首页> 外文期刊>Journal of Applied Phycology >Fatty acid profile and fuel-derived physico-chemical properties of biodiesel obtained from an indigenous green microalga, Desmodesmus sp. (I-AU1), as potential source of renewable lipid and high quality biodiesel
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Fatty acid profile and fuel-derived physico-chemical properties of biodiesel obtained from an indigenous green microalga, Desmodesmus sp. (I-AU1), as potential source of renewable lipid and high quality biodiesel

机译:脂肪酸曲线和燃料衍生的生物柴油的燃料衍生的物理化学性质从土着绿色微藻,DESMODESMUS SP获得。 (I-AU1),作为可再生脂质和高品质生物柴油的潜在来源

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Organic sources of biodiesel such as microalgae are considered as potential renewable energy resources. These organisms are considered as sunlight-driven cellular factories that convert carbon dioxide to high amounts of lipids that can be used for biofuel production. This paper describes the possibility of using Desmodesmus sp. (I-AU1) for biodiesel production by evaluating its fatty acid profile distribution pattern and estimating the fuel-derived physical and chemical properties from fatty acid methyl esters (FAMEs) obtained from the trans-esterified microalgal oil. Growth rate, oil content, biomass, and lipid productivity of the algal strain have been investigated under nitrogen-starved (0.375 g L-1 NaNO3 in BG 11 medium) autotrophic condition for 22 days. Maximum average biomass yield of Desmodesmus sp. (I-AU1) is 0.745 g L-1 having 36.14% lipid content per dry weight of biomass, with a specific growth rate of 0.20 day(-1). Fatty acid profiling of the biodiesel obtained from Desmodesmus sp. (I-AU1) contained total saturated fatty acid (SAFA) methyl esters of 31.02%, while the total monounsaturated fatty acid (MUFA) (C18:1) is 25.64%. Percentage composition of SAFA and MUFA for the microalga was 56.66%, which is high compared to that of most of related studies. Fuel properties were determined by empirical equations and were found to be within the limits of biodiesel standards ASTM D6751 (American) and EN 14214 (European). The quality properties of the biodiesel were low density (0.88 g cm(-3)), low kinematic viscosity (2.81 mm(2) s(-1)), cetane number (43.47), oxidation stability (5.96 h), and cold filter plugging point (-7.41 A degrees C). Hence, Desmodesmus sp. (I-AU1) has potential as a feedstock for the production of quality biodiesel.
机译:诸如微藻等生物柴油的有机源被认为是潜在的可再生能源资源。这些有机体被认为是阳光驱动的细胞工厂,将二氧化碳转化为可用于生物燃料生产的大量脂质。本文介绍了使用desmodesmus sp的可能性。 (I-AU1)通过评估其脂肪酸曲线分布图案并从酸酯化的微藻油中获得的脂肪酸甲酯(FAME)评估其脂肪酸型材分布图案并估算燃料衍生的物理和化学性质的生物柴油。在氮气饥饿(0.375g L-1naO3中的BG11培养基中的0.375g L-1naO 3中)的自养条件下,研究了藻类菌株的生长速率,油含量,生物质和脂质生产率22天。 DESMODESMUS SP的最大平均生物质产量。 (I-AU1)为0.745g L-1,其脂质含量为36.14%的生物质,其生长速率为0.20天(-1)。从desmodesmus sp获得的生物柴油的脂肪酸谱。 (I-AU1)含有总饱和脂肪酸(SAFA)甲酯31.02%,而单不饱和脂肪酸(MUFA)(C18:1)为25.64%。微藻的Safa和Mufa的百分比为56.66%,与大多数相关研究相比,高56.66%。通过经验方程确定燃料特性,并发现在生物柴油标准ASTM D6751(美国)和EN 14214(欧洲)的范围内。生物柴油的质量特性是低密度(0.88g cm(-3)),低运动粘度(2.81mm(2)s(-1)),十六烷数(43.47),氧化稳定性(5.96小时)和寒冷滤波点(-7.41℃)。因此,desmodesmus sp。 (I-AU1)具有作为生产质量生物柴油的原料的潜力。

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