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Organosulfonic acid functionalized montmorillonites as solid catalysts for (trans) esterification of free fatty acids and (waste) oils

机译:有机磺酸官能化的蒙脱土作为游离脂肪酸和(废)油的(反式)酯化的固体催化剂

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Organosulfonic acid functionalized montemorillonite-MMT (K10 and cloisite Na+) were prepared by different methodologies: (a) one-pot organosilylation or sulfonation, and (b) two-step organosilylation followed by sulfonation or oxidation. The physicochemical characterization ensured the success of the selected methodologies to promote HSO3-functionalization including high S contents (2.84 mmol S/g) and acidities up to 6.03 mmol H+/g (K10_PhSO3H).All the organosulfonic acid functionalized MMT were tested as acid catalyst in the esterification of free fatty acids in a hybrid feedstock model. Conversions of 100% were obtained after 60 min for K10_PhTESO3H, K10_SO3H, Cloi_PhTESO3H and Cloi_H2SO4, in accordance with the acid character of these catalysts, prepared by one-pot and two-step methodologies involving a sulfonation step. The MMT catalysts obtained by direct sulfonation exhibited the highest TOF whereas those obtained by two-step organosilylation-sulfonation showed the highest stability and reusability. The increase of FFA carbon chain length led to higher conversions, showing the prevalence of inductive effect and absence of steric effects on the esterification mechanism using these organosulfonic acid functionalized catalysts. Moreover, K10-PhSO3H was applied as solid acid catalyst in a simultaneous (trans) esterification of different feedstock types for biodiesel production giving up to 100% of FAMEs under moderate conditions. (C) 2019 Published by Elsevier Ltd.
机译:有机磺酸官能化的蒙脱石-MMT(K10和堇青石Na +)是通过不同的方法制备的:(a)一锅有机硅烷化或磺化,以及(b)两步有机硅烷化,然后进行磺化或氧化。物化特性保证了所选择的促进HSO3官能化的方法的成功,包括高S含量(2.84 mmol S / g)和酸度高达6.03 mmol H + / g(K10_PhSO3H)。所有有机磺酸官能化的MMT作为酸催化剂进行了测试。混合原料模型中游离脂肪酸的酯化反应根据这些催化剂的酸特性,通过一锅法和两步法(涉及磺化步骤)制备的K10_PhTESO3H,K10_SO3H,Cloi_PhTESO3H和Cloi_H2SO4在60分钟后获得100%的转化率。通过直接磺化获得的MMT催化剂表现出最高的TOF,而通过两步有机甲硅烷基化-磺化获得的MMT催化剂表现出最高的稳定性和可重复使用性。 FFA碳链长度的增加导致更高的转化率,这表明使用这些有机磺酸官能化催化剂对酯化机理普遍存在诱导作用,而没有空间效应。此外,K10-PhSO3H在不同原料类型的同时(反式)酯化反应中用作固体酸催化剂,用于生产生物柴油,在中等条件下可提供高达100%的FAME。 (C)2019由Elsevier Ltd.发布

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