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Utilization of Scallop Waste Shell for Biodiesel Production from Palm Oil-Optimization Using Taguchi Method

机译:使用Taguchi方法利用扇形废壳对生物柴油生产的生物柴油生产

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The optimization of experimental parameters, such as reaction time, reaction temperature, methanol/oil molar ratio and catalyst loading, on the transesterification for the production of biodiesel has been studied. A Taguchi L9 (3~4) orthogonal array was used to evaluate the factors affecting the conversion of palm oil to fatty acid methyl ester (FAME). The scallop waste shell was calcined at 1,000 °C for 4 h and catalyst characterizations were carried out by XRD, XRF, SEM, and BET surface area measurements. Under the optimal reaction conditions of 10 wt.% of catalyst, 9:1 methanol/oil molar ratio and at a temperature of 65 °C, the FAME conversion was 95.44% and it was achieved in 3 h. It was found that the scallop waste shell catalyst shows high catalytic activity and ecologically friendly properties, having the potential opportunity to be used in biodiesel production process as heterogeneous base catalyst.
机译:研究了实验参数的优化,例如反应时间,反应温度,甲醇/油摩尔比和催化剂负载,用于生产生物柴油的酯交换。 AGUCHI L9(3〜4)正交阵列用于评估影响棕榈油转化为脂肪酸甲酯(FAME)的因素。扇贝废壳在1,000℃下煅烧4小时,通过XRD,XRF,SEM和BET表面积测量进行催化剂表征。在10wt的最佳反应条件下。催化剂的%,9:1甲醇/油摩尔比和温度为65℃,DAME转化为95.44%,在3小时内实现。发现扇贝废壳催化剂显示出高催化活性和生态友好性的性质,具有在生物柴油生产过程中作为异质基础催化剂的潜在机会。

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