可重用性
介孔材料
化学工程
浸出(土壤学)
磺酸
材料科学
催化作用
介孔二氧化硅
路易斯酸
动能
比表面积
航空燃料
活化能
摩尔分数
表面改性
布朗斯特德-洛瑞酸碱理论
无机化学
化学
响应面法
动力学
能量密度
可持续能源
反应速率
化学动力学
降级(电信)
打赌理论
科技与社会
作者
Bhushan S. Shrirame,Sunil K. Maity
标识
DOI:10.1021/acs.iecr.5c03691
摘要
The present work demonstrated the efficacy of high surface area ordered mesoporous sulfonic acid functionalized silica (SO3H-SiO2) as a solid-acid catalyst for the furfural-2-methylfuran hydroxyalkylation–alkylation reaction to obtain a branched-chain C15 sustainable aviation fuel precursor. Bare silica and SO3H-SiO2 with up to 15 mol % −SO3H loading showed an ordered mesoporous structure. Brønsted acidity and acid density proliferated with enhanced −SO3H loadings, upholding consistent Lewis acidity. The catalytic efficacy of SO3H-SiO2 was thus enhanced at elevated −SO3H loadings. The SO3H-SiO2 also exhibited promising regeneration and reusability with minimal leaching of acidic functionality. The 2-methylfuran conversion was 78.4% at 300 min under optimum reaction conditions (323 K and 2:1 2-methylfuran/furfural mole ratio) using SO3H-SiO2 with 15 mol % −SO3H. An empirical second order kinetic model was developed to correlate 2-methylfuran conversion with an activation energy of 45.5 kJ/mol. The 2-methylfuran/furfural mole ratio results were used to validate the kinetic model.
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