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Preparation of sulfonated carbon-based catalysts from murumuru kernel shell and their performance in the esterification reaction

机译:酯化反应中杂交碳基催化剂的制备及其在酯化反应中的性能

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In the present study, heterogeneous acid catalysts for fatty acid esterification reactions were synthesized using agro-industrial waste from murumuru kernel shells. The waste was carbonized and functionalized with concentrated sulfuric acid under different sulfonation conditions, obtaining the sulfonated biochar. The results indicate that the best sulfonation conditions were obtained with a contact time of 4 h, the temperature of 200 °C, and a solid-acid ratio of 1?:?10 (w/v). The best catalyst was characterized by acid–base titration for the determination of total acid density, X-ray diffraction, scanning electron microscopy, X-ray energy dispersion spectroscopy, Fourier transform infrared spectroscopy and thermal analysis. Reaction conditions of oleic acid with methanol and the viability of catalyst reuse were also investigated. A conversion of 97.2% was achieved under optimum esterification reaction conditions, employing 5% catalyst, 10?:?1 molar ratio of methanol to oleic acid, during 1.5 h at a temperature of 90 °C. After 4 reaction cycles, the catalyst preserved its efficiency at 66.3% conversion. The catalyst activity was evaluated in reactions using palmitic acid, soybean fatty acid distillate, palm fatty acid distillate, and coconut fatty acid distillate. The results demonstrate that the catalyst is applicable and efficient in esterification reactions of raw materials, containing different fatty acid compositions since different carbonized materials have varying abilities to combine acid groups. This work reveals the promising feasibility of using biomass generated in large quantities by the agroindustry for the development of a new heterogeneous acid catalyst for biodiesel production.
机译:在本研究中,使用来自Murumuru仁壳的农业工业废物合成用于脂肪酸酯化反应的异构酸催化剂。在不同的磺化条件下,用浓硫酸碳化和官能化,得到磺化生物炭。结果表明,在4小时的接触时间,温度为200℃的接触时间和1Ω·:10(w / v),得到最佳磺化条件。最佳催化剂的特征在于酸碱滴定,用于测定总酸密度,X射线衍射,扫描电子显微镜,X射线能量分散光谱,傅里叶变换红外光谱和热分析。还研究了甲醇的油酸反应条件和催化剂再利用的活力。在最佳酯化反应条件下实现97.2%的转化率,其中5%催化剂,10?:1摩尔比的甲醇与油酸,在1.5小时内,在90℃的温度下。在4次反应循环后,催化剂在66.3%转化率下保留其效率。使用棕榈酸,大豆脂肪酸馏出物,棕榈脂肪酸馏出物和椰子脂肪酸馏分来评估催化剂活性。结果表明,催化剂适用于原料的酯化反应,含有不同的脂肪酸组合物,因为不同的碳化材料具有不同能力来组合酸基团。这项工作揭示了通过农业工业利用大量产生的生物量的有希望的可行性,以开发用于生物柴油生产的新的异构酸催化剂。

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