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A green sulfonated carbon-based catalyst derived from coffee residue for esterification

机译:一种由咖啡渣衍生而来的绿色磺化碳基催化剂,用于酯化

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A green sulfonated carbon-based catalyst was successfully synthesized through sulfonation of incompletely carbonized coffee residue (SCAC catalyst). The sulfonation temperature was investigated and the catalytic activity was tested via esterification of caprylic acid. SCAC-200, the highest caprylic acid conversion at 4 h (71.5%) and initial TOF based on SO3H acid sites, was synthesized under a carbonization temperature of 600 degrees C for 4 h and sulfonation temperature of 200 degrees C for 18 h. Sulfonation temperature plays a dominant role in determining the SO3H site density of SCAC catalysts because side reactions (condensation/oxidation/dehydrogenation) take place at high sulfonation temperature as indicated by oxygen-to-carbon surface ratio. The activities of the SCAC catalysts were also substantially greater than that of Amberlyst-15. A high catalytic activity and catalyst stability for esterification of HCp were achieved in the SCAC catalysts with high surface area and by balancing strong (SO3H) and weak (carboxylic and phenolic) acid site densities. Additionally, this catalyst could be regenerated to obtain essentially its initial catalytic activity by MeOH washing. Therefore, the sulfonated coffee residue derived catalyst is promising, economic eco-friendly and potentially substituted for homogeneous H2SO4 catalyst for esterification in industries in the near future. (C) 2015 Elsevier Ltd. All rights reserved.
机译:通过磺化未完全碳化的咖啡渣(SCAC催化剂),成功合成了绿色的磺化碳基催化剂。研究了磺化温度,并通过辛酸的酯化测试了催化活性。 SCAC-200是在4 h(71.5%)时最高的辛酸转化率和基于SO3H酸位的初始TOF,是在600℃的碳化温度下4 h和200℃的磺化温度下18 h合成的。磺化温度在决定SCAC催化剂的SO3H位密度方面起着主导作用,因为副反应(缩合/氧化/脱氢)是在高磺化温度下发生的,如氧碳表面比所示。 SCAC催化剂的活性也大大高于Amberlyst-15。在具有高表面积的SCAC催化剂中,通过平衡强(SO3H)和弱(羧酸和苯酚)酸位点密度,可实现高催化活性和HCp酯化的催化剂稳定性。另外,该催化剂可以再生,通过MeOH洗涤基本上获得其初始催化活性。因此,磺化咖啡渣衍生的催化剂是有前途的,经济的生态友好型的,并有可能在不久的将来取代均相的H2SO4催化剂用于酯化工业。 (C)2015 Elsevier Ltd.保留所有权利。

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