首页> 外文期刊>Acta polytechnica >OPTIMIZATION OF BIODIESEL PRODUCTION FROM WASTE FRYING OIL OVER ALUMINA SUPPORTED CHICKEN EGGSHELL CATALYST USING EXPERIMENTAL DESIGN TOOL
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OPTIMIZATION OF BIODIESEL PRODUCTION FROM WASTE FRYING OIL OVER ALUMINA SUPPORTED CHICKEN EGGSHELL CATALYST USING EXPERIMENTAL DESIGN TOOL

机译:利用实验设计工具优化氧化铝支持的鸡鸡蛋催化剂上废油煎炸中生物柴油的生产

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An optimization of the biodiesel production from a waste frying oil via a heterogeneous transesterification was studied. This present study is also aimed at investigating the catalytic ehaviour of the alumina supported eggshell (ASE) for the synthesis of biodiesel. A synthesized ASE catalyst, at various mixing ratios of alumina to eggshell, was investigated and exhibited a better activity for the reaction when the eggshell and alumina were mixed via incipient wetness impregnation in 2 : 1 proportion on a mass basis and calcined at 900 °C for 4 h. The as-synthesized catalyst was characterized by basicity, BET, SEM, EDX, and FTIR. The 2k factorial experimental design was employed for an optimization of process variables, which include catalyst loading, reaction time, methanol/oil molar ratio and reaction temperature and their effects on the biodiesel yield were studied. The optimization results showed that the reaction time has the highest percentage contribution of 40.139% while the catalyst loading contributes the least to the biodiesel production, as low as 1.233 %. The analysis of variance (ANOVA) revealed a high correlation coefficient (R2 = 0.9492) and the interaction between the reaction time and reaction temperature contributes significantly to the biodiesel production process with percentage contribution of 14.001 %, compared to other interaction terms. The biodiesel yield of 77.56% was obtained under the optimized factor combination of 4.0 wt.% catalyst loading, 120 min reaction time, 12 : 1 methanol/oil molar ratio and reaction temperature of 65 °C. The reusability study showed that the ASE catalyst could be reused for up to four cycles and the biodiesel produced under optimum conditions conformed to the ASTM standard.
机译:研究了通过异质酯交换反应从废煎炸油生产生物柴油的优化方法。本研究的目的还在于研究氧化铝负载蛋壳(ASE)催化合成生物柴油的行为。研究了在氧化铝与蛋壳的各种混合比例下合成的ASE催化剂,当通过初始湿润浸渍以质量比2:1的比例混合蛋壳和氧化铝并在900°C下煅烧时,显示出更好的反应活性持续4小时。所合成的催化剂的特征在于碱度,BET,SEM,EDX和FTIR。 2 k阶乘实验设计用于优化工艺变量,包括催化剂负载,反应时间,甲醇/油摩尔比和反应温度,并研究了它们对生物柴油收率的影响。优化结果表明,反应时间的百分比贡献最大,为40.139%,而催化剂负载对生物柴油生产的贡献最小,低至1.233%。方差分析(ANOVA)显示出高相关系数(R2 = 0.9492),并且与其他相互作用项相比,反应时间与反应温度之间的相互作用对生物柴油生产过程的贡献显着,为14.001%。在催化剂负载量为4.0 wt。%,反应时间为120分钟,甲醇/油摩尔比为12:1和反应温度为65°C的优化因素组合下,获得了77.56%的生物柴油收率。可重用性研究表明,ASE催化剂可重复使用多达四个循环,并且在最佳条件下生产的生物柴油符合ASTM标准。

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