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Kinetic study of biodiesel production from soybean oil

机译:豆油生产生物柴油的动力学研究

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Biodiesel production from soybean oil can play an important role as an alternative source of energy for automobile applications. In this paper an attempt has been made to generate biodiesel from soybean oil using transesterification and three step method. The kinetics of transesterification reaction heterogeneously catalyzed by calcium oxide was studied in order to understand the reaction mechanism of the system. The three step method comprises with saponification of oil, acidification of the soap and finally esterification of free fatty acid (FFA). Both the techniques go through a number of parameters like reaction conditions, catalyst selection, reaction time, temperature and molar ratio of oil to intermediate products and additives required to be optimized. The results showed that transesterification reaction obeyed pseudo first-order kinetics with a reaction rate constant k=0.023 min.−1 for 5 wt.% CaO and yield obtained ∼95% within 120 min with a viscosity of 4.10 mm2/s. In the three step method, conversion of biodiesel was found ∼98% with molar ratio of methanol to FFA 5∶1. Conversion of soybean oil into its subsequent biodiesel was verified and the results are comparable to commercial diesel. Consequently, biodiesel from this potential source can be a suitable pathway to commit our present and future fuel demand in the world.
机译:大豆油生产的生物柴油可以作为汽车应用的替代能源发挥重要作用。本文尝试通过酯交换和三步法从大豆油中生产生物柴油。为了理解该体系的反应机理,研究了氧化钙非均相催化的酯交换反应动力学。这三步法包括油的皂化,肥皂的酸化以及最后的游离脂肪酸(FFA)的酯化。两种技术都经过许多参数,例如反应条件,催化剂选择,反应时间,温度以及需要优化的油与中间产物和添加剂的摩尔比。结果表明,酯交换反应遵循假一阶动力学,对于5 wt。%CaO,反应速率常数k = 0.023 min。 -1 ,在120 min内获得〜95%的产率,粘度为4.10毫米 2 /秒。在三步法中,发现生物柴油的转化率约为98%,甲醇与FFA的摩尔比为5∶1。验证了将大豆油转化为后续生物柴油的结果,其结果可与商用柴油相媲美。因此,来自这种潜在来源的生物柴油可能是满足我们目前和未来世界燃料需求的合适途径。

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