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Optimization of biodiesel production by alkali-catalyzed transesterification of used frying oil

机译:废旧煎炸油的碱催化酯交换反应优化生物柴油生产

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Biodiesel as an alternative fuel for fossil diesel has many benefits such as reducing regulated air pollutants emissions, reducing greenhouse gases emissions, being renewable, biodegradable and non-toxic. In this study, used frying oil was applied as a low cost feedstock for biodiesel production by alkali-catalyzed transesterification. The design of experiments was performed using a double 5-level-4-factor central composite design coupled with response surface methodology in order to study the effect of factors on the yield of biodiesel and optimizing the reaction conditions. The factors studied were: reaction temperature, molar ratio of methanol to oil, catalyst concentration, reaction time and catalyst type (NaOH and KOH). A quadratic model was suggested for the prediction of the ester yield. The p-value for the model fell below 0.01 (F-value of 27.55). Also, the R2 value of the model was 0.8831 which indicates the acceptable accuracy of the model. The optimum conditions were obtained as follows: reaction temperature of 65 °C, methanol to oil molar ratio of 9, NaOH concentration of 0.72% w/w, reaction time of 45 min and NaOH as the more effective catalyst. In these conditions the predicted and observed ester yields were 93.56% and 92.05%, respectively, which experimentally verified the accuracy of the model. The fuel properties of the biodiesel produced under optimum conditions, including density, kinetic viscosity, flash point, cloud and pour points were measured according to ASTM standard methods and found to be within specifications of EN 14214 and ASTM 6751 biodiesel standards.
机译:生物柴油作为化石柴油的替代燃料具有许多好处,例如减少管制的空气污染物排放,减少温室气体排放,可再生,可生物降解和无毒。在这项研究中,用过的煎炸油被用作通过碱催化的酯交换反应生产生物柴油的低成本原料。为了研究各种因素对生物柴油收率的影响并优化反应条件,使用了双5级4因子中心复合设计和响应面方法进行了实验设计。研究的因素为:反应温度,甲醇与油的摩尔比,催化剂浓度,反应时间和催化剂类型(NaOH和KOH)。建议使用二次模型来预测酯收率。模型的p值低于0.01(F值27.55)。此外,模型的R2值为0.8831,表明模型的可接受精度。获得的最佳条件如下:反应温度为65°C,甲醇与油的摩尔比为9,NaOH浓度为0.72%w / w,反应时间为45分钟,NaOH是更有效的催化剂。在这些条件下,预测和观察到的酯收率分别为93.56%和92.05%,这通过实验验证了模型的准确性。根据ASTM标准方法测量了在最佳条件下生产的生物柴油的燃料特性,包括密度,运动粘度,闪点,浊点和倾点,并符合EN 14214和ASTM 6751生物柴油标准的规定。

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