp。使用16S rDNA技术。 BTA 287的细胞成分由7.4%的灰分,23.59%的碳水化合物,42.15%的蛋白质,25.38%的脂质和1.5%的水分组成。在补充了25 mM NaCl的BG 11培养基中,在28°C,6 k Lux和14:10的夜晚比率下,在BG 11培养基中培养BTA 287的过程中,脂质生产提高了13.8%。不饱和脂肪酸与饱和脂肪酸的比率估计为1.84。从BTA 287提取的脂质的皂化值,碘值,十六烷值,不饱和度,长链饱和因子和冷滤塞点的计算值分别为212.52、86.69、52.48、89.56(wt%),3.49(wt%)和-5.51摄氏度。发现该生物柴油的产率为82.54%。发现生物柴油的密度,运动粘度,比重,酸值,热值,闪点,倾点,水含量,碳残留物和铜带腐蚀分别为868 kg / m(3),4.95 mm(2)。 /s、0.873、0.38 mg KOH / g,40.95 MJ / kg,130℃,-17℃分别为0.025%,0.86%和1。上述燃料性质与全球公认的生物柴油标准普遍一致,表明该蓝细菌BTA 287作为生物柴油的有前途的原料的适用性。

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