用差示扫描量热法评价棉籽和大豆生物柴油的氧化稳定性和动力学参数

Q4 Energy
Lara T. C. Mota, Igor M. Figueredo, F. M. T. Luna, R. Vieira, C. L. Cavalcante Jr., M. A. de S. Rios
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引用次数: 0

摘要

采用差示扫描量热法(DSC)和差示扫描量热法(ancial)研究了棉籽油生物柴油(CB)和大豆油生物柴油(SB)在新鲜和陈年(中期贮存条件(100天))样品中的氧化稳定性。采用酯交换法合成了生物柴油样品,并对样品进行了比质量、运动粘度、酸度值、酯含量、粘度指数和过氧化值的表征。采用Borchardt和Daniels法计算了反应活化能Ea、Arrhenius指前因子Z、反应阶数n和恒温反应速率k(T)。结果表明,氧化对生物柴油样品的理化性质有明显的影响,特别是对酸度(mg KOH/g)、过氧化值(meq/1000 g)和诱导期的影响,其中丁香柏降低了约55%,丁香柏降低了约29%。在动力学参数方面,两种老化样品的k(T)值最高,丁香柏的k(T)值增加了约314%,速率常数随诱导期的减小而增大。与当前文献一致。根据评价结果,推荐采用Borchardt和Daniels法快速评价生物柴油氧化动力学参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of Oxidative Stability and Kinetic Parameters of the Cottonseed and Soybean Biodiesels by Rancimat and Differential Scanning Calorimetry Techniques
In this study, the oxidative stability of the cottonseed oil biodiesel (CB) and soybean oil biodiesel (SB) was investigated by two methodologies, Rancimat and Differential Scanning Calorimetry (DSC), using samples fresh and aged (mid-term storage condition (100 days)). The biodiesel samples were synthesized by transesterification and characterized by specific mass, kinematic viscosity, acidity value, ester content, viscosity index, and peroxide value. The activation energy (Ea), Arrhenius pre-exponential factor (Z), reaction order (n), and reaction rate at constant temperature (k(T)) were calculated by Borchardt and Daniels method. The results showed that oxidation affected the physicochemical properties of the biodiesel samples, especially, acidity (mg KOH/g), peroxide value (meq/1000 g), and induction period, with a decrease of around 55% for CB and 29% for SB. For kinetic parameters, the k(T) of both aged samples presented the highest values, with an increase of around 314% for SB. It was also observed that the rate constants increased with decreasing values of the induction period, in agreement with the current literature. According to the evaluation, the Borchardt and Daniels method can be recommended for a quick assessment of the biodiesel oxidation kinetic parameters.
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来源期刊
Journal of Nuclear Energy Science and Power Generation Technology
Journal of Nuclear Energy Science and Power Generation Technology Energy-Energy Engineering and Power Technology
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