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Acai seed ash as a novel basic heterogeneous catalyst for biodiesel synthesis: Optimization of the biodiesel production process

机译:ACAI籽灰作为一种新型的生物柴油合成基本的异质催化剂:生物柴油生产过程的优化

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In the present study, the catalytic activity of acai seed ash (ASA) was investigated for the synthesis of biodiesel from the methyl transesterification of soybean oil. Acai seeds were calcined at different temperatures (500-900 degrees C) and times (2-5 h) to determine the best catalyst synthesis conditions. The catalyst obtained by calcination at 800 degrees C for 4 h was characterized by thermogravimetric analysis (TG-DTG), X-ray diffraction (XRD), Fourier-transform infrared spectroscopy (FT-IR), scanning electron microscopy (SEM), energy dispersion X-ray spectroscopy (EDS), and alkalinity. Subsequently, response surface methodology based on a face-centered composite design (FCCD 24) was applied to examine the best conditions to conduct the transesterification reaction. The optimal conditions were: temperature of 100 degrees C, molar ratio alcohol:oil of 18:1, catalyst concentration of 12.0% (w/w), and reaction time of 1 h, yielding biodiesel with an ester content of 98.5 +/- 0.21%. The catalyst characterization showed that its catalytic activity is due to the high metal oxide content and carbonates with basic surface sites, making them highly efficient towards biodiesel production. The reuse of the catalyst showed that its catalytic activity resulted in an ester content above 92.5% in the first two reaction cycles. After the regeneration process, the catalyst yielded biodiesel with an ester content above 80.0% during four more reaction cycles. The production of a catalyst from acai seeds has several advantages, namely being obtained from widely available biomass waste, being low cost, and being easily synthesized, making it a sustainable and efficient catalyst for biodiesel production.
机译:在本研究中,研究了Acai晶氨酸(ASA)的催化活性从大豆油的甲基酯交换中合成生物柴油。 acai种子在不同的温度(500-900℃)和时间(2-5小时)处煅烧以确定最佳的催化剂合成条件。通过在800℃下煅烧4小时,通过热重分析(TG-DTG),X射线衍射(XRD),傅立叶变换红外光谱(FT-IR),扫描电子显微镜(SEM),能量,通过煅烧得到4小时的催化剂。分散X射线光谱(EDS)和碱度。随后,施加基于朝向复合设计(FCCD 24)的响应面方法以检查进行酯交换反应的最佳条件。最佳条件为:100℃的温度,摩尔比醇:18:1,催化剂浓度为12.0%(w / w),反应时间为1小时,得到生物柴油,酯含量为98.5 +/- 0.21%。催化剂表征表明,其催化活性是由于高金属氧化物含量和碱性表面位点的碳酸盐,使其对生物柴油生产高效。催化剂的再利用表明,其催化活性在前两个反应循环中导致酯含量高于92.5%。再生过程后,在四个更多反应循环期间,催化剂在80.0%以上的酯含量得到生物柴油。来自Acai种子的催化剂的生产具有几个优点,即从广泛可用的生物质废物中获得,成本低,并且易于合成,使其成为生物柴油生产的可持续和有效的催化剂。

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