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首页> 外文期刊>Green and Sustainable Chemistry >Optimization of Rubber Seed Oil Transesterification to Biodiesel Using Experimental Designs and Artificial Neural Networks
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Optimization of Rubber Seed Oil Transesterification to Biodiesel Using Experimental Designs and Artificial Neural Networks

机译:利用实验设计和人工神经网络优化橡胶籽油向生物柴油的酯交换反应

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The development of biofuels is driven both by concern about the greenhouse effect and by interest in the opportunities for exploitation of biomass of agricultural origin. In order to improve the yield and quality of biodiesel through modeling and optimization, several studies are in progress. In this paper, biodiesel produced from rubber seed oil in the homogeneous transesterification is studied using a Plackett-Burman experimental design, a full factorial design, a central composite design and an Artificial Neural Network (ANN) coupled with a Genetic Algorithm (GA).Variables such as temperature, stirring speed, reaction time, type of alcohol, and type of catalyst are studied to obtain the best specific gravity and kinematic viscosity. Type of alcohol and type of catalyst have the greatest effect on the two responses, with ethanol (alcohol) and sulphuric acid (catalyst) producing the best results. The specific gravity and kinematic viscosity changes recorded during the transesterification process followed the first and second order polynomial models, respectively. The ANN coupled with GA was used to optimize the two responses simultaneously. Global optimal values of specific gravity (0.883) and kinematic viscosity (6.76 cSt) were recorded when a temperature of 90 style="font-family:Verdana, Helvetica, Arial;white-space:normal;background-color:#FFFFFF;">°C, a stirring speed of 305 rpm, and a treatment time of 141 min were imposed.
机译:对生物燃料的发展既受到对温室效应的关注,也受到对农业来源生物质开发机会的兴趣的驱动。为了通过建模和优化提高生物柴油的产量和质量,一些研究正在进行中。在本文中,使用Plackett-Burman实验设计,全因子设计,中央复合设计以及人工神经网络(ANN)和遗传算法(GA),研究了由橡胶籽油在均相酯交换反应中生产的生物柴油。研究了诸如温度,搅拌速度,反应时间,醇类和催化剂类型等变量,以获得最佳的比重和运动粘度。醇的类型和催化剂的类型对两个响应的影响最大,乙醇(酒精)和硫酸(催化剂)的效果最佳。在酯交换过程中记录的比重和运动粘度变化分别遵循一阶和二阶多项式模型。结合遗传算法的ANN用于同时优化两个响应。当温度为90 style =“ font-family:Verdana,Helvetica,Arial; white-space:normal; background-color:#FFFFFF时,记录了比重(0.883)和运动粘度(6.76 cSt)的全局最佳值。 ;>℃,搅拌速度为305rpm,处理时间为141分钟。

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