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首页> 外文期刊>Industrial Crops and Products >Physicochemical properties of stillingia oil: Feasibility for biodiesel production by enzyme transesterification
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Physicochemical properties of stillingia oil: Feasibility for biodiesel production by enzyme transesterification

机译:丁香油的理化性质:通过酶促酯交换生产生物柴油的可行性

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摘要

The physicochemical properties, fatty acids profile and triglyceride compositions of the stillingia oil were analyzed. The stillingia oil was found to contain 98.79% neutral lipids, 0.22% phospholipids and 0.99% glycolipids, which exhibited varying contents of fatty acids. The major triglyceride was double linoleic acid linolenic acid triglyceride, which accounted for approximately 79.49% of the total triglycerides. Preparation of biodiesel from stillingia oil was investigated by enzyme transesterification with methanol as the acyl acceptor. The results showed that lipase type (Novozym 435, Lipozyme TLIM and Lipozyme RMIM), reaction systems (in solvent-free and tert-butanol system) and operational parameters (lipase loading, reaction time, temperature, and molar ratio of alcohol to oil) influenced the biodiesel yield. Fuel properties of biodiesel from stillingia oil were evaluated and all were in acceptable range for use as biodiesel in diesel engines, and had remarkable flash point and satisfactory cold flow properties. It was concluded that stillingia oil was an alternative potential feedstock oil for biodiesel production.
机译:分析了still鱼油的理化性质,脂肪酸谱和甘油三酸酯组成。发现该汀类油含有98.79%的中性脂质,0.22%的磷脂和0.99%的糖脂,它们表现出不同的脂肪酸含量。主要的甘油三酸酯为双亚油酸亚麻酸甘油三酸酯,其约占总甘油三酸酯的79.49%。通过用甲醇作为酰基受体的酶促酯交换反应,研究了从still鱼油中制备生物柴油的方法。结果表明,脂肪酶类型(Novozym 435,Lipozyme TLIM和Lipozyme RMIM),反应系统(在无溶剂和叔丁醇系统中)和操作参数(脂肪酶负载,反应时间,温度和醇与油的摩尔比)影响了生物柴油的产量。评估了来自汀类植物油的生物柴油的燃料特性,所有燃料特性均在柴油发动机中用作生物柴油的可接受范围内,并且具有显着的闪点和令人满意的冷流特性。得出的结论是,斯蒂林吉亚油是生物柴油生产的替代潜在原料油。

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